78 Tests = 3 versions x 26 variations: Each of the 26 variations (A, B, ...) represents a different random selection of questions taken from the study guide.The 3 versions (0,1,..) all have the same questions but in different order and with different numerical inputs. Unless all students take version "0" it is best to reserve it for the instructor because the questions are grouped according to the order in which they appear on the study guide.
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c10 A0
1) Two sources of emf ε1=40.9V, and ε2=16.1V are oriented as shownin the circuit. The resistances are R1=5.55kΩ and R2=1.55kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=6.11mA and I4=1.06mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 8.754E+00V
b) 9.630E+00V
c) 1.059E+01V
d) 1.165E+01V
e) 1.282E+01V
2) In the circuit shown V=15.2V, R1=1.6Ω, R2=7.89Ω, and R3=15.3Ω. What is the power dissipated by R2?
a) 1.713E+01W
b) 1.885E+01W
c) 2.073E+01W
d) 2.280E+01W
e) 2.508E+01W
3) The resistances in the figure shown are R1= 1.6Ω, R2= 1.3Ω, and R2= 2.22Ω. V1 and V3 are text 0.55V and 3.18V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.743V. What is the absolute value of the current through R1?
a) 1.721E-01A
b) 1.893E-01A
c) 2.082E-01A
d) 2.291E-01A
e) 2.520E-01A
4) Two sources of emf ε1=43.0V, and ε2=13.8V are oriented as shownin the circuit. The resistances are R1=3.97kΩ and R2=1.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=6.25mA and I4=1.82mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 3.661E+00mA
b) 4.027E+00mA
c) 4.430E+00mA
d) 4.873E+00mA
e) 5.360E+00mA
c10 A1
1) Two sources of emf ε1=18.2V, and ε2=6.59V are oriented as shownin the circuit. The resistances are R1=5.47kΩ and R2=2.81kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.64mA and I4=0.341mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 1.299E+00mA
b) 1.429E+00mA
c) 1.572E+00mA
d) 1.729E+00mA
e) 1.902E+00mA
2) The resistances in the figure shown are R1= 1.33Ω, R2= 1.72Ω, and R2= 3.69Ω. V1 and V3 are text 0.606V and 3.31V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.608V. What is the absolute value of the current through R1?
a) 1.137E-01A
b) 1.251E-01A
c) 1.376E-01A
d) 1.514E-01A
e) 1.665E-01A
3) In the circuit shown V=16.2V, R1=2.84Ω, R2=7.06Ω, and R3=13.1Ω. What is the power dissipated by R2?
a) 1.418E+01W
b) 1.560E+01W
c) 1.716E+01W
d) 1.887E+01W
e) 2.076E+01W
4) Two sources of emf ε1=36.7V, and ε2=13.6V are oriented as shownin the circuit. The resistances are R1=2.86kΩ and R2=2.2kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.02mA and I4=0.854mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.380E+01V
b) 1.518E+01V
c) 1.670E+01V
d) 1.837E+01V
e) 2.020E+01V
c10 A2
1) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
a) 1.552E-01A
b) 1.707E-01A
c) 1.878E-01A
d) 2.065E-01A
e) 2.272E-01A
2) Two sources of emf ε1=40.7V, and ε2=12.3V are oriented as shownin the circuit. The resistances are R1=3.5kΩ and R2=1.94kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.42mA and I4=0.932mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.440E+01V
b) 1.584E+01V
c) 1.742E+01V
d) 1.916E+01V
e) 2.108E+01V
3) Two sources of emf ε1=24.8V, and ε2=10.3V are oriented as shownin the circuit. The resistances are R1=2.19kΩ and R2=1.6kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.49mA and I4=0.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 1.660E+00mA
b) 1.826E+00mA
c) 2.009E+00mA
d) 2.209E+00mA
e) 2.430E+00mA
4) In the circuit shown V=15.4V, R1=2.77Ω, R2=6.07Ω, and R3=14.5Ω. What is the power dissipated by R2?
a) 1.190E+01W
b) 1.309E+01W
c) 1.440E+01W
d) 1.584E+01W
e) 1.742E+01W
c10 B0
1) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
a) 1.213E-01A
b) 1.334E-01A
c) 1.468E-01A
d) 1.614E-01A
e) 1.776E-01A
2) In the circuit shown V=18.4V, R1=1.64Ω, R2=6.56Ω, and R3=12.8Ω. What is the power dissipated by R2?
a) 2.470E+01W
b) 2.717E+01W
c) 2.989E+01W
d) 3.288E+01W
e) 3.617E+01W
3) Two sources of emf ε1=46.1V, and ε2=16.2V are oriented as shownin the circuit. The resistances are R1=5.17kΩ and R2=2.06kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.97mA and I4=1.07mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.309E+01V
b) 1.440E+01V
c) 1.584E+01V
d) 1.742E+01V
e) 1.917E+01V
4) A given battery has a 12V emf and an internal resistance of 0.107Ω. If it is connected to a 0.814Ω resistor what is the power dissipated by that load?
a) 1.382E+02W
b) 1.520E+02W
c) 1.672E+02W
d) 1.839E+02W
e) 2.023E+02W
c10 B1
1) The resistances in the figure shown are R1= 1.6Ω, R2= 1.3Ω, and R2= 2.22Ω. V1 and V3 are text 0.55V and 3.18V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.743V. What is the absolute value of the current through R1?
a) 1.721E-01A
b) 1.893E-01A
c) 2.082E-01A
d) 2.291E-01A
e) 2.520E-01A
2) A given battery has a 11V emf and an internal resistance of 0.0998Ω. If it is connected to a 0.417Ω resistor what is the power dissipated by that load?
a) 1.419E+02W
b) 1.561E+02W
c) 1.717E+02W
d) 1.889E+02W
e) 2.078E+02W
3) Two sources of emf ε1=27.9V, and ε2=11.1V are oriented as shownin the circuit. The resistances are R1=2.82kΩ and R2=2.25kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.1mA and I4=0.676mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 8.334E+00V
b) 9.167E+00V
c) 1.008E+01V
d) 1.109E+01V
e) 1.220E+01V
4) In the circuit shown V=15.8V, R1=1.86Ω, R2=7.66Ω, and R3=12.9Ω. What is the power dissipated by R2?
a) 1.157E+01W
b) 1.273E+01W
c) 1.400E+01W
d) 1.540E+01W
e) 1.694E+01W
c10 B2
1) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
a) 1.213E-01A
b) 1.334E-01A
c) 1.468E-01A
d) 1.614E-01A
e) 1.776E-01A
2) In the circuit shown V=10.9V, R1=1.68Ω, R2=7.52Ω, and R3=12.8Ω. What is the power dissipated by R2?
a) 7.827E+00W
b) 8.610E+00W
c) 9.470E+00W
d) 1.042E+01W
e) 1.146E+01W
3) A given battery has a 15V emf and an internal resistance of 0.113Ω. If it is connected to a 0.645Ω resistor what is the power dissipated by that load?
a) 1.898E+02W
b) 2.087E+02W
c) 2.296E+02W
d) 2.526E+02W
e) 2.778E+02W
4) Two sources of emf ε1=27.9V, and ε2=11.1V are oriented as shownin the circuit. The resistances are R1=2.82kΩ and R2=2.25kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.1mA and I4=0.676mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 8.334E+00V
b) 9.167E+00V
c) 1.008E+01V
d) 1.109E+01V
e) 1.220E+01V
c10 C0
1) Three resistors, R1=0.672Ω, and R2=R2=1.52Ω, are connected in parallel to a 5.34V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 2.898E+01W
b) 3.188E+01W
c) 3.507E+01W
d) 3.858E+01W
e) 4.243E+01W
2) Two sources of emf ε1=49.8V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=2.78kΩ and R2=2.63kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.51mA and I4=0.969mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 7.886E+00V
b) 8.675E+00V
c) 9.542E+00V
d) 1.050E+01V
e) 1.155E+01V
3) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 3 20.9Ω resistors and one 12.1Ω resistor. What is the voltage drop across the 12.1Ω resistor?
a) 1.234E+00V
b) 1.358E+00V
c) 1.493E+00V
d) 1.643E+00V
e) 1.807E+00V
4) Two sources of emf ε1=13.6V, and ε2=6.53V are oriented as shownin the circuit. The resistances are R1=2.89kΩ and R2=2.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.11mA and I4=0.311mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 7.264E-01mA
b) 7.990E-01mA
c) 8.789E-01mA
d) 9.668E-01mA
e) 1.063E+00mA
c10 C1
1) Two sources of emf ε1=29.5V, and ε2=11.0V are oriented as shownin the circuit. The resistances are R1=2.45kΩ and R2=1.96kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.03mA and I4=0.783mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.247E+00mA
b) 2.472E+00mA
c) 2.719E+00mA
d) 2.991E+00mA
e) 3.290E+00mA
2) Three resistors, R1=1.43Ω, and R2=R2=3.25Ω, are connected in parallel to a 9.03V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 5.184E+01W
b) 5.702E+01W
c) 6.272E+01W
d) 6.900E+01W
e) 7.590E+01W
3) Two sources of emf ε1=35.5V, and ε2=12.3V are oriented as shownin the circuit. The resistances are R1=4.49kΩ and R2=1.53kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.63mA and I4=0.972mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 1.093E+01V
b) 1.202E+01V
c) 1.322E+01V
d) 1.454E+01V
e) 1.600E+01V
4) A battery with a terminal voltage of 8.72V is connected to a circuit consisting of 2 15.8Ω resistors and one 9.58Ω resistor. What is the voltage drop across the 9.58Ω resistor?
a) 1.677E+00V
b) 1.844E+00V
c) 2.029E+00V
d) 2.231E+00V
e) 2.455E+00V
c10 C2
1) Two sources of emf ε1=29.5V, and ε2=11.0V are oriented as shownin the circuit. The resistances are R1=2.45kΩ and R2=1.96kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.03mA and I4=0.783mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.247E+00mA
b) 2.472E+00mA
c) 2.719E+00mA
d) 2.991E+00mA
e) 3.290E+00mA
2) Two sources of emf ε1=49.8V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=2.78kΩ and R2=2.63kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.51mA and I4=0.969mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 7.886E+00V
b) 8.675E+00V
c) 9.542E+00V
d) 1.050E+01V
e) 1.155E+01V
3) Three resistors, R1=0.548Ω, and R2=R2=1.24Ω, are connected in parallel to a 7.16V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 7.029E+01W
b) 7.731E+01W
c) 8.505E+01W
d) 9.355E+01W
e) 1.029E+02W
4) A battery with a terminal voltage of 9.88V is connected to a circuit consisting of 3 15.9Ω resistors and one 10.8Ω resistor. What is the voltage drop across the 10.8Ω resistor?
a) 1.370E+00V
b) 1.507E+00V
c) 1.658E+00V
d) 1.824E+00V
e) 2.006E+00V
c10 D0
1) The resistances in the figure shown are R1= 2.04Ω, R2= 1.19Ω, and R2= 2.5Ω. V1 and V3 are text 0.507V and 3.07V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.602V. What is the absolute value of the current through R1?
a) 1.401E-01A
b) 1.542E-01A
c) 1.696E-01A
d) 1.865E-01A
e) 2.052E-01A
2) A battery with a terminal voltage of 10.6V is connected to a circuit consisting of 2 21.1Ω resistors and one 12.8Ω resistor. What is the voltage drop across the 12.8Ω resistor?
a) 2.467E+00V
b) 2.714E+00V
c) 2.985E+00V
d) 3.283E+00V
e) 3.612E+00V
3) Two sources of emf ε1=16.8V, and ε2=6.85V are oriented as shownin the circuit. The resistances are R1=4.43kΩ and R2=1.24kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.68mA and I4=0.758mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 3.890E+00V
b) 4.279E+00V
c) 4.707E+00V
d) 5.178E+00V
e) 5.695E+00V
4) A given battery has a 15V emf and an internal resistance of 0.177Ω. If it is connected to a 0.824Ω resistor what is the power dissipated by that load?
a) 1.682E+02W
b) 1.850E+02W
c) 2.035E+02W
d) 2.239E+02W
e) 2.463E+02W
c10 D1
1) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
a) 1.552E-01A
b) 1.707E-01A
c) 1.878E-01A
d) 2.065E-01A
e) 2.272E-01A
2) Two sources of emf ε1=26.2V, and ε2=11.5V are oriented as shownin the circuit. The resistances are R1=2.13kΩ and R2=1.72kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.11mA and I4=0.746mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 4.275E+00V
b) 4.703E+00V
c) 5.173E+00V
d) 5.691E+00V
e) 6.260E+00V
3) A given battery has a 14V emf and an internal resistance of 0.0842Ω. If it is connected to a 0.835Ω resistor what is the power dissipated by that load?
a) 1.455E+02W
b) 1.601E+02W
c) 1.761E+02W
d) 1.937E+02W
e) 2.131E+02W
4) A battery with a terminal voltage of 14.9V is connected to a circuit consisting of 2 16.3Ω resistors and one 9.8Ω resistor. What is the voltage drop across the 9.8Ω resistor?
a) 2.352E+00V
b) 2.587E+00V
c) 2.846E+00V
d) 3.131E+00V
e) 3.444E+00V
c10 D2
1) A battery with a terminal voltage of 10.6V is connected to a circuit consisting of 2 21.1Ω resistors and one 12.8Ω resistor. What is the voltage drop across the 12.8Ω resistor?
a) 2.467E+00V
b) 2.714E+00V
c) 2.985E+00V
d) 3.283E+00V
e) 3.612E+00V
2) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
a) 1.886E-01A
b) 2.075E-01A
c) 2.282E-01A
d) 2.510E-01A
e) 2.761E-01A
3) Two sources of emf ε1=16.8V, and ε2=7.15V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.51kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.95mA and I4=0.603mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 4.108E+00V
b) 4.519E+00V
c) 4.970E+00V
d) 5.468E+00V
e) 6.014E+00V
4) A given battery has a 14V emf and an internal resistance of 0.192Ω. If it is connected to a 0.766Ω resistor what is the power dissipated by that load?
a) 1.229E+02W
b) 1.352E+02W
c) 1.487E+02W
d) 1.636E+02W
e) 1.799E+02W
c10 E0
1) In the circuit shown V=18.4V, R1=1.64Ω, R2=6.56Ω, and R3=12.8Ω. What is the power dissipated by R2?
a) 2.470E+01W
b) 2.717E+01W
c) 2.989E+01W
d) 3.288E+01W
e) 3.617E+01W
2) Two sources of emf ε1=42.2V, and ε2=17.8V are oriented as shownin the circuit. The resistances are R1=4.2kΩ and R2=2.83kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.5mA and I4=0.749mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.056E+01V
b) 1.161E+01V
c) 1.277E+01V
d) 1.405E+01V
e) 1.545E+01V
3) A given battery has a 14V emf and an internal resistance of 0.132Ω. If it is connected to a 0.689Ω resistor what is the power dissipated by that load?
a) 1.656E+02W
b) 1.821E+02W
c) 2.003E+02W
d) 2.204E+02W
e) 2.424E+02W
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 213V. If the combined external and internal resistance is 118&Omega and the capacitance is 61mF, how long will it take for the capacitor's voltage to reach 142.0V?
a) 5.401E+00s
b) 5.941E+00s
c) 6.535E+00s
d) 7.189E+00s
e) 7.908E+00s
c10 E1
1) A given battery has a 14V emf and an internal resistance of 0.0842Ω. If it is connected to a 0.835Ω resistor what is the power dissipated by that load?
a) 1.455E+02W
b) 1.601E+02W
c) 1.761E+02W
d) 1.937E+02W
e) 2.131E+02W
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 327V. If the combined external and internal resistance is 204&Omega and the capacitance is 68mF, how long will it take for the capacitor's voltage to reach 218.0V?
a) 1.385E+01s
b) 1.524E+01s
c) 1.676E+01s
d) 1.844E+01s
e) 2.028E+01s
3) In the circuit shown V=16.1V, R1=1.18Ω, R2=5.28Ω, and R3=14.8Ω. What is the power dissipated by R2?
a) 2.172E+01W
b) 2.389E+01W
c) 2.628E+01W
d) 2.891E+01W
e) 3.180E+01W
4) Two sources of emf ε1=36.7V, and ε2=13.6V are oriented as shownin the circuit. The resistances are R1=2.86kΩ and R2=2.2kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.02mA and I4=0.854mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.380E+01V
b) 1.518E+01V
c) 1.670E+01V
d) 1.837E+01V
e) 2.020E+01V
c10 E2
1) A given battery has a 15V emf and an internal resistance of 0.162Ω. If it is connected to a 0.561Ω resistor what is the power dissipated by that load?
a) 1.814E+02W
b) 1.996E+02W
c) 2.195E+02W
d) 2.415E+02W
e) 2.656E+02W
2) Two sources of emf ε1=36.7V, and ε2=13.6V are oriented as shownin the circuit. The resistances are R1=2.86kΩ and R2=2.2kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.02mA and I4=0.854mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.380E+01V
b) 1.518E+01V
c) 1.670E+01V
d) 1.837E+01V
e) 2.020E+01V
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 598V. If the combined external and internal resistance is 170&Omega and the capacitance is 73mF, how long will it take for the capacitor's voltage to reach 436.0V?
a) 1.218E+01s
b) 1.339E+01s
c) 1.473E+01s
d) 1.621E+01s
e) 1.783E+01s
4) In the circuit shown V=17.8V, R1=2.27Ω, R2=6.79Ω, and R3=15.1Ω. What is the power dissipated by R2?
a) 1.446E+01W
b) 1.591E+01W
c) 1.750E+01W
d) 1.925E+01W
e) 2.117E+01W
c10 F0
1) Two sources of emf ε1=38.9V, and ε2=15.7V are oriented as shownin the circuit. The resistances are R1=2.24kΩ and R2=2.23kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.01mA and I4=0.86mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 1.955E+00mA
b) 2.150E+00mA
c) 2.365E+00mA
d) 2.601E+00mA
e) 2.862E+00mA
2) In the circuit shown V=13.5V, R1=2.66Ω, R2=7.29Ω, and R3=14.5Ω. What is the power dissipated by R2?
a) 7.123E+00W
b) 7.835E+00W
c) 8.618E+00W
d) 9.480E+00W
e) 1.043E+01W
3) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
a) 1.886E-01A
b) 2.075E-01A
c) 2.282E-01A
d) 2.510E-01A
e) 2.761E-01A
4) A battery with a terminal voltage of 13.2V is connected to a circuit consisting of 3 15.7Ω resistors and one 10.3Ω resistor. What is the voltage drop across the 10.3Ω resistor?
a) 1.958E+00V
b) 2.153E+00V
c) 2.369E+00V
d) 2.606E+00V
e) 2.866E+00V
c10 F1
1) The resistances in the figure shown are R1= 2.04Ω, R2= 1.19Ω, and R2= 2.5Ω. V1 and V3 are text 0.507V and 3.07V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.602V. What is the absolute value of the current through R1?
a) 1.401E-01A
b) 1.542E-01A
c) 1.696E-01A
d) 1.865E-01A
e) 2.052E-01A
2) Two sources of emf ε1=39.0V, and ε2=15.9V are oriented as shownin the circuit. The resistances are R1=3.4kΩ and R2=2.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.58mA and I4=0.978mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.150E+00mA
b) 2.365E+00mA
c) 2.602E+00mA
d) 2.862E+00mA
e) 3.148E+00mA
3) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 3 20.9Ω resistors and one 12.1Ω resistor. What is the voltage drop across the 12.1Ω resistor?
a) 1.234E+00V
b) 1.358E+00V
c) 1.493E+00V
d) 1.643E+00V
e) 1.807E+00V
4) In the circuit shown V=16.1V, R1=1.18Ω, R2=5.28Ω, and R3=14.8Ω. What is the power dissipated by R2?
a) 2.172E+01W
b) 2.389E+01W
c) 2.628E+01W
d) 2.891E+01W
e) 3.180E+01W
c10 F2
1) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
a) 1.552E-01A
b) 1.707E-01A
c) 1.878E-01A
d) 2.065E-01A
e) 2.272E-01A
2) Two sources of emf ε1=49.6V, and ε2=19.3V are oriented as shownin the circuit. The resistances are R1=4.87kΩ and R2=2.81kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.37mA and I4=1.01mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 3.055E+00mA
b) 3.360E+00mA
c) 3.696E+00mA
d) 4.066E+00mA
e) 4.472E+00mA
3) A battery with a terminal voltage of 8.66V is connected to a circuit consisting of 3 19.6Ω resistors and one 10.6Ω resistor. What is the voltage drop across the 10.6Ω resistor?
a) 1.202E+00V
b) 1.323E+00V
c) 1.455E+00V
d) 1.600E+00V
e) 1.761E+00V
4) In the circuit shown V=17.9V, R1=1.68Ω, R2=7.84Ω, and R3=12.3Ω. What is the power dissipated by R2?
a) 2.240E+01W
b) 2.464E+01W
c) 2.710E+01W
d) 2.981E+01W
e) 3.279E+01W
c10 G0
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 130V. If the combined external and internal resistance is 109&Omega and the capacitance is 59mF, how long will it take for the capacitor's voltage to reach 69.9V?
a) 3.728E+00s
b) 4.101E+00s
c) 4.511E+00s
d) 4.962E+00s
e) 5.458E+00s
2) Two sources of emf ε1=57.0V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=4.95kΩ and R2=2.09kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.23mA and I4=1.04mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 1.921E+01V
b) 2.114E+01V
c) 2.325E+01V
d) 2.557E+01V
e) 2.813E+01V
3) The resistances in the figure shown are R1= 2.49Ω, R2= 1.72Ω, and R2= 3.58Ω. V1 and V3 are text 0.417V and 1.83V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.53V. What is the absolute value of the current through R1?
a) 8.220E-02A
b) 9.042E-02A
c) 9.946E-02A
d) 1.094E-01A
e) 1.203E-01A
4) A given battery has a 10V emf and an internal resistance of 0.119Ω. If it is connected to a 0.445Ω resistor what is the power dissipated by that load?
a) 1.272E+02W
b) 1.399E+02W
c) 1.539E+02W
d) 1.693E+02W
e) 1.862E+02W
c10 G1
1) A given battery has a 11V emf and an internal resistance of 0.0998Ω. If it is connected to a 0.417Ω resistor what is the power dissipated by that load?
a) 1.419E+02W
b) 1.561E+02W
c) 1.717E+02W
d) 1.889E+02W
e) 2.078E+02W
2) Two sources of emf ε1=30.6V, and ε2=12.0V are oriented as shownin the circuit. The resistances are R1=3.46kΩ and R2=2.77kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.97mA and I4=0.643mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 4.986E+00V
b) 5.484E+00V
c) 6.033E+00V
d) 6.636E+00V
e) 7.299E+00V
3) The resistances in the figure shown are R1= 2.38Ω, R2= 1.87Ω, and R2= 2.32Ω. V1 and V3 are text 0.605V and 3.8V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.67V. What is the absolute value of the current through R1?
a) 8.147E-02A
b) 8.962E-02A
c) 9.858E-02A
d) 1.084E-01A
e) 1.193E-01A
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 327V. If the combined external and internal resistance is 204&Omega and the capacitance is 68mF, how long will it take for the capacitor's voltage to reach 218.0V?
a) 1.385E+01s
b) 1.524E+01s
c) 1.676E+01s
d) 1.844E+01s
e) 2.028E+01s
c10 G2
1) The resistances in the figure shown are R1= 1.54Ω, R2= 0.927Ω, and R2= 2.46Ω. V1 and V3 are text 0.632V and 2.12V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.586V. What is the absolute value of the current through R1?
a) 1.770E-01A
b) 1.947E-01A
c) 2.141E-01A
d) 2.355E-01A
e) 2.591E-01A
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 439V. If the combined external and internal resistance is 221&Omega and the capacitance is 54mF, how long will it take for the capacitor's voltage to reach 350.0V?
a) 1.905E+01s
b) 2.095E+01s
c) 2.304E+01s
d) 2.535E+01s
e) 2.788E+01s
3) Two sources of emf ε1=26.2V, and ε2=11.5V are oriented as shownin the circuit. The resistances are R1=2.13kΩ and R2=1.72kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.11mA and I4=0.746mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 4.275E+00V
b) 4.703E+00V
c) 5.173E+00V
d) 5.691E+00V
e) 6.260E+00V
4) A given battery has a 14V emf and an internal resistance of 0.0842Ω. If it is connected to a 0.835Ω resistor what is the power dissipated by that load?
a) 1.455E+02W
b) 1.601E+02W
c) 1.761E+02W
d) 1.937E+02W
e) 2.131E+02W
c10 H0
1) The resistances in the figure shown are R1= 2.34Ω, R2= 1.34Ω, and R2= 2.94Ω. V1 and V3 are text 0.609V and 1.68V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.541V. What is the absolute value of the current through R1?
a) 1.464E-01A
b) 1.610E-01A
c) 1.772E-01A
d) 1.949E-01A
e) 2.144E-01A
2) Three resistors, R1=1.39Ω, and R2=R2=3.06Ω, are connected in parallel to a 6.21V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 2.293E+01W
b) 2.522E+01W
c) 2.774E+01W
d) 3.052E+01W
e) 3.357E+01W
3) Two sources of emf ε1=38.9V, and ε2=16.9V are oriented as shownin the circuit. The resistances are R1=3.3kΩ and R2=2.51kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.34mA and I4=0.955mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 7.031E+00V
b) 7.734E+00V
c) 8.507E+00V
d) 9.358E+00V
e) 1.029E+01V
4) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 2 15.9Ω resistors and one 10.4Ω resistor. What is the voltage drop across the 10.4Ω resistor?
a) 1.709E+00V
b) 1.880E+00V
c) 2.068E+00V
d) 2.275E+00V
e) 2.503E+00V
c10 H1
1) The resistances in the figure shown are R1= 2.24Ω, R2= 1.03Ω, and R2= 2.39Ω. V1 and V3 are text 0.595V and 2.58V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.707V. What is the absolute value of the current through R1?
a) 1.834E-01A
b) 2.018E-01A
c) 2.220E-01A
d) 2.441E-01A
e) 2.686E-01A
2) Two sources of emf ε1=38.8V, and ε2=14.9V are oriented as shownin the circuit. The resistances are R1=5.83kΩ and R2=1.77kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.57mA and I4=1.19mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 1.013E+01V
b) 1.115E+01V
c) 1.226E+01V
d) 1.349E+01V
e) 1.484E+01V
3) Three resistors, R1=1.39Ω, and R2=R2=3.06Ω, are connected in parallel to a 6.21V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 2.293E+01W
b) 2.522E+01W
c) 2.774E+01W
d) 3.052E+01W
e) 3.357E+01W
4) A battery with a terminal voltage of 9.88V is connected to a circuit consisting of 3 15.9Ω resistors and one 10.8Ω resistor. What is the voltage drop across the 10.8Ω resistor?
a) 1.370E+00V
b) 1.507E+00V
c) 1.658E+00V
d) 1.824E+00V
e) 2.006E+00V
c10 H2
1) Two sources of emf ε1=57.0V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=4.95kΩ and R2=2.09kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.23mA and I4=1.04mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 1.921E+01V
b) 2.114E+01V
c) 2.325E+01V
d) 2.557E+01V
e) 2.813E+01V
2) The resistances in the figure shown are R1= 2.67Ω, R2= 1.78Ω, and R2= 3.63Ω. V1 and V3 are text 0.448V and 2.29V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.656V. What is the absolute value of the current through R1?
a) 9.287E-02A
b) 1.022E-01A
c) 1.124E-01A
d) 1.236E-01A
e) 1.360E-01A
3) Three resistors, R1=1.41Ω, and R2=R2=3.17Ω, are connected in parallel to a 5.89V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 1.681E+01W
b) 1.849E+01W
c) 2.033E+01W
d) 2.237E+01W
e) 2.460E+01W
4) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 2 15.9Ω resistors and one 10.4Ω resistor. What is the voltage drop across the 10.4Ω resistor?
a) 1.709E+00V
b) 1.880E+00V
c) 2.068E+00V
d) 2.275E+00V
e) 2.503E+00V
c10 I0
1) Two sources of emf ε1=16.8V, and ε2=7.15V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.51kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.95mA and I4=0.603mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 4.108E+00V
b) 4.519E+00V
c) 4.970E+00V
d) 5.468E+00V
e) 6.014E+00V
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 319V. If the combined external and internal resistance is 231&Omega and the capacitance is 64mF, how long will it take for the capacitor's voltage to reach 175.0V?
a) 9.718E+00s
b) 1.069E+01s
c) 1.176E+01s
d) 1.293E+01s
e) 1.423E+01s
3) A battery with a terminal voltage of 10.6V is connected to a circuit consisting of 2 21.1Ω resistors and one 12.8Ω resistor. What is the voltage drop across the 12.8Ω resistor?
a) 2.467E+00V
b) 2.714E+00V
c) 2.985E+00V
d) 3.283E+00V
e) 3.612E+00V
4) Two sources of emf ε1=39.4V, and ε2=12.2V are oriented as shownin the circuit. The resistances are R1=3.84kΩ and R2=2.01kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.71mA and I4=0.669mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 8.825E+00V
b) 9.708E+00V
c) 1.068E+01V
d) 1.175E+01V
e) 1.292E+01V
c10 I1
1) Two sources of emf ε1=21.0V, and ε2=8.72V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.15kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.41mA and I4=0.816mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 5.267E+00V
b) 5.794E+00V
c) 6.373E+00V
d) 7.011E+00V
e) 7.712E+00V
2) A battery with a terminal voltage of 12.4V is connected to a circuit consisting of 3 21.6Ω resistors and one 12.1Ω resistor. What is the voltage drop across the 12.1Ω resistor?
a) 1.333E+00V
b) 1.466E+00V
c) 1.612E+00V
d) 1.774E+00V
e) 1.951E+00V
3) Two sources of emf ε1=58.5V, and ε2=17.3V are oriented as shownin the circuit. The resistances are R1=3.06kΩ and R2=1.88kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=5.25mA and I4=1.25mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.981E+01V
b) 2.179E+01V
c) 2.397E+01V
d) 2.637E+01V
e) 2.901E+01V
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 213V. If the combined external and internal resistance is 118&Omega and the capacitance is 61mF, how long will it take for the capacitor's voltage to reach 142.0V?
a) 5.401E+00s
b) 5.941E+00s
c) 6.535E+00s
d) 7.189E+00s
e) 7.908E+00s
c10 I2
1) Two sources of emf ε1=21.0V, and ε2=8.72V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.15kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.41mA and I4=0.816mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 5.267E+00V
b) 5.794E+00V
c) 6.373E+00V
d) 7.011E+00V
e) 7.712E+00V
2) A battery with a terminal voltage of 10.6V is connected to a circuit consisting of 2 21.1Ω resistors and one 12.8Ω resistor. What is the voltage drop across the 12.8Ω resistor?
a) 2.467E+00V
b) 2.714E+00V
c) 2.985E+00V
d) 3.283E+00V
e) 3.612E+00V
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 439V. If the combined external and internal resistance is 221&Omega and the capacitance is 54mF, how long will it take for the capacitor's voltage to reach 350.0V?
a) 1.905E+01s
b) 2.095E+01s
c) 2.304E+01s
d) 2.535E+01s
e) 2.788E+01s
4) Two sources of emf ε1=42.2V, and ε2=17.8V are oriented as shownin the circuit. The resistances are R1=4.2kΩ and R2=2.83kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.5mA and I4=0.749mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.056E+01V
b) 1.161E+01V
c) 1.277E+01V
d) 1.405E+01V
e) 1.545E+01V
c10 J0
1) The resistances in the figure shown are R1= 2.38Ω, R2= 1.87Ω, and R2= 2.32Ω. V1 and V3 are text 0.605V and 3.8V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.67V. What is the absolute value of the current through R1?
a) 8.147E-02A
b) 8.962E-02A
c) 9.858E-02A
d) 1.084E-01A
e) 1.193E-01A
2) Three resistors, R1=0.61Ω, and R2=R2=1.35Ω, are connected in parallel to a 7.04V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 7.386E+01W
b) 8.125E+01W
c) 8.937E+01W
d) 9.831E+01W
e) 1.081E+02W
3) A battery with a terminal voltage of 9.88V is connected to a circuit consisting of 3 15.9Ω resistors and one 10.8Ω resistor. What is the voltage drop across the 10.8Ω resistor?
a) 1.370E+00V
b) 1.507E+00V
c) 1.658E+00V
d) 1.824E+00V
e) 2.006E+00V
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 439V. If the combined external and internal resistance is 221&Omega and the capacitance is 54mF, how long will it take for the capacitor's voltage to reach 350.0V?
a) 1.905E+01s
b) 2.095E+01s
c) 2.304E+01s
d) 2.535E+01s
e) 2.788E+01s
c10 J1
1) Three resistors, R1=0.87Ω, and R2=R2=2.0Ω, are connected in parallel to a 8.57V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 6.977E+01W
b) 7.674E+01W
c) 8.442E+01W
d) 9.286E+01W
e) 1.021E+02W
2) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
a) 1.203E-01A
b) 1.324E-01A
c) 1.456E-01A
d) 1.602E-01A
e) 1.762E-01A
3) A battery with a terminal voltage of 14.1V is connected to a circuit consisting of 2 20.3Ω resistors and one 13.1Ω resistor. What is the voltage drop across the 13.1Ω resistor?
a) 2.843E+00V
b) 3.127E+00V
c) 3.440E+00V
d) 3.784E+00V
e) 4.162E+00V
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 301V. If the combined external and internal resistance is 245&Omega and the capacitance is 63mF, how long will it take for the capacitor's voltage to reach 192.0V?
a) 1.296E+01s
b) 1.425E+01s
c) 1.568E+01s
d) 1.725E+01s
e) 1.897E+01s
c10 J2
1) The resistances in the figure shown are R1= 1.18Ω, R2= 0.878Ω, and R2= 2.11Ω. V1 and V3 are text 0.637V and 3.51V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.547V. What is the absolute value of the current through R1?
a) 1.701E-01A
b) 1.871E-01A
c) 2.058E-01A
d) 2.264E-01A
e) 2.490E-01A
2) Three resistors, R1=1.25Ω, and R2=R2=2.82Ω, are connected in parallel to a 8.6V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 4.890E+01W
b) 5.379E+01W
c) 5.917E+01W
d) 6.508E+01W
e) 7.159E+01W
3) A battery with a terminal voltage of 8.66V is connected to a circuit consisting of 3 19.6Ω resistors and one 10.6Ω resistor. What is the voltage drop across the 10.6Ω resistor?
a) 1.202E+00V
b) 1.323E+00V
c) 1.455E+00V
d) 1.600E+00V
e) 1.761E+00V
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 130V. If the combined external and internal resistance is 109&Omega and the capacitance is 59mF, how long will it take for the capacitor's voltage to reach 69.9V?
a) 3.728E+00s
b) 4.101E+00s
c) 4.511E+00s
d) 4.962E+00s
e) 5.458E+00s
c10 K0
1) In the circuit shown V=10.9V, R1=1.68Ω, R2=7.52Ω, and R3=12.8Ω. What is the power dissipated by R2?
a) 7.827E+00W
b) 8.610E+00W
c) 9.470E+00W
d) 1.042E+01W
e) 1.146E+01W
2) Two sources of emf ε1=24.4V, and ε2=6.73V are oriented as shownin the circuit. The resistances are R1=5.7kΩ and R2=1.95kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.36mA and I4=0.418mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 5.418E+00V
b) 5.960E+00V
c) 6.556E+00V
d) 7.212E+00V
e) 7.933E+00V
3) The resistances in the figure shown are R1= 2.24Ω, R2= 1.03Ω, and R2= 2.39Ω. V1 and V3 are text 0.595V and 2.58V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.707V. What is the absolute value of the current through R1?
a) 1.834E-01A
b) 2.018E-01A
c) 2.220E-01A
d) 2.441E-01A
e) 2.686E-01A
4) Two sources of emf ε1=21.0V, and ε2=8.72V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.15kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.41mA and I4=0.816mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 5.267E+00V
b) 5.794E+00V
c) 6.373E+00V
d) 7.011E+00V
e) 7.712E+00V
c10 K1
1) Two sources of emf ε1=54.9V, and ε2=19.8V are oriented as shownin the circuit. The resistances are R1=3.93kΩ and R2=1.31kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=9.18mA and I4=1.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.779E+01V
b) 1.957E+01V
c) 2.153E+01V
d) 2.368E+01V
e) 2.605E+01V
2) In the circuit shown V=16.2V, R1=2.84Ω, R2=7.06Ω, and R3=13.1Ω. What is the power dissipated by R2?
a) 1.418E+01W
b) 1.560E+01W
c) 1.716E+01W
d) 1.887E+01W
e) 2.076E+01W
3) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
a) 1.886E-01A
b) 2.075E-01A
c) 2.282E-01A
d) 2.510E-01A
e) 2.761E-01A
4) Two sources of emf ε1=38.9V, and ε2=14.4V are oriented as shownin the circuit. The resistances are R1=4.33kΩ and R2=1.65kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=5.59mA and I4=1.07mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 9.142E+00V
b) 1.006E+01V
c) 1.106E+01V
d) 1.217E+01V
e) 1.338E+01V
c10 K2
1) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
a) 1.203E-01A
b) 1.324E-01A
c) 1.456E-01A
d) 1.602E-01A
e) 1.762E-01A
2) In the circuit shown V=13.5V, R1=2.66Ω, R2=7.29Ω, and R3=14.5Ω. What is the power dissipated by R2?
a) 7.123E+00W
b) 7.835E+00W
c) 8.618E+00W
d) 9.480E+00W
e) 1.043E+01W
3) Two sources of emf ε1=16.8V, and ε2=6.85V are oriented as shownin the circuit. The resistances are R1=4.43kΩ and R2=1.24kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.68mA and I4=0.758mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 3.890E+00V
b) 4.279E+00V
c) 4.707E+00V
d) 5.178E+00V
e) 5.695E+00V
4) Two sources of emf ε1=54.9V, and ε2=19.8V are oriented as shownin the circuit. The resistances are R1=3.93kΩ and R2=1.31kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=9.18mA and I4=1.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.779E+01V
b) 1.957E+01V
c) 2.153E+01V
d) 2.368E+01V
e) 2.605E+01V
c10 L0
1) The resistances in the figure shown are R1= 2.38Ω, R2= 1.87Ω, and R2= 2.32Ω. V1 and V3 are text 0.605V and 3.8V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.67V. What is the absolute value of the current through R1?
a) 8.147E-02A
b) 8.962E-02A
c) 9.858E-02A
d) 1.084E-01A
e) 1.193E-01A
2) In the circuit shown V=15.4V, R1=2.55Ω, R2=5.12Ω, and R3=12.7Ω. What is the power dissipated by R2?
a) 1.096E+01W
b) 1.206E+01W
c) 1.326E+01W
d) 1.459E+01W
e) 1.605E+01W
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 319V. If the combined external and internal resistance is 231&Omega and the capacitance is 64mF, how long will it take for the capacitor's voltage to reach 175.0V?
a) 9.718E+00s
b) 1.069E+01s
c) 1.176E+01s
d) 1.293E+01s
e) 1.423E+01s
4) A battery with a terminal voltage of 7.82V is connected to a circuit consisting of 2 19.3Ω resistors and one 12.2Ω resistor. What is the voltage drop across the 12.2Ω resistor?
a) 1.552E+00V
b) 1.707E+00V
c) 1.878E+00V
d) 2.066E+00V
e) 2.272E+00V
c10 L1
1) The resistances in the figure shown are R1= 2.42Ω, R2= 1.09Ω, and R2= 3.89Ω. V1 and V3 are text 0.677V and 1.86V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.745V. What is the absolute value of the current through R1?
a) 2.089E-01A
b) 2.298E-01A
c) 2.528E-01A
d) 2.781E-01A
e) 3.059E-01A
2) A battery with a terminal voltage of 8.41V is connected to a circuit consisting of 3 16.1Ω resistors and one 10.9Ω resistor. What is the voltage drop across the 10.9Ω resistor?
a) 1.058E+00V
b) 1.163E+00V
c) 1.280E+00V
d) 1.408E+00V
e) 1.548E+00V
3) In the circuit shown V=19.6V, R1=1.45Ω, R2=7.85Ω, and R3=15.8Ω. What is the power dissipated by R2?
a) 2.730E+01W
b) 3.003E+01W
c) 3.304E+01W
d) 3.634E+01W
e) 3.998E+01W
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 129V. If the combined external and internal resistance is 169&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 109.0V?
a) 2.177E+01s
b) 2.394E+01s
c) 2.634E+01s
d) 2.897E+01s
e) 3.187E+01s
c10 L2
1) The resistances in the figure shown are R1= 2.04Ω, R2= 1.19Ω, and R2= 2.5Ω. V1 and V3 are text 0.507V and 3.07V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.602V. What is the absolute value of the current through R1?
a) 1.401E-01A
b) 1.542E-01A
c) 1.696E-01A
d) 1.865E-01A
e) 2.052E-01A
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 467V. If the combined external and internal resistance is 172&Omega and the capacitance is 74mF, how long will it take for the capacitor's voltage to reach 258.0V?
a) 7.688E+00s
b) 8.457E+00s
c) 9.303E+00s
d) 1.023E+01s
e) 1.126E+01s
3) A battery with a terminal voltage of 8.14V is connected to a circuit consisting of 2 21.5Ω resistors and one 13.1Ω resistor. What is the voltage drop across the 13.1Ω resistor?
a) 1.298E+00V
b) 1.428E+00V
c) 1.571E+00V
d) 1.728E+00V
e) 1.901E+00V
4) In the circuit shown V=13.5V, R1=2.66Ω, R2=7.29Ω, and R3=14.5Ω. What is the power dissipated by R2?
a) 7.123E+00W
b) 7.835E+00W
c) 8.618E+00W
d) 9.480E+00W
e) 1.043E+01W
c10 M0
1) A battery with a terminal voltage of 7.82V is connected to a circuit consisting of 2 19.3Ω resistors and one 12.2Ω resistor. What is the voltage drop across the 12.2Ω resistor?
a) 1.552E+00V
b) 1.707E+00V
c) 1.878E+00V
d) 2.066E+00V
e) 2.272E+00V
2) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
a) 1.552E-01A
b) 1.707E-01A
c) 1.878E-01A
d) 2.065E-01A
e) 2.272E-01A
3) In the circuit shown V=17.5V, R1=2.34Ω, R2=7.1Ω, and R3=15.3Ω. What is the power dissipated by R2?
a) 1.784E+01W
b) 1.963E+01W
c) 2.159E+01W
d) 2.375E+01W
e) 2.612E+01W
4) Two sources of emf ε1=18.6V, and ε2=5.63V are oriented as shownin the circuit. The resistances are R1=3.9kΩ and R2=1.1kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.41mA and I4=0.614mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 4.342E+00V
b) 4.776E+00V
c) 5.254E+00V
d) 5.779E+00V
e) 6.357E+00V
c10 M1
1) The resistances in the figure shown are R1= 2.54Ω, R2= 1.15Ω, and R2= 2.9Ω. V1 and V3 are text 0.446V and 3.39V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
a) 1.285E-01A
b) 1.414E-01A
c) 1.555E-01A
d) 1.711E-01A
e) 1.882E-01A
2) A battery with a terminal voltage of 14.9V is connected to a circuit consisting of 2 16.3Ω resistors and one 9.8Ω resistor. What is the voltage drop across the 9.8Ω resistor?
a) 2.352E+00V
b) 2.587E+00V
c) 2.846E+00V
d) 3.131E+00V
e) 3.444E+00V
3) Two sources of emf ε1=40.9V, and ε2=16.1V are oriented as shownin the circuit. The resistances are R1=5.55kΩ and R2=1.55kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=6.11mA and I4=1.06mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 8.754E+00V
b) 9.630E+00V
c) 1.059E+01V
d) 1.165E+01V
e) 1.282E+01V
4) In the circuit shown V=11.9V, R1=2.75Ω, R2=7.19Ω, and R3=14.6Ω. What is the power dissipated by R2?
a) 7.982E+00W
b) 8.780E+00W
c) 9.658E+00W
d) 1.062E+01W
e) 1.169E+01W
c10 M2
1) A battery with a terminal voltage of 14.9V is connected to a circuit consisting of 2 16.3Ω resistors and one 9.8Ω resistor. What is the voltage drop across the 9.8Ω resistor?
a) 2.352E+00V
b) 2.587E+00V
c) 2.846E+00V
d) 3.131E+00V
e) 3.444E+00V
2) Two sources of emf ε1=27.9V, and ε2=11.1V are oriented as shownin the circuit. The resistances are R1=2.82kΩ and R2=2.25kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.1mA and I4=0.676mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 8.334E+00V
b) 9.167E+00V
c) 1.008E+01V
d) 1.109E+01V
e) 1.220E+01V
3) The resistances in the figure shown are R1= 2.67Ω, R2= 1.78Ω, and R2= 3.63Ω. V1 and V3 are text 0.448V and 2.29V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.656V. What is the absolute value of the current through R1?
a) 9.287E-02A
b) 1.022E-01A
c) 1.124E-01A
d) 1.236E-01A
e) 1.360E-01A
4) In the circuit shown V=18.8V, R1=2.59Ω, R2=5.47Ω, and R3=15.8Ω. What is the power dissipated by R2?
a) 2.191E+01W
b) 2.410E+01W
c) 2.651E+01W
d) 2.916E+01W
e) 3.208E+01W
c10 N0
1) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
a) 1.203E-01A
b) 1.324E-01A
c) 1.456E-01A
d) 1.602E-01A
e) 1.762E-01A
2) A battery with a terminal voltage of 14.1V is connected to a circuit consisting of 3 15.7Ω resistors and one 10.2Ω resistor. What is the voltage drop across the 10.2Ω resistor?
a) 2.074E+00V
b) 2.282E+00V
c) 2.510E+00V
d) 2.761E+00V
e) 3.037E+00V
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 327V. If the combined external and internal resistance is 204&Omega and the capacitance is 68mF, how long will it take for the capacitor's voltage to reach 218.0V?
a) 1.385E+01s
b) 1.524E+01s
c) 1.676E+01s
d) 1.844E+01s
e) 2.028E+01s
4) Two sources of emf ε1=43.0V, and ε2=13.8V are oriented as shownin the circuit. The resistances are R1=3.97kΩ and R2=1.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=6.25mA and I4=1.82mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 3.661E+00mA
b) 4.027E+00mA
c) 4.430E+00mA
d) 4.873E+00mA
e) 5.360E+00mA
c10 N1
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 129V. If the combined external and internal resistance is 169&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 109.0V?
a) 2.177E+01s
b) 2.394E+01s
c) 2.634E+01s
d) 2.897E+01s
e) 3.187E+01s
2) Two sources of emf ε1=43.7V, and ε2=13.1V are oriented as shownin the circuit. The resistances are R1=5.21kΩ and R2=1.72kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.86mA and I4=0.9mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.691E+00mA
b) 2.960E+00mA
c) 3.256E+00mA
d) 3.582E+00mA
e) 3.940E+00mA
3) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 2 15.9Ω resistors and one 10.4Ω resistor. What is the voltage drop across the 10.4Ω resistor?
a) 1.709E+00V
b) 1.880E+00V
c) 2.068E+00V
d) 2.275E+00V
e) 2.503E+00V
4) The resistances in the figure shown are R1= 2.42Ω, R2= 1.09Ω, and R2= 3.89Ω. V1 and V3 are text 0.677V and 1.86V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.745V. What is the absolute value of the current through R1?
a) 2.089E-01A
b) 2.298E-01A
c) 2.528E-01A
d) 2.781E-01A
e) 3.059E-01A
c10 N2
1) A battery with a terminal voltage of 8.66V is connected to a circuit consisting of 3 19.6Ω resistors and one 10.6Ω resistor. What is the voltage drop across the 10.6Ω resistor?
a) 1.202E+00V
b) 1.323E+00V
c) 1.455E+00V
d) 1.600E+00V
e) 1.761E+00V
2) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
a) 1.552E-01A
b) 1.707E-01A
c) 1.878E-01A
d) 2.065E-01A
e) 2.272E-01A
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 301V. If the combined external and internal resistance is 245&Omega and the capacitance is 63mF, how long will it take for the capacitor's voltage to reach 192.0V?
a) 1.296E+01s
b) 1.425E+01s
c) 1.568E+01s
d) 1.725E+01s
e) 1.897E+01s
4) Two sources of emf ε1=36.3V, and ε2=12.9V are oriented as shownin the circuit. The resistances are R1=4.28kΩ and R2=1.58kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.16mA and I4=1.2mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.224E+00mA
b) 2.446E+00mA
c) 2.691E+00mA
d) 2.960E+00mA
e) 3.256E+00mA
c10 O0
1) Two sources of emf ε1=39.4V, and ε2=12.2V are oriented as shownin the circuit. The resistances are R1=3.84kΩ and R2=2.01kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.71mA and I4=0.669mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 8.825E+00V
b) 9.708E+00V
c) 1.068E+01V
d) 1.175E+01V
e) 1.292E+01V
2) Three resistors, R1=1.74Ω, and R2=R2=3.92Ω, are connected in parallel to a 8.5V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 2.836E+01W
b) 3.120E+01W
c) 3.432E+01W
d) 3.775E+01W
e) 4.152E+01W
3) Two sources of emf ε1=44.4V, and ε2=16.8V are oriented as shownin the circuit. The resistances are R1=4.58kΩ and R2=1.2kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=8.43mA and I4=1.46mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 6.970E+00mA
b) 7.667E+00mA
c) 8.434E+00mA
d) 9.277E+00mA
e) 1.020E+01mA
4) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
a) 1.213E-01A
b) 1.334E-01A
c) 1.468E-01A
d) 1.614E-01A
e) 1.776E-01A
c10 O1
1) Two sources of emf ε1=29.5V, and ε2=11.0V are oriented as shownin the circuit. The resistances are R1=2.45kΩ and R2=1.96kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.03mA and I4=0.783mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.247E+00mA
b) 2.472E+00mA
c) 2.719E+00mA
d) 2.991E+00mA
e) 3.290E+00mA
2) Two sources of emf ε1=39.4V, and ε2=12.2V are oriented as shownin the circuit. The resistances are R1=3.84kΩ and R2=2.01kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.71mA and I4=0.669mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 8.825E+00V
b) 9.708E+00V
c) 1.068E+01V
d) 1.175E+01V
e) 1.292E+01V
3) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
a) 1.886E-01A
b) 2.075E-01A
c) 2.282E-01A
d) 2.510E-01A
e) 2.761E-01A
4) Three resistors, R1=0.855Ω, and R2=R2=1.91Ω, are connected in parallel to a 6.97V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 5.682E+01W
b) 6.250E+01W
c) 6.875E+01W
d) 7.563E+01W
e) 8.319E+01W
c10 O2
1) Three resistors, R1=0.686Ω, and R2=R2=1.58Ω, are connected in parallel to a 8.97V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 1.173E+02W
b) 1.290E+02W
c) 1.419E+02W
d) 1.561E+02W
e) 1.717E+02W
2) Two sources of emf ε1=39.0V, and ε2=15.9V are oriented as shownin the circuit. The resistances are R1=3.4kΩ and R2=2.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.58mA and I4=0.978mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.150E+00mA
b) 2.365E+00mA
c) 2.602E+00mA
d) 2.862E+00mA
e) 3.148E+00mA
3) Two sources of emf ε1=17.3V, and ε2=6.46V are oriented as shownin the circuit. The resistances are R1=2.54kΩ and R2=2.79kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.1mA and I4=0.281mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 6.488E+00V
b) 7.137E+00V
c) 7.850E+00V
d) 8.635E+00V
e) 9.499E+00V
4) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
a) 1.213E-01A
b) 1.334E-01A
c) 1.468E-01A
d) 1.614E-01A
e) 1.776E-01A
c10 P0
1) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
a) 1.213E-01A
b) 1.334E-01A
c) 1.468E-01A
d) 1.614E-01A
e) 1.776E-01A
2) A given battery has a 15V emf and an internal resistance of 0.162Ω. If it is connected to a 0.561Ω resistor what is the power dissipated by that load?
a) 1.814E+02W
b) 1.996E+02W
c) 2.195E+02W
d) 2.415E+02W
e) 2.656E+02W
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 543V. If the combined external and internal resistance is 201&Omega and the capacitance is 82mF, how long will it take for the capacitor's voltage to reach 281.0V?
a) 9.024E+00s
b) 9.927E+00s
c) 1.092E+01s
d) 1.201E+01s
e) 1.321E+01s
4) Two sources of emf ε1=35.5V, and ε2=12.3V are oriented as shownin the circuit. The resistances are R1=4.49kΩ and R2=1.53kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.63mA and I4=0.972mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 1.093E+01V
b) 1.202E+01V
c) 1.322E+01V
d) 1.454E+01V
e) 1.600E+01V
c10 P1
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 129V. If the combined external and internal resistance is 169&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 109.0V?
a) 2.177E+01s
b) 2.394E+01s
c) 2.634E+01s
d) 2.897E+01s
e) 3.187E+01s
2) Two sources of emf ε1=57.0V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=4.95kΩ and R2=2.09kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.23mA and I4=1.04mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 1.921E+01V
b) 2.114E+01V
c) 2.325E+01V
d) 2.557E+01V
e) 2.813E+01V
3) A given battery has a 12V emf and an internal resistance of 0.0984Ω. If it is connected to a 0.485Ω resistor what is the power dissipated by that load?
a) 2.052E+02W
b) 2.257E+02W
c) 2.483E+02W
d) 2.731E+02W
e) 3.004E+02W
4) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
a) 1.203E-01A
b) 1.324E-01A
c) 1.456E-01A
d) 1.602E-01A
e) 1.762E-01A
c10 P2
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 466V. If the combined external and internal resistance is 123&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 331.0V?
a) 9.571E+00s
b) 1.053E+01s
c) 1.158E+01s
d) 1.274E+01s
e) 1.401E+01s
2) The resistances in the figure shown are R1= 1.33Ω, R2= 1.72Ω, and R2= 3.69Ω. V1 and V3 are text 0.606V and 3.31V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.608V. What is the absolute value of the current through R1?
a) 1.137E-01A
b) 1.251E-01A
c) 1.376E-01A
d) 1.514E-01A
e) 1.665E-01A
3) A given battery has a 13V emf and an internal resistance of 0.106Ω. If it is connected to a 0.752Ω resistor what is the power dissipated by that load?
a) 1.569E+02W
b) 1.726E+02W
c) 1.899E+02W
d) 2.089E+02W
e) 2.298E+02W
4) Two sources of emf ε1=38.8V, and ε2=14.9V are oriented as shownin the circuit. The resistances are R1=5.83kΩ and R2=1.77kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.57mA and I4=1.19mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 1.013E+01V
b) 1.115E+01V
c) 1.226E+01V
d) 1.349E+01V
e) 1.484E+01V
c10 Q0
1) Three resistors, R1=1.2Ω, and R2=R2=2.75Ω, are connected in parallel to a 6.42V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 2.581E+01W
b) 2.839E+01W
c) 3.122E+01W
d) 3.435E+01W
e) 3.778E+01W
2) Two sources of emf ε1=58.5V, and ε2=17.3V are oriented as shownin the circuit. The resistances are R1=3.06kΩ and R2=1.88kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=5.25mA and I4=1.25mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.981E+01V
b) 2.179E+01V
c) 2.397E+01V
d) 2.637E+01V
e) 2.901E+01V
3) A battery with a terminal voltage of 10.6V is connected to a circuit consisting of 2 21.1Ω resistors and one 12.8Ω resistor. What is the voltage drop across the 12.8Ω resistor?
a) 2.467E+00V
b) 2.714E+00V
c) 2.985E+00V
d) 3.283E+00V
e) 3.612E+00V
4) Two sources of emf ε1=26.8V, and ε2=10.1V are oriented as shownin the circuit. The resistances are R1=2.2kΩ and R2=2.55kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.29mA and I4=0.464mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 3.436E+00V
b) 3.779E+00V
c) 4.157E+00V
d) 4.573E+00V
e) 5.030E+00V
c10 Q1
1) Two sources of emf ε1=28.6V, and ε2=11.1V are oriented as shownin the circuit. The resistances are R1=3.73kΩ and R2=1.95kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.27mA and I4=0.774mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 6.641E+00V
b) 7.305E+00V
c) 8.035E+00V
d) 8.839E+00V
e) 9.723E+00V
2) A battery with a terminal voltage of 14.6V is connected to a circuit consisting of 2 21.7Ω resistors and one 14.4Ω resistor. What is the voltage drop across the 14.4Ω resistor?
a) 3.637E+00V
b) 4.001E+00V
c) 4.401E+00V
d) 4.841E+00V
e) 5.325E+00V
3) Two sources of emf ε1=54.9V, and ε2=19.8V are oriented as shownin the circuit. The resistances are R1=3.93kΩ and R2=1.31kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=9.18mA and I4=1.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.779E+01V
b) 1.957E+01V
c) 2.153E+01V
d) 2.368E+01V
e) 2.605E+01V
4) Three resistors, R1=1.74Ω, and R2=R2=3.92Ω, are connected in parallel to a 8.5V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 2.836E+01W
b) 3.120E+01W
c) 3.432E+01W
d) 3.775E+01W
e) 4.152E+01W
c10 Q2
1) A battery with a terminal voltage of 12.4V is connected to a circuit consisting of 3 21.6Ω resistors and one 12.1Ω resistor. What is the voltage drop across the 12.1Ω resistor?
a) 1.333E+00V
b) 1.466E+00V
c) 1.612E+00V
d) 1.774E+00V
e) 1.951E+00V
2) Two sources of emf ε1=24.4V, and ε2=6.73V are oriented as shownin the circuit. The resistances are R1=5.7kΩ and R2=1.95kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.36mA and I4=0.418mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 5.418E+00V
b) 5.960E+00V
c) 6.556E+00V
d) 7.212E+00V
e) 7.933E+00V
3) Three resistors, R1=1.31Ω, and R2=R2=2.91Ω, are connected in parallel to a 6.03V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 2.294E+01W
b) 2.523E+01W
c) 2.776E+01W
d) 3.053E+01W
e) 3.359E+01W
4) Two sources of emf ε1=26.2V, and ε2=8.29V are oriented as shownin the circuit. The resistances are R1=3.43kΩ and R2=1.16kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.09mA and I4=1.06mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 6.720E+00V
b) 7.392E+00V
c) 8.131E+00V
d) 8.944E+00V
e) 9.838E+00V
c10 R0
1) The resistances in the figure shown are R1= 1.18Ω, R2= 0.878Ω, and R2= 2.11Ω. V1 and V3 are text 0.637V and 3.51V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.547V. What is the absolute value of the current through R1?
a) 1.701E-01A
b) 1.871E-01A
c) 2.058E-01A
d) 2.264E-01A
e) 2.490E-01A
2) Three resistors, R1=0.686Ω, and R2=R2=1.58Ω, are connected in parallel to a 8.97V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 1.173E+02W
b) 1.290E+02W
c) 1.419E+02W
d) 1.561E+02W
e) 1.717E+02W
3) Two sources of emf ε1=46.1V, and ε2=16.2V are oriented as shownin the circuit. The resistances are R1=5.17kΩ and R2=2.06kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.97mA and I4=1.07mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.309E+01V
b) 1.440E+01V
c) 1.584E+01V
d) 1.742E+01V
e) 1.917E+01V
4) A given battery has a 14V emf and an internal resistance of 0.192Ω. If it is connected to a 0.766Ω resistor what is the power dissipated by that load?
a) 1.229E+02W
b) 1.352E+02W
c) 1.487E+02W
d) 1.636E+02W
e) 1.799E+02W
c10 R1
1) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
a) 1.203E-01A
b) 1.324E-01A
c) 1.456E-01A
d) 1.602E-01A
e) 1.762E-01A
2) A given battery has a 13V emf and an internal resistance of 0.161Ω. If it is connected to a 0.814Ω resistor what is the power dissipated by that load?
a) 1.087E+02W
b) 1.196E+02W
c) 1.316E+02W
d) 1.447E+02W
e) 1.592E+02W
3) Three resistors, R1=0.686Ω, and R2=R2=1.58Ω, are connected in parallel to a 8.97V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 1.173E+02W
b) 1.290E+02W
c) 1.419E+02W
d) 1.561E+02W
e) 1.717E+02W
4) Two sources of emf ε1=58.5V, and ε2=17.3V are oriented as shownin the circuit. The resistances are R1=3.06kΩ and R2=1.88kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=5.25mA and I4=1.25mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.981E+01V
b) 2.179E+01V
c) 2.397E+01V
d) 2.637E+01V
e) 2.901E+01V
c10 R2
1) Two sources of emf ε1=36.7V, and ε2=12.1V are oriented as shownin the circuit. The resistances are R1=2.52kΩ and R2=1.22kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.14mA and I4=1.19mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 7.805E+00V
b) 8.586E+00V
c) 9.444E+00V
d) 1.039E+01V
e) 1.143E+01V
2) Three resistors, R1=1.82Ω, and R2=R2=4.14Ω, are connected in parallel to a 5.65V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 1.754E+01W
b) 1.929E+01W
c) 2.122E+01W
d) 2.335E+01W
e) 2.568E+01W
3) The resistances in the figure shown are R1= 2.04Ω, R2= 1.19Ω, and R2= 2.5Ω. V1 and V3 are text 0.507V and 3.07V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.602V. What is the absolute value of the current through R1?
a) 1.401E-01A
b) 1.542E-01A
c) 1.696E-01A
d) 1.865E-01A
e) 2.052E-01A
4) A given battery has a 12V emf and an internal resistance of 0.0984Ω. If it is connected to a 0.485Ω resistor what is the power dissipated by that load?
a) 2.052E+02W
b) 2.257E+02W
c) 2.483E+02W
d) 2.731E+02W
e) 3.004E+02W
c10 S0
1) Two sources of emf ε1=39.2V, and ε2=12.6V are oriented as shownin the circuit. The resistances are R1=3.86kΩ and R2=1.89kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.05mA and I4=0.701mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 8.687E+00V
b) 9.555E+00V
c) 1.051E+01V
d) 1.156E+01V
e) 1.272E+01V
2) Three resistors, R1=1.2Ω, and R2=R2=2.75Ω, are connected in parallel to a 6.42V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 2.581E+01W
b) 2.839E+01W
c) 3.122E+01W
d) 3.435E+01W
e) 3.778E+01W
3) Two sources of emf ε1=39.0V, and ε2=15.9V are oriented as shownin the circuit. The resistances are R1=3.4kΩ and R2=2.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.58mA and I4=0.978mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.150E+00mA
b) 2.365E+00mA
c) 2.602E+00mA
d) 2.862E+00mA
e) 3.148E+00mA
4) A battery with a terminal voltage of 14.9V is connected to a circuit consisting of 2 16.3Ω resistors and one 9.8Ω resistor. What is the voltage drop across the 9.8Ω resistor?
a) 2.352E+00V
b) 2.587E+00V
c) 2.846E+00V
d) 3.131E+00V
e) 3.444E+00V
c10 S1
1) Two sources of emf ε1=36.3V, and ε2=12.9V are oriented as shownin the circuit. The resistances are R1=4.28kΩ and R2=1.58kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.16mA and I4=1.2mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.224E+00mA
b) 2.446E+00mA
c) 2.691E+00mA
d) 2.960E+00mA
e) 3.256E+00mA
2) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 3 20.9Ω resistors and one 12.1Ω resistor. What is the voltage drop across the 12.1Ω resistor?
a) 1.234E+00V
b) 1.358E+00V
c) 1.493E+00V
d) 1.643E+00V
e) 1.807E+00V
3) Two sources of emf ε1=16.8V, and ε2=7.15V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.51kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.95mA and I4=0.603mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 4.108E+00V
b) 4.519E+00V
c) 4.970E+00V
d) 5.468E+00V
e) 6.014E+00V
4) Three resistors, R1=0.87Ω, and R2=R2=2.0Ω, are connected in parallel to a 8.57V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 6.977E+01W
b) 7.674E+01W
c) 8.442E+01W
d) 9.286E+01W
e) 1.021E+02W
c10 S2
1) A battery with a terminal voltage of 8.72V is connected to a circuit consisting of 2 15.8Ω resistors and one 9.58Ω resistor. What is the voltage drop across the 9.58Ω resistor?
a) 1.677E+00V
b) 1.844E+00V
c) 2.029E+00V
d) 2.231E+00V
e) 2.455E+00V
2) Two sources of emf ε1=24.8V, and ε2=10.3V are oriented as shownin the circuit. The resistances are R1=2.19kΩ and R2=1.6kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.49mA and I4=0.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 1.660E+00mA
b) 1.826E+00mA
c) 2.009E+00mA
d) 2.209E+00mA
e) 2.430E+00mA
3) Two sources of emf ε1=35.5V, and ε2=12.3V are oriented as shownin the circuit. The resistances are R1=4.49kΩ and R2=1.53kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.63mA and I4=0.972mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 1.093E+01V
b) 1.202E+01V
c) 1.322E+01V
d) 1.454E+01V
e) 1.600E+01V
4) Three resistors, R1=1.43Ω, and R2=R2=3.25Ω, are connected in parallel to a 9.03V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 5.184E+01W
b) 5.702E+01W
c) 6.272E+01W
d) 6.900E+01W
e) 7.590E+01W
c10 T0
1) In the circuit shown V=17.8V, R1=2.27Ω, R2=6.79Ω, and R3=15.1Ω. What is the power dissipated by R2?
a) 1.446E+01W
b) 1.591E+01W
c) 1.750E+01W
d) 1.925E+01W
e) 2.117E+01W
2) A battery with a terminal voltage of 7.82V is connected to a circuit consisting of 2 19.3Ω resistors and one 12.2Ω resistor. What is the voltage drop across the 12.2Ω resistor?
a) 1.552E+00V
b) 1.707E+00V
c) 1.878E+00V
d) 2.066E+00V
e) 2.272E+00V
3) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
a) 1.213E-01A
b) 1.334E-01A
c) 1.468E-01A
d) 1.614E-01A
e) 1.776E-01A
4) A given battery has a 14V emf and an internal resistance of 0.192Ω. If it is connected to a 0.766Ω resistor what is the power dissipated by that load?
a) 1.229E+02W
b) 1.352E+02W
c) 1.487E+02W
d) 1.636E+02W
e) 1.799E+02W
c10 T1
1) A given battery has a 13V emf and an internal resistance of 0.113Ω. If it is connected to a 0.686Ω resistor what is the power dissipated by that load?
a) 1.501E+02W
b) 1.651E+02W
c) 1.816E+02W
d) 1.998E+02W
e) 2.197E+02W
2) In the circuit shown V=15.2V, R1=1.6Ω, R2=7.89Ω, and R3=15.3Ω. What is the power dissipated by R2?
a) 1.713E+01W
b) 1.885E+01W
c) 2.073E+01W
d) 2.280E+01W
e) 2.508E+01W
3) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
a) 1.886E-01A
b) 2.075E-01A
c) 2.282E-01A
d) 2.510E-01A
e) 2.761E-01A
4) A battery with a terminal voltage of 13.2V is connected to a circuit consisting of 3 15.7Ω resistors and one 10.3Ω resistor. What is the voltage drop across the 10.3Ω resistor?
a) 1.958E+00V
b) 2.153E+00V
c) 2.369E+00V
d) 2.606E+00V
e) 2.866E+00V
c10 T2
1) In the circuit shown V=19.6V, R1=1.45Ω, R2=7.85Ω, and R3=15.8Ω. What is the power dissipated by R2?
a) 2.730E+01W
b) 3.003E+01W
c) 3.304E+01W
d) 3.634E+01W
e) 3.998E+01W
2) The resistances in the figure shown are R1= 1.57Ω, R2= 1.25Ω, and R2= 3.38Ω. V1 and V3 are text 0.585V and 2.91V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.55V. What is the absolute value of the current through R1?
a) 1.427E-01A
b) 1.569E-01A
c) 1.726E-01A
d) 1.899E-01A
e) 2.089E-01A
3) A battery with a terminal voltage of 14.6V is connected to a circuit consisting of 2 21.7Ω resistors and one 14.4Ω resistor. What is the voltage drop across the 14.4Ω resistor?
a) 3.637E+00V
b) 4.001E+00V
c) 4.401E+00V
d) 4.841E+00V
e) 5.325E+00V
4) A given battery has a 11V emf and an internal resistance of 0.0998Ω. If it is connected to a 0.417Ω resistor what is the power dissipated by that load?
a) 1.419E+02W
b) 1.561E+02W
c) 1.717E+02W
d) 1.889E+02W
e) 2.078E+02W
c10 U0
1) Two sources of emf ε1=14.3V, and ε2=5.6V are oriented as shownin the circuit. The resistances are R1=5.31kΩ and R2=2.39kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.12mA and I4=0.284mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 3.416E+00V
b) 3.757E+00V
c) 4.133E+00V
d) 4.546E+00V
e) 5.001E+00V
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 213V. If the combined external and internal resistance is 118&Omega and the capacitance is 61mF, how long will it take for the capacitor's voltage to reach 142.0V?
a) 5.401E+00s
b) 5.941E+00s
c) 6.535E+00s
d) 7.189E+00s
e) 7.908E+00s
3) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
a) 1.552E-01A
b) 1.707E-01A
c) 1.878E-01A
d) 2.065E-01A
e) 2.272E-01A
4) Three resistors, R1=0.61Ω, and R2=R2=1.35Ω, are connected in parallel to a 7.04V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 7.386E+01W
b) 8.125E+01W
c) 8.937E+01W
d) 9.831E+01W
e) 1.081E+02W
c10 U1
1) Three resistors, R1=1.25Ω, and R2=R2=2.82Ω, are connected in parallel to a 8.6V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 4.890E+01W
b) 5.379E+01W
c) 5.917E+01W
d) 6.508E+01W
e) 7.159E+01W
2) Two sources of emf ε1=18.6V, and ε2=5.63V are oriented as shownin the circuit. The resistances are R1=3.9kΩ and R2=1.1kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.41mA and I4=0.614mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 4.342E+00V
b) 4.776E+00V
c) 5.254E+00V
d) 5.779E+00V
e) 6.357E+00V
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 439V. If the combined external and internal resistance is 221&Omega and the capacitance is 54mF, how long will it take for the capacitor's voltage to reach 350.0V?
a) 1.905E+01s
b) 2.095E+01s
c) 2.304E+01s
d) 2.535E+01s
e) 2.788E+01s
4) The resistances in the figure shown are R1= 1.57Ω, R2= 1.25Ω, and R2= 3.38Ω. V1 and V3 are text 0.585V and 2.91V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.55V. What is the absolute value of the current through R1?
a) 1.427E-01A
b) 1.569E-01A
c) 1.726E-01A
d) 1.899E-01A
e) 2.089E-01A
c10 U2
1) Two sources of emf ε1=21.6V, and ε2=8.59V are oriented as shownin the circuit. The resistances are R1=4.97kΩ and R2=1.69kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.2mA and I4=0.749mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 6.064E+00V
b) 6.670E+00V
c) 7.337E+00V
d) 8.071E+00V
e) 8.878E+00V
2) The resistances in the figure shown are R1= 2.42Ω, R2= 1.09Ω, and R2= 3.89Ω. V1 and V3 are text 0.677V and 1.86V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.745V. What is the absolute value of the current through R1?
a) 2.089E-01A
b) 2.298E-01A
c) 2.528E-01A
d) 2.781E-01A
e) 3.059E-01A
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 554V. If the combined external and internal resistance is 228&Omega and the capacitance is 93mF, how long will it take for the capacitor's voltage to reach 450.0V?
a) 3.224E+01s
b) 3.547E+01s
c) 3.902E+01s
d) 4.292E+01s
e) 4.721E+01s
4) Three resistors, R1=0.624Ω, and R2=R2=1.37Ω, are connected in parallel to a 7.46V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 7.371E+01W
b) 8.108E+01W
c) 8.919E+01W
d) 9.810E+01W
e) 1.079E+02W
c10 V0
1) A given battery has a 11V emf and an internal resistance of 0.0998Ω. If it is connected to a 0.417Ω resistor what is the power dissipated by that load?
a) 1.419E+02W
b) 1.561E+02W
c) 1.717E+02W
d) 1.889E+02W
e) 2.078E+02W
2) In the circuit shown V=15.4V, R1=2.77Ω, R2=6.07Ω, and R3=14.5Ω. What is the power dissipated by R2?
a) 1.190E+01W
b) 1.309E+01W
c) 1.440E+01W
d) 1.584E+01W
e) 1.742E+01W
3) The resistances in the figure shown are R1= 1.54Ω, R2= 0.927Ω, and R2= 2.46Ω. V1 and V3 are text 0.632V and 2.12V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.586V. What is the absolute value of the current through R1?
a) 1.770E-01A
b) 1.947E-01A
c) 2.141E-01A
d) 2.355E-01A
e) 2.591E-01A
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 301V. If the combined external and internal resistance is 245&Omega and the capacitance is 63mF, how long will it take for the capacitor's voltage to reach 192.0V?
a) 1.296E+01s
b) 1.425E+01s
c) 1.568E+01s
d) 1.725E+01s
e) 1.897E+01s
c10 V1
1) A given battery has a 14V emf and an internal resistance of 0.132Ω. If it is connected to a 0.689Ω resistor what is the power dissipated by that load?
a) 1.656E+02W
b) 1.821E+02W
c) 2.003E+02W
d) 2.204E+02W
e) 2.424E+02W
2) The resistances in the figure shown are R1= 2.42Ω, R2= 1.09Ω, and R2= 3.89Ω. V1 and V3 are text 0.677V and 1.86V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.745V. What is the absolute value of the current through R1?
a) 2.089E-01A
b) 2.298E-01A
c) 2.528E-01A
d) 2.781E-01A
e) 3.059E-01A
3) In the circuit shown V=17.8V, R1=2.27Ω, R2=6.79Ω, and R3=15.1Ω. What is the power dissipated by R2?
a) 1.446E+01W
b) 1.591E+01W
c) 1.750E+01W
d) 1.925E+01W
e) 2.117E+01W
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 351V. If the combined external and internal resistance is 148&Omega and the capacitance is 60mF, how long will it take for the capacitor's voltage to reach 227.0V?
a) 9.240E+00s
b) 1.016E+01s
c) 1.118E+01s
d) 1.230E+01s
e) 1.353E+01s
c10 V2
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 543V. If the combined external and internal resistance is 201&Omega and the capacitance is 82mF, how long will it take for the capacitor's voltage to reach 281.0V?
a) 9.024E+00s
b) 9.927E+00s
c) 1.092E+01s
d) 1.201E+01s
e) 1.321E+01s
2) In the circuit shown V=10.8V, R1=1.26Ω, R2=5.65Ω, and R3=14.8Ω. What is the power dissipated by R2?
a) 8.240E+00W
b) 9.064E+00W
c) 9.970E+00W
d) 1.097E+01W
e) 1.206E+01W
3) A given battery has a 13V emf and an internal resistance of 0.159Ω. If it is connected to a 0.617Ω resistor what is the power dissipated by that load?
a) 1.301E+02W
b) 1.431E+02W
c) 1.574E+02W
d) 1.732E+02W
e) 1.905E+02W
4) The resistances in the figure shown are R1= 2.24Ω, R2= 1.03Ω, and R2= 2.39Ω. V1 and V3 are text 0.595V and 2.58V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.707V. What is the absolute value of the current through R1?
a) 1.834E-01A
b) 2.018E-01A
c) 2.220E-01A
d) 2.441E-01A
e) 2.686E-01A
c10 W0
1) Three resistors, R1=1.52Ω, and R2=R2=3.38Ω, are connected in parallel to a 5.82V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 1.842E+01W
b) 2.026E+01W
c) 2.228E+01W
d) 2.451E+01W
e) 2.696E+01W
2) A battery with a terminal voltage of 14.1V is connected to a circuit consisting of 2 20.3Ω resistors and one 13.1Ω resistor. What is the voltage drop across the 13.1Ω resistor?
a) 2.843E+00V
b) 3.127E+00V
c) 3.440E+00V
d) 3.784E+00V
e) 4.162E+00V
3) Two sources of emf ε1=18.2V, and ε2=6.59V are oriented as shownin the circuit. The resistances are R1=5.47kΩ and R2=2.81kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.64mA and I4=0.341mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 1.299E+00mA
b) 1.429E+00mA
c) 1.572E+00mA
d) 1.729E+00mA
e) 1.902E+00mA
4) The resistances in the figure shown are R1= 2.74Ω, R2= 1.63Ω, and R2= 2.75Ω. V1 and V3 are text 0.485V and 2.01V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.555V. What is the absolute value of the current through R1?
a) 1.114E-01A
b) 1.225E-01A
c) 1.348E-01A
d) 1.483E-01A
e) 1.631E-01A
c10 W1
1) A battery with a terminal voltage of 10.7V is connected to a circuit consisting of 2 24.5Ω resistors and one 15.2Ω resistor. What is the voltage drop across the 15.2Ω resistor?
a) 1.730E+00V
b) 1.903E+00V
c) 2.094E+00V
d) 2.303E+00V
e) 2.533E+00V
2) The resistances in the figure shown are R1= 1.57Ω, R2= 1.25Ω, and R2= 3.38Ω. V1 and V3 are text 0.585V and 2.91V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.55V. What is the absolute value of the current through R1?
a) 1.427E-01A
b) 1.569E-01A
c) 1.726E-01A
d) 1.899E-01A
e) 2.089E-01A
3) Three resistors, R1=1.25Ω, and R2=R2=2.82Ω, are connected in parallel to a 8.6V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 4.890E+01W
b) 5.379E+01W
c) 5.917E+01W
d) 6.508E+01W
e) 7.159E+01W
4) Two sources of emf ε1=24.9V, and ε2=10.1V are oriented as shownin the circuit. The resistances are R1=2.32kΩ and R2=2.31kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.74mA and I4=0.444mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 1.725E+00mA
b) 1.898E+00mA
c) 2.087E+00mA
d) 2.296E+00mA
e) 2.526E+00mA
c10 W2
1) Three resistors, R1=0.672Ω, and R2=R2=1.52Ω, are connected in parallel to a 5.34V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 2.898E+01W
b) 3.188E+01W
c) 3.507E+01W
d) 3.858E+01W
e) 4.243E+01W
2) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
a) 1.886E-01A
b) 2.075E-01A
c) 2.282E-01A
d) 2.510E-01A
e) 2.761E-01A
3) Two sources of emf ε1=29.3V, and ε2=11.0V are oriented as shownin the circuit. The resistances are R1=5.65kΩ and R2=2.68kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.81mA and I4=0.525mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 1.717E+00mA
b) 1.888E+00mA
c) 2.077E+00mA
d) 2.285E+00mA
e) 2.514E+00mA
4) A battery with a terminal voltage of 14.1V is connected to a circuit consisting of 2 20.3Ω resistors and one 13.1Ω resistor. What is the voltage drop across the 13.1Ω resistor?
a) 2.843E+00V
b) 3.127E+00V
c) 3.440E+00V
d) 3.784E+00V
e) 4.162E+00V
c10 X0
1) The resistances in the figure shown are R1= 2.34Ω, R2= 1.34Ω, and R2= 2.94Ω. V1 and V3 are text 0.609V and 1.68V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.541V. What is the absolute value of the current through R1?
a) 1.464E-01A
b) 1.610E-01A
c) 1.772E-01A
d) 1.949E-01A
e) 2.144E-01A
2) Two sources of emf ε1=44.4V, and ε2=16.8V are oriented as shownin the circuit. The resistances are R1=4.58kΩ and R2=1.2kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=8.43mA and I4=1.46mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 6.970E+00mA
b) 7.667E+00mA
c) 8.434E+00mA
d) 9.277E+00mA
e) 1.020E+01mA
3) Three resistors, R1=0.686Ω, and R2=R2=1.58Ω, are connected in parallel to a 8.97V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 1.173E+02W
b) 1.290E+02W
c) 1.419E+02W
d) 1.561E+02W
e) 1.717E+02W
4) Two sources of emf ε1=38.9V, and ε2=14.4V are oriented as shownin the circuit. The resistances are R1=4.33kΩ and R2=1.65kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=5.59mA and I4=1.07mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 9.142E+00V
b) 1.006E+01V
c) 1.106E+01V
d) 1.217E+01V
e) 1.338E+01V
c10 X1
1) Three resistors, R1=1.82Ω, and R2=R2=4.14Ω, are connected in parallel to a 5.65V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 1.754E+01W
b) 1.929E+01W
c) 2.122E+01W
d) 2.335E+01W
e) 2.568E+01W
2) Two sources of emf ε1=29.5V, and ε2=11.0V are oriented as shownin the circuit. The resistances are R1=2.45kΩ and R2=1.96kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.03mA and I4=0.783mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.247E+00mA
b) 2.472E+00mA
c) 2.719E+00mA
d) 2.991E+00mA
e) 3.290E+00mA
3) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
a) 1.213E-01A
b) 1.334E-01A
c) 1.468E-01A
d) 1.614E-01A
e) 1.776E-01A
4) Two sources of emf ε1=27.1V, and ε2=8.04V are oriented as shownin the circuit. The resistances are R1=2.94kΩ and R2=1.61kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.87mA and I4=0.57mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 8.482E+00V
b) 9.330E+00V
c) 1.026E+01V
d) 1.129E+01V
e) 1.242E+01V
c10 X2
1) Two sources of emf ε1=49.6V, and ε2=19.3V are oriented as shownin the circuit. The resistances are R1=4.87kΩ and R2=2.81kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.37mA and I4=1.01mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 3.055E+00mA
b) 3.360E+00mA
c) 3.696E+00mA
d) 4.066E+00mA
e) 4.472E+00mA
2) Three resistors, R1=1.23Ω, and R2=R2=2.73Ω, are connected in parallel to a 5.41V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
a) 1.788E+01W
b) 1.967E+01W
c) 2.163E+01W
d) 2.380E+01W
e) 2.617E+01W
3) Two sources of emf ε1=16.8V, and ε2=7.15V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.51kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.95mA and I4=0.603mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 4.108E+00V
b) 4.519E+00V
c) 4.970E+00V
d) 5.468E+00V
e) 6.014E+00V
4) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
a) 1.552E-01A
b) 1.707E-01A
c) 1.878E-01A
d) 2.065E-01A
e) 2.272E-01A
c10 Y0
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 569V. If the combined external and internal resistance is 137&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 419.0V?
a) 1.043E+01s
b) 1.147E+01s
c) 1.262E+01s
d) 1.388E+01s
e) 1.527E+01s
2) In the circuit shown V=13.5V, R1=2.66Ω, R2=7.29Ω, and R3=14.5Ω. What is the power dissipated by R2?
a) 7.123E+00W
b) 7.835E+00W
c) 8.618E+00W
d) 9.480E+00W
e) 1.043E+01W
3) A battery with a terminal voltage of 8.01V is connected to a circuit consisting of 3 22.1Ω resistors and one 14.5Ω resistor. What is the voltage drop across the 14.5Ω resistor?
a) 9.818E-01V
b) 1.080E+00V
c) 1.188E+00V
d) 1.307E+00V
e) 1.437E+00V
4) Two sources of emf ε1=18.2V, and ε2=6.59V are oriented as shownin the circuit. The resistances are R1=5.47kΩ and R2=2.81kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.64mA and I4=0.341mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 1.299E+00mA
b) 1.429E+00mA
c) 1.572E+00mA
d) 1.729E+00mA
e) 1.902E+00mA
c10 Y1
1) Two sources of emf ε1=38.9V, and ε2=15.7V are oriented as shownin the circuit. The resistances are R1=2.24kΩ and R2=2.23kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.01mA and I4=0.86mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 1.955E+00mA
b) 2.150E+00mA
c) 2.365E+00mA
d) 2.601E+00mA
e) 2.862E+00mA
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 319V. If the combined external and internal resistance is 231&Omega and the capacitance is 64mF, how long will it take for the capacitor's voltage to reach 175.0V?
a) 9.718E+00s
b) 1.069E+01s
c) 1.176E+01s
d) 1.293E+01s
e) 1.423E+01s
3) In the circuit shown V=15.8V, R1=1.86Ω, R2=7.66Ω, and R3=12.9Ω. What is the power dissipated by R2?
a) 1.157E+01W
b) 1.273E+01W
c) 1.400E+01W
d) 1.540E+01W
e) 1.694E+01W
4) A battery with a terminal voltage of 8.14V is connected to a circuit consisting of 2 21.5Ω resistors and one 13.1Ω resistor. What is the voltage drop across the 13.1Ω resistor?
a) 1.298E+00V
b) 1.428E+00V
c) 1.571E+00V
d) 1.728E+00V
e) 1.901E+00V
c10 Y2
1) A battery with a terminal voltage of 14.1V is connected to a circuit consisting of 3 15.7Ω resistors and one 10.2Ω resistor. What is the voltage drop across the 10.2Ω resistor?
a) 2.074E+00V
b) 2.282E+00V
c) 2.510E+00V
d) 2.761E+00V
e) 3.037E+00V
2) Two sources of emf ε1=39.0V, and ε2=15.9V are oriented as shownin the circuit. The resistances are R1=3.4kΩ and R2=2.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.58mA and I4=0.978mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
a) 2.150E+00mA
b) 2.365E+00mA
c) 2.602E+00mA
d) 2.862E+00mA
e) 3.148E+00mA
3) In the circuit shown V=15.2V, R1=1.6Ω, R2=7.89Ω, and R3=15.3Ω. What is the power dissipated by R2?
a) 1.713E+01W
b) 1.885E+01W
c) 2.073E+01W
d) 2.280E+01W
e) 2.508E+01W
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 439V. If the combined external and internal resistance is 221&Omega and the capacitance is 54mF, how long will it take for the capacitor's voltage to reach 350.0V?
a) 1.905E+01s
b) 2.095E+01s
c) 2.304E+01s
d) 2.535E+01s
e) 2.788E+01s
c10 Z0
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 319V. If the combined external and internal resistance is 231&Omega and the capacitance is 64mF, how long will it take for the capacitor's voltage to reach 175.0V?
a) 9.718E+00s
b) 1.069E+01s
c) 1.176E+01s
d) 1.293E+01s
e) 1.423E+01s
2) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
a) 1.552E-01A
b) 1.707E-01A
c) 1.878E-01A
d) 2.065E-01A
e) 2.272E-01A
3) Two sources of emf ε1=35.5V, and ε2=12.3V are oriented as shownin the circuit. The resistances are R1=4.49kΩ and R2=1.53kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.63mA and I4=0.972mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 1.093E+01V
b) 1.202E+01V
c) 1.322E+01V
d) 1.454E+01V
e) 1.600E+01V
4) Two sources of emf ε1=36.7V, and ε2=12.1V are oriented as shownin the circuit. The resistances are R1=2.52kΩ and R2=1.22kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.14mA and I4=1.19mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 7.805E+00V
b) 8.586E+00V
c) 9.444E+00V
d) 1.039E+01V
e) 1.143E+01V
c10 Z1
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 466V. If the combined external and internal resistance is 123&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 331.0V?
a) 9.571E+00s
b) 1.053E+01s
c) 1.158E+01s
d) 1.274E+01s
e) 1.401E+01s
2) The resistances in the figure shown are R1= 1.57Ω, R2= 1.25Ω, and R2= 3.38Ω. V1 and V3 are text 0.585V and 2.91V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.55V. What is the absolute value of the current through R1?
a) 1.427E-01A
b) 1.569E-01A
c) 1.726E-01A
d) 1.899E-01A
e) 2.089E-01A
3) Two sources of emf ε1=57.0V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=4.95kΩ and R2=2.09kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.23mA and I4=1.04mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 1.921E+01V
b) 2.114E+01V
c) 2.325E+01V
d) 2.557E+01V
e) 2.813E+01V
4) Two sources of emf ε1=18.6V, and ε2=5.63V are oriented as shownin the circuit. The resistances are R1=3.9kΩ and R2=1.1kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.41mA and I4=0.614mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 4.342E+00V
b) 4.776E+00V
c) 5.254E+00V
d) 5.779E+00V
e) 6.357E+00V
c10 Z2
1) Two sources of emf ε1=54.9V, and ε2=19.8V are oriented as shownin the circuit. The resistances are R1=3.93kΩ and R2=1.31kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=9.18mA and I4=1.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
a) 1.779E+01V
b) 1.957E+01V
c) 2.153E+01V
d) 2.368E+01V
e) 2.605E+01V
2) Two sources of emf ε1=21.0V, and ε2=8.72V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.15kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.41mA and I4=0.816mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
a) 5.267E+00V
b) 5.794E+00V
c) 6.373E+00V
d) 7.011E+00V
e) 7.712E+00V
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 327V. If the combined external and internal resistance is 204&Omega and the capacitance is 68mF, how long will it take for the capacitor's voltage to reach 218.0V?
a) 1.385E+01s
b) 1.524E+01s
c) 1.676E+01s
d) 1.844E+01s
e) 2.028E+01s
4) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
a) 1.203E-01A
b) 1.324E-01A
c) 1.456E-01A
d) 1.602E-01A
e) 1.762E-01A
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of 10 blank lines to separate exams from keys
of 10 blank lines to separate exams from keys
of 10 blank lines to separate exams from keys
of 10 blank lines to separate exams from keys
of 10 blank lines to separate exams from keys
of 10 blank lines to separate exams from keys
of 10 blank lines to separate exams from keys
of 10 blank lines to separate exams from keys
of 10 blank lines to separate exams from keys
of 10 blank lines to separate exams from keys
Key: A0
1) Two sources of emf ε1=40.9V, and ε2=16.1V are oriented as shownin the circuit. The resistances are R1=5.55kΩ and R2=1.55kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=6.11mA and I4=1.06mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 8.754E+00V
-b) 9.630E+00V
-c) 1.059E+01V
-d) 1.165E+01V
+e) 1.282E+01V
2) In the circuit shown V=15.2V, R1=1.6Ω, R2=7.89Ω, and R3=15.3Ω. What is the power dissipated by R2?
+a) 1.713E+01W
-b) 1.885E+01W
-c) 2.073E+01W
-d) 2.280E+01W
-e) 2.508E+01W
3) The resistances in the figure shown are R1= 1.6Ω, R2= 1.3Ω, and R2= 2.22Ω. V1 and V3 are text 0.55V and 3.18V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.743V. What is the absolute value of the current through R1?
+a) 1.721E-01A
-b) 1.893E-01A
-c) 2.082E-01A
-d) 2.291E-01A
-e) 2.520E-01A
4) Two sources of emf ε1=43.0V, and ε2=13.8V are oriented as shownin the circuit. The resistances are R1=3.97kΩ and R2=1.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=6.25mA and I4=1.82mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 3.661E+00mA
-b) 4.027E+00mA
+c) 4.430E+00mA
-d) 4.873E+00mA
-e) 5.360E+00mA
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Key: A1
1) Two sources of emf ε1=18.2V, and ε2=6.59V are oriented as shownin the circuit. The resistances are R1=5.47kΩ and R2=2.81kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.64mA and I4=0.341mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 1.299E+00mA
-b) 1.429E+00mA
-c) 1.572E+00mA
-d) 1.729E+00mA
-e) 1.902E+00mA
2) The resistances in the figure shown are R1= 1.33Ω, R2= 1.72Ω, and R2= 3.69Ω. V1 and V3 are text 0.606V and 3.31V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.608V. What is the absolute value of the current through R1?
-a) 1.137E-01A
-b) 1.251E-01A
-c) 1.376E-01A
+d) 1.514E-01A
-e) 1.665E-01A
3) In the circuit shown V=16.2V, R1=2.84Ω, R2=7.06Ω, and R3=13.1Ω. What is the power dissipated by R2?
+a) 1.418E+01W
-b) 1.560E+01W
-c) 1.716E+01W
-d) 1.887E+01W
-e) 2.076E+01W
4) Two sources of emf ε1=36.7V, and ε2=13.6V are oriented as shownin the circuit. The resistances are R1=2.86kΩ and R2=2.2kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.02mA and I4=0.854mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
+a) 1.380E+01V
-b) 1.518E+01V
-c) 1.670E+01V
-d) 1.837E+01V
-e) 2.020E+01V
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Key: A2
1) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
-a) 1.552E-01A
-b) 1.707E-01A
-c) 1.878E-01A
-d) 2.065E-01A
+e) 2.272E-01A
2) Two sources of emf ε1=40.7V, and ε2=12.3V are oriented as shownin the circuit. The resistances are R1=3.5kΩ and R2=1.94kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.42mA and I4=0.932mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
+a) 1.440E+01V
-b) 1.584E+01V
-c) 1.742E+01V
-d) 1.916E+01V
-e) 2.108E+01V
3) Two sources of emf ε1=24.8V, and ε2=10.3V are oriented as shownin the circuit. The resistances are R1=2.19kΩ and R2=1.6kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.49mA and I4=0.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 1.660E+00mA
-b) 1.826E+00mA
-c) 2.009E+00mA
-d) 2.209E+00mA
-e) 2.430E+00mA
4) In the circuit shown V=15.4V, R1=2.77Ω, R2=6.07Ω, and R3=14.5Ω. What is the power dissipated by R2?
-a) 1.190E+01W
-b) 1.309E+01W
+c) 1.440E+01W
-d) 1.584E+01W
-e) 1.742E+01W
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Key: B0
1) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
-a) 1.213E-01A
-b) 1.334E-01A
-c) 1.468E-01A
+d) 1.614E-01A
-e) 1.776E-01A
2) In the circuit shown V=18.4V, R1=1.64Ω, R2=6.56Ω, and R3=12.8Ω. What is the power dissipated by R2?
-a) 2.470E+01W
+b) 2.717E+01W
-c) 2.989E+01W
-d) 3.288E+01W
-e) 3.617E+01W
3) Two sources of emf ε1=46.1V, and ε2=16.2V are oriented as shownin the circuit. The resistances are R1=5.17kΩ and R2=2.06kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.97mA and I4=1.07mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 1.309E+01V
-b) 1.440E+01V
+c) 1.584E+01V
-d) 1.742E+01V
-e) 1.917E+01V
4) A given battery has a 12V emf and an internal resistance of 0.107Ω. If it is connected to a 0.814Ω resistor what is the power dissipated by that load?
+a) 1.382E+02W
-b) 1.520E+02W
-c) 1.672E+02W
-d) 1.839E+02W
-e) 2.023E+02W
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Key: B1
1) The resistances in the figure shown are R1= 1.6Ω, R2= 1.3Ω, and R2= 2.22Ω. V1 and V3 are text 0.55V and 3.18V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.743V. What is the absolute value of the current through R1?
+a) 1.721E-01A
-b) 1.893E-01A
-c) 2.082E-01A
-d) 2.291E-01A
-e) 2.520E-01A
2) A given battery has a 11V emf and an internal resistance of 0.0998Ω. If it is connected to a 0.417Ω resistor what is the power dissipated by that load?
-a) 1.419E+02W
-b) 1.561E+02W
-c) 1.717E+02W
+d) 1.889E+02W
-e) 2.078E+02W
3) Two sources of emf ε1=27.9V, and ε2=11.1V are oriented as shownin the circuit. The resistances are R1=2.82kΩ and R2=2.25kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.1mA and I4=0.676mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 8.334E+00V
-b) 9.167E+00V
+c) 1.008E+01V
-d) 1.109E+01V
-e) 1.220E+01V
4) In the circuit shown V=15.8V, R1=1.86Ω, R2=7.66Ω, and R3=12.9Ω. What is the power dissipated by R2?
-a) 1.157E+01W
-b) 1.273E+01W
-c) 1.400E+01W
-d) 1.540E+01W
+e) 1.694E+01W
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Key: B2
1) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
-a) 1.213E-01A
-b) 1.334E-01A
-c) 1.468E-01A
+d) 1.614E-01A
-e) 1.776E-01A
2) In the circuit shown V=10.9V, R1=1.68Ω, R2=7.52Ω, and R3=12.8Ω. What is the power dissipated by R2?
-a) 7.827E+00W
+b) 8.610E+00W
-c) 9.470E+00W
-d) 1.042E+01W
-e) 1.146E+01W
3) A given battery has a 15V emf and an internal resistance of 0.113Ω. If it is connected to a 0.645Ω resistor what is the power dissipated by that load?
-a) 1.898E+02W
-b) 2.087E+02W
-c) 2.296E+02W
+d) 2.526E+02W
-e) 2.778E+02W
4) Two sources of emf ε1=27.9V, and ε2=11.1V are oriented as shownin the circuit. The resistances are R1=2.82kΩ and R2=2.25kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.1mA and I4=0.676mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 8.334E+00V
-b) 9.167E+00V
+c) 1.008E+01V
-d) 1.109E+01V
-e) 1.220E+01V
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Key: C0
1) Three resistors, R1=0.672Ω, and R2=R2=1.52Ω, are connected in parallel to a 5.34V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 2.898E+01W
-b) 3.188E+01W
-c) 3.507E+01W
-d) 3.858E+01W
+e) 4.243E+01W
2) Two sources of emf ε1=49.8V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=2.78kΩ and R2=2.63kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.51mA and I4=0.969mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 7.886E+00V
-b) 8.675E+00V
-c) 9.542E+00V
-d) 1.050E+01V
+e) 1.155E+01V
3) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 3 20.9Ω resistors and one 12.1Ω resistor. What is the voltage drop across the 12.1Ω resistor?
+a) 1.234E+00V
-b) 1.358E+00V
-c) 1.493E+00V
-d) 1.643E+00V
-e) 1.807E+00V
4) Two sources of emf ε1=13.6V, and ε2=6.53V are oriented as shownin the circuit. The resistances are R1=2.89kΩ and R2=2.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.11mA and I4=0.311mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 7.264E-01mA
+b) 7.990E-01mA
-c) 8.789E-01mA
-d) 9.668E-01mA
-e) 1.063E+00mA
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Key: C1
1) Two sources of emf ε1=29.5V, and ε2=11.0V are oriented as shownin the circuit. The resistances are R1=2.45kΩ and R2=1.96kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.03mA and I4=0.783mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 2.247E+00mA
-b) 2.472E+00mA
-c) 2.719E+00mA
-d) 2.991E+00mA
-e) 3.290E+00mA
2) Three resistors, R1=1.43Ω, and R2=R2=3.25Ω, are connected in parallel to a 9.03V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 5.184E+01W
+b) 5.702E+01W
-c) 6.272E+01W
-d) 6.900E+01W
-e) 7.590E+01W
3) Two sources of emf ε1=35.5V, and ε2=12.3V are oriented as shownin the circuit. The resistances are R1=4.49kΩ and R2=1.53kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.63mA and I4=0.972mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 1.093E+01V
+b) 1.202E+01V
-c) 1.322E+01V
-d) 1.454E+01V
-e) 1.600E+01V
4) A battery with a terminal voltage of 8.72V is connected to a circuit consisting of 2 15.8Ω resistors and one 9.58Ω resistor. What is the voltage drop across the 9.58Ω resistor?
-a) 1.677E+00V
-b) 1.844E+00V
+c) 2.029E+00V
-d) 2.231E+00V
-e) 2.455E+00V
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Key: C2
1) Two sources of emf ε1=29.5V, and ε2=11.0V are oriented as shownin the circuit. The resistances are R1=2.45kΩ and R2=1.96kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.03mA and I4=0.783mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 2.247E+00mA
-b) 2.472E+00mA
-c) 2.719E+00mA
-d) 2.991E+00mA
-e) 3.290E+00mA
2) Two sources of emf ε1=49.8V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=2.78kΩ and R2=2.63kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.51mA and I4=0.969mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 7.886E+00V
-b) 8.675E+00V
-c) 9.542E+00V
-d) 1.050E+01V
+e) 1.155E+01V
3) Three resistors, R1=0.548Ω, and R2=R2=1.24Ω, are connected in parallel to a 7.16V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 7.029E+01W
-b) 7.731E+01W
-c) 8.505E+01W
+d) 9.355E+01W
-e) 1.029E+02W
4) A battery with a terminal voltage of 9.88V is connected to a circuit consisting of 3 15.9Ω resistors and one 10.8Ω resistor. What is the voltage drop across the 10.8Ω resistor?
-a) 1.370E+00V
-b) 1.507E+00V
-c) 1.658E+00V
+d) 1.824E+00V
-e) 2.006E+00V
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Key: D0
1) The resistances in the figure shown are R1= 2.04Ω, R2= 1.19Ω, and R2= 2.5Ω. V1 and V3 are text 0.507V and 3.07V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.602V. What is the absolute value of the current through R1?
+a) 1.401E-01A
-b) 1.542E-01A
-c) 1.696E-01A
-d) 1.865E-01A
-e) 2.052E-01A
2) A battery with a terminal voltage of 10.6V is connected to a circuit consisting of 2 21.1Ω resistors and one 12.8Ω resistor. What is the voltage drop across the 12.8Ω resistor?
+a) 2.467E+00V
-b) 2.714E+00V
-c) 2.985E+00V
-d) 3.283E+00V
-e) 3.612E+00V
3) Two sources of emf ε1=16.8V, and ε2=6.85V are oriented as shownin the circuit. The resistances are R1=4.43kΩ and R2=1.24kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.68mA and I4=0.758mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 3.890E+00V
-b) 4.279E+00V
-c) 4.707E+00V
+d) 5.178E+00V
-e) 5.695E+00V
4) A given battery has a 15V emf and an internal resistance of 0.177Ω. If it is connected to a 0.824Ω resistor what is the power dissipated by that load?
-a) 1.682E+02W
+b) 1.850E+02W
-c) 2.035E+02W
-d) 2.239E+02W
-e) 2.463E+02W
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Key: D1
1) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
-a) 1.552E-01A
-b) 1.707E-01A
-c) 1.878E-01A
-d) 2.065E-01A
+e) 2.272E-01A
2) Two sources of emf ε1=26.2V, and ε2=11.5V are oriented as shownin the circuit. The resistances are R1=2.13kΩ and R2=1.72kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.11mA and I4=0.746mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 4.275E+00V
-b) 4.703E+00V
+c) 5.173E+00V
-d) 5.691E+00V
-e) 6.260E+00V
3) A given battery has a 14V emf and an internal resistance of 0.0842Ω. If it is connected to a 0.835Ω resistor what is the power dissipated by that load?
-a) 1.455E+02W
-b) 1.601E+02W
-c) 1.761E+02W
+d) 1.937E+02W
-e) 2.131E+02W
4) A battery with a terminal voltage of 14.9V is connected to a circuit consisting of 2 16.3Ω resistors and one 9.8Ω resistor. What is the voltage drop across the 9.8Ω resistor?
-a) 2.352E+00V
-b) 2.587E+00V
-c) 2.846E+00V
-d) 3.131E+00V
+e) 3.444E+00V
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Key: D2
1) A battery with a terminal voltage of 10.6V is connected to a circuit consisting of 2 21.1Ω resistors and one 12.8Ω resistor. What is the voltage drop across the 12.8Ω resistor?
+a) 2.467E+00V
-b) 2.714E+00V
-c) 2.985E+00V
-d) 3.283E+00V
-e) 3.612E+00V
2) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
-a) 1.886E-01A
+b) 2.075E-01A
-c) 2.282E-01A
-d) 2.510E-01A
-e) 2.761E-01A
3) Two sources of emf ε1=16.8V, and ε2=7.15V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.51kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.95mA and I4=0.603mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 4.108E+00V
+b) 4.519E+00V
-c) 4.970E+00V
-d) 5.468E+00V
-e) 6.014E+00V
4) A given battery has a 14V emf and an internal resistance of 0.192Ω. If it is connected to a 0.766Ω resistor what is the power dissipated by that load?
-a) 1.229E+02W
-b) 1.352E+02W
-c) 1.487E+02W
+d) 1.636E+02W
-e) 1.799E+02W
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Key: E0
1) In the circuit shown V=18.4V, R1=1.64Ω, R2=6.56Ω, and R3=12.8Ω. What is the power dissipated by R2?
-a) 2.470E+01W
+b) 2.717E+01W
-c) 2.989E+01W
-d) 3.288E+01W
-e) 3.617E+01W
2) Two sources of emf ε1=42.2V, and ε2=17.8V are oriented as shownin the circuit. The resistances are R1=4.2kΩ and R2=2.83kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.5mA and I4=0.749mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 1.056E+01V
-b) 1.161E+01V
-c) 1.277E+01V
+d) 1.405E+01V
-e) 1.545E+01V
3) A given battery has a 14V emf and an internal resistance of 0.132Ω. If it is connected to a 0.689Ω resistor what is the power dissipated by that load?
-a) 1.656E+02W
-b) 1.821E+02W
+c) 2.003E+02W
-d) 2.204E+02W
-e) 2.424E+02W
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 213V. If the combined external and internal resistance is 118&Omega and the capacitance is 61mF, how long will it take for the capacitor's voltage to reach 142.0V?
-a) 5.401E+00s
-b) 5.941E+00s
-c) 6.535E+00s
-d) 7.189E+00s
+e) 7.908E+00s
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Key: E1
1) A given battery has a 14V emf and an internal resistance of 0.0842Ω. If it is connected to a 0.835Ω resistor what is the power dissipated by that load?
-a) 1.455E+02W
-b) 1.601E+02W
-c) 1.761E+02W
+d) 1.937E+02W
-e) 2.131E+02W
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 327V. If the combined external and internal resistance is 204&Omega and the capacitance is 68mF, how long will it take for the capacitor's voltage to reach 218.0V?
-a) 1.385E+01s
+b) 1.524E+01s
-c) 1.676E+01s
-d) 1.844E+01s
-e) 2.028E+01s
3) In the circuit shown V=16.1V, R1=1.18Ω, R2=5.28Ω, and R3=14.8Ω. What is the power dissipated by R2?
-a) 2.172E+01W
-b) 2.389E+01W
-c) 2.628E+01W
+d) 2.891E+01W
-e) 3.180E+01W
4) Two sources of emf ε1=36.7V, and ε2=13.6V are oriented as shownin the circuit. The resistances are R1=2.86kΩ and R2=2.2kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.02mA and I4=0.854mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
+a) 1.380E+01V
-b) 1.518E+01V
-c) 1.670E+01V
-d) 1.837E+01V
-e) 2.020E+01V
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Key: E2
1) A given battery has a 15V emf and an internal resistance of 0.162Ω. If it is connected to a 0.561Ω resistor what is the power dissipated by that load?
-a) 1.814E+02W
-b) 1.996E+02W
-c) 2.195E+02W
+d) 2.415E+02W
-e) 2.656E+02W
2) Two sources of emf ε1=36.7V, and ε2=13.6V are oriented as shownin the circuit. The resistances are R1=2.86kΩ and R2=2.2kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.02mA and I4=0.854mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
+a) 1.380E+01V
-b) 1.518E+01V
-c) 1.670E+01V
-d) 1.837E+01V
-e) 2.020E+01V
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 598V. If the combined external and internal resistance is 170&Omega and the capacitance is 73mF, how long will it take for the capacitor's voltage to reach 436.0V?
-a) 1.218E+01s
-b) 1.339E+01s
-c) 1.473E+01s
+d) 1.621E+01s
-e) 1.783E+01s
4) In the circuit shown V=17.8V, R1=2.27Ω, R2=6.79Ω, and R3=15.1Ω. What is the power dissipated by R2?
-a) 1.446E+01W
-b) 1.591E+01W
-c) 1.750E+01W
-d) 1.925E+01W
+e) 2.117E+01W
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Key: F0
1) Two sources of emf ε1=38.9V, and ε2=15.7V are oriented as shownin the circuit. The resistances are R1=2.24kΩ and R2=2.23kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.01mA and I4=0.86mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 1.955E+00mA
+b) 2.150E+00mA
-c) 2.365E+00mA
-d) 2.601E+00mA
-e) 2.862E+00mA
2) In the circuit shown V=13.5V, R1=2.66Ω, R2=7.29Ω, and R3=14.5Ω. What is the power dissipated by R2?
-a) 7.123E+00W
-b) 7.835E+00W
-c) 8.618E+00W
-d) 9.480E+00W
+e) 1.043E+01W
3) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
-a) 1.886E-01A
+b) 2.075E-01A
-c) 2.282E-01A
-d) 2.510E-01A
-e) 2.761E-01A
4) A battery with a terminal voltage of 13.2V is connected to a circuit consisting of 3 15.7Ω resistors and one 10.3Ω resistor. What is the voltage drop across the 10.3Ω resistor?
-a) 1.958E+00V
-b) 2.153E+00V
+c) 2.369E+00V
-d) 2.606E+00V
-e) 2.866E+00V
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Key: F1
1) The resistances in the figure shown are R1= 2.04Ω, R2= 1.19Ω, and R2= 2.5Ω. V1 and V3 are text 0.507V and 3.07V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.602V. What is the absolute value of the current through R1?
+a) 1.401E-01A
-b) 1.542E-01A
-c) 1.696E-01A
-d) 1.865E-01A
-e) 2.052E-01A
2) Two sources of emf ε1=39.0V, and ε2=15.9V are oriented as shownin the circuit. The resistances are R1=3.4kΩ and R2=2.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.58mA and I4=0.978mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 2.150E+00mA
-b) 2.365E+00mA
+c) 2.602E+00mA
-d) 2.862E+00mA
-e) 3.148E+00mA
3) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 3 20.9Ω resistors and one 12.1Ω resistor. What is the voltage drop across the 12.1Ω resistor?
+a) 1.234E+00V
-b) 1.358E+00V
-c) 1.493E+00V
-d) 1.643E+00V
-e) 1.807E+00V
4) In the circuit shown V=16.1V, R1=1.18Ω, R2=5.28Ω, and R3=14.8Ω. What is the power dissipated by R2?
-a) 2.172E+01W
-b) 2.389E+01W
-c) 2.628E+01W
+d) 2.891E+01W
-e) 3.180E+01W
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Key: F2
1) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
-a) 1.552E-01A
-b) 1.707E-01A
-c) 1.878E-01A
-d) 2.065E-01A
+e) 2.272E-01A
2) Two sources of emf ε1=49.6V, and ε2=19.3V are oriented as shownin the circuit. The resistances are R1=4.87kΩ and R2=2.81kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.37mA and I4=1.01mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 3.055E+00mA
+b) 3.360E+00mA
-c) 3.696E+00mA
-d) 4.066E+00mA
-e) 4.472E+00mA
3) A battery with a terminal voltage of 8.66V is connected to a circuit consisting of 3 19.6Ω resistors and one 10.6Ω resistor. What is the voltage drop across the 10.6Ω resistor?
-a) 1.202E+00V
+b) 1.323E+00V
-c) 1.455E+00V
-d) 1.600E+00V
-e) 1.761E+00V
4) In the circuit shown V=17.9V, R1=1.68Ω, R2=7.84Ω, and R3=12.3Ω. What is the power dissipated by R2?
+a) 2.240E+01W
-b) 2.464E+01W
-c) 2.710E+01W
-d) 2.981E+01W
-e) 3.279E+01W
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Key: G0
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 130V. If the combined external and internal resistance is 109&Omega and the capacitance is 59mF, how long will it take for the capacitor's voltage to reach 69.9V?
-a) 3.728E+00s
-b) 4.101E+00s
-c) 4.511E+00s
+d) 4.962E+00s
-e) 5.458E+00s
2) Two sources of emf ε1=57.0V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=4.95kΩ and R2=2.09kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.23mA and I4=1.04mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 1.921E+01V
+b) 2.114E+01V
-c) 2.325E+01V
-d) 2.557E+01V
-e) 2.813E+01V
3) The resistances in the figure shown are R1= 2.49Ω, R2= 1.72Ω, and R2= 3.58Ω. V1 and V3 are text 0.417V and 1.83V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.53V. What is the absolute value of the current through R1?
-a) 8.220E-02A
-b) 9.042E-02A
-c) 9.946E-02A
+d) 1.094E-01A
-e) 1.203E-01A
4) A given battery has a 10V emf and an internal resistance of 0.119Ω. If it is connected to a 0.445Ω resistor what is the power dissipated by that load?
-a) 1.272E+02W
+b) 1.399E+02W
-c) 1.539E+02W
-d) 1.693E+02W
-e) 1.862E+02W
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Key: G1
1) A given battery has a 11V emf and an internal resistance of 0.0998Ω. If it is connected to a 0.417Ω resistor what is the power dissipated by that load?
-a) 1.419E+02W
-b) 1.561E+02W
-c) 1.717E+02W
+d) 1.889E+02W
-e) 2.078E+02W
2) Two sources of emf ε1=30.6V, and ε2=12.0V are oriented as shownin the circuit. The resistances are R1=3.46kΩ and R2=2.77kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.97mA and I4=0.643mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 4.986E+00V
-b) 5.484E+00V
-c) 6.033E+00V
-d) 6.636E+00V
+e) 7.299E+00V
3) The resistances in the figure shown are R1= 2.38Ω, R2= 1.87Ω, and R2= 2.32Ω. V1 and V3 are text 0.605V and 3.8V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.67V. What is the absolute value of the current through R1?
-a) 8.147E-02A
-b) 8.962E-02A
-c) 9.858E-02A
+d) 1.084E-01A
-e) 1.193E-01A
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 327V. If the combined external and internal resistance is 204&Omega and the capacitance is 68mF, how long will it take for the capacitor's voltage to reach 218.0V?
-a) 1.385E+01s
+b) 1.524E+01s
-c) 1.676E+01s
-d) 1.844E+01s
-e) 2.028E+01s
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Key: G2
1) The resistances in the figure shown are R1= 1.54Ω, R2= 0.927Ω, and R2= 2.46Ω. V1 and V3 are text 0.632V and 2.12V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.586V. What is the absolute value of the current through R1?
-a) 1.770E-01A
-b) 1.947E-01A
+c) 2.141E-01A
-d) 2.355E-01A
-e) 2.591E-01A
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 439V. If the combined external and internal resistance is 221&Omega and the capacitance is 54mF, how long will it take for the capacitor's voltage to reach 350.0V?
+a) 1.905E+01s
-b) 2.095E+01s
-c) 2.304E+01s
-d) 2.535E+01s
-e) 2.788E+01s
3) Two sources of emf ε1=26.2V, and ε2=11.5V are oriented as shownin the circuit. The resistances are R1=2.13kΩ and R2=1.72kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.11mA and I4=0.746mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 4.275E+00V
-b) 4.703E+00V
+c) 5.173E+00V
-d) 5.691E+00V
-e) 6.260E+00V
4) A given battery has a 14V emf and an internal resistance of 0.0842Ω. If it is connected to a 0.835Ω resistor what is the power dissipated by that load?
-a) 1.455E+02W
-b) 1.601E+02W
-c) 1.761E+02W
+d) 1.937E+02W
-e) 2.131E+02W
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Key: H0
1) The resistances in the figure shown are R1= 2.34Ω, R2= 1.34Ω, and R2= 2.94Ω. V1 and V3 are text 0.609V and 1.68V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.541V. What is the absolute value of the current through R1?
-a) 1.464E-01A
+b) 1.610E-01A
-c) 1.772E-01A
-d) 1.949E-01A
-e) 2.144E-01A
2) Three resistors, R1=1.39Ω, and R2=R2=3.06Ω, are connected in parallel to a 6.21V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 2.293E+01W
-b) 2.522E+01W
+c) 2.774E+01W
-d) 3.052E+01W
-e) 3.357E+01W
3) Two sources of emf ε1=38.9V, and ε2=16.9V are oriented as shownin the circuit. The resistances are R1=3.3kΩ and R2=2.51kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.34mA and I4=0.955mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 7.031E+00V
+b) 7.734E+00V
-c) 8.507E+00V
-d) 9.358E+00V
-e) 1.029E+01V
4) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 2 15.9Ω resistors and one 10.4Ω resistor. What is the voltage drop across the 10.4Ω resistor?
-a) 1.709E+00V
+b) 1.880E+00V
-c) 2.068E+00V
-d) 2.275E+00V
-e) 2.503E+00V
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Key: H1
1) The resistances in the figure shown are R1= 2.24Ω, R2= 1.03Ω, and R2= 2.39Ω. V1 and V3 are text 0.595V and 2.58V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.707V. What is the absolute value of the current through R1?
-a) 1.834E-01A
+b) 2.018E-01A
-c) 2.220E-01A
-d) 2.441E-01A
-e) 2.686E-01A
2) Two sources of emf ε1=38.8V, and ε2=14.9V are oriented as shownin the circuit. The resistances are R1=5.83kΩ and R2=1.77kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.57mA and I4=1.19mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 1.013E+01V
-b) 1.115E+01V
-c) 1.226E+01V
+d) 1.349E+01V
-e) 1.484E+01V
3) Three resistors, R1=1.39Ω, and R2=R2=3.06Ω, are connected in parallel to a 6.21V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 2.293E+01W
-b) 2.522E+01W
+c) 2.774E+01W
-d) 3.052E+01W
-e) 3.357E+01W
4) A battery with a terminal voltage of 9.88V is connected to a circuit consisting of 3 15.9Ω resistors and one 10.8Ω resistor. What is the voltage drop across the 10.8Ω resistor?
-a) 1.370E+00V
-b) 1.507E+00V
-c) 1.658E+00V
+d) 1.824E+00V
-e) 2.006E+00V
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Key: H2
1) Two sources of emf ε1=57.0V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=4.95kΩ and R2=2.09kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.23mA and I4=1.04mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 1.921E+01V
+b) 2.114E+01V
-c) 2.325E+01V
-d) 2.557E+01V
-e) 2.813E+01V
2) The resistances in the figure shown are R1= 2.67Ω, R2= 1.78Ω, and R2= 3.63Ω. V1 and V3 are text 0.448V and 2.29V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.656V. What is the absolute value of the current through R1?
-a) 9.287E-02A
-b) 1.022E-01A
-c) 1.124E-01A
+d) 1.236E-01A
-e) 1.360E-01A
3) Three resistors, R1=1.41Ω, and R2=R2=3.17Ω, are connected in parallel to a 5.89V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 1.681E+01W
-b) 1.849E+01W
-c) 2.033E+01W
-d) 2.237E+01W
+e) 2.460E+01W
4) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 2 15.9Ω resistors and one 10.4Ω resistor. What is the voltage drop across the 10.4Ω resistor?
-a) 1.709E+00V
+b) 1.880E+00V
-c) 2.068E+00V
-d) 2.275E+00V
-e) 2.503E+00V
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Key: I0
1) Two sources of emf ε1=16.8V, and ε2=7.15V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.51kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.95mA and I4=0.603mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 4.108E+00V
+b) 4.519E+00V
-c) 4.970E+00V
-d) 5.468E+00V
-e) 6.014E+00V
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 319V. If the combined external and internal resistance is 231&Omega and the capacitance is 64mF, how long will it take for the capacitor's voltage to reach 175.0V?
-a) 9.718E+00s
-b) 1.069E+01s
+c) 1.176E+01s
-d) 1.293E+01s
-e) 1.423E+01s
3) A battery with a terminal voltage of 10.6V is connected to a circuit consisting of 2 21.1Ω resistors and one 12.8Ω resistor. What is the voltage drop across the 12.8Ω resistor?
+a) 2.467E+00V
-b) 2.714E+00V
-c) 2.985E+00V
-d) 3.283E+00V
-e) 3.612E+00V
4) Two sources of emf ε1=39.4V, and ε2=12.2V are oriented as shownin the circuit. The resistances are R1=3.84kΩ and R2=2.01kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.71mA and I4=0.669mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 8.825E+00V
-b) 9.708E+00V
-c) 1.068E+01V
-d) 1.175E+01V
+e) 1.292E+01V
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Key: I1
1) Two sources of emf ε1=21.0V, and ε2=8.72V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.15kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.41mA and I4=0.816mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
+a) 5.267E+00V
-b) 5.794E+00V
-c) 6.373E+00V
-d) 7.011E+00V
-e) 7.712E+00V
2) A battery with a terminal voltage of 12.4V is connected to a circuit consisting of 3 21.6Ω resistors and one 12.1Ω resistor. What is the voltage drop across the 12.1Ω resistor?
-a) 1.333E+00V
-b) 1.466E+00V
-c) 1.612E+00V
-d) 1.774E+00V
+e) 1.951E+00V
3) Two sources of emf ε1=58.5V, and ε2=17.3V are oriented as shownin the circuit. The resistances are R1=3.06kΩ and R2=1.88kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=5.25mA and I4=1.25mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 1.981E+01V
+b) 2.179E+01V
-c) 2.397E+01V
-d) 2.637E+01V
-e) 2.901E+01V
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 213V. If the combined external and internal resistance is 118&Omega and the capacitance is 61mF, how long will it take for the capacitor's voltage to reach 142.0V?
-a) 5.401E+00s
-b) 5.941E+00s
-c) 6.535E+00s
-d) 7.189E+00s
+e) 7.908E+00s
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Key: I2
1) Two sources of emf ε1=21.0V, and ε2=8.72V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.15kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.41mA and I4=0.816mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
+a) 5.267E+00V
-b) 5.794E+00V
-c) 6.373E+00V
-d) 7.011E+00V
-e) 7.712E+00V
2) A battery with a terminal voltage of 10.6V is connected to a circuit consisting of 2 21.1Ω resistors and one 12.8Ω resistor. What is the voltage drop across the 12.8Ω resistor?
+a) 2.467E+00V
-b) 2.714E+00V
-c) 2.985E+00V
-d) 3.283E+00V
-e) 3.612E+00V
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 439V. If the combined external and internal resistance is 221&Omega and the capacitance is 54mF, how long will it take for the capacitor's voltage to reach 350.0V?
+a) 1.905E+01s
-b) 2.095E+01s
-c) 2.304E+01s
-d) 2.535E+01s
-e) 2.788E+01s
4) Two sources of emf ε1=42.2V, and ε2=17.8V are oriented as shownin the circuit. The resistances are R1=4.2kΩ and R2=2.83kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.5mA and I4=0.749mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 1.056E+01V
-b) 1.161E+01V
-c) 1.277E+01V
+d) 1.405E+01V
-e) 1.545E+01V
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Key: J0
1) The resistances in the figure shown are R1= 2.38Ω, R2= 1.87Ω, and R2= 2.32Ω. V1 and V3 are text 0.605V and 3.8V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.67V. What is the absolute value of the current through R1?
-a) 8.147E-02A
-b) 8.962E-02A
-c) 9.858E-02A
+d) 1.084E-01A
-e) 1.193E-01A
2) Three resistors, R1=0.61Ω, and R2=R2=1.35Ω, are connected in parallel to a 7.04V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 7.386E+01W
+b) 8.125E+01W
-c) 8.937E+01W
-d) 9.831E+01W
-e) 1.081E+02W
3) A battery with a terminal voltage of 9.88V is connected to a circuit consisting of 3 15.9Ω resistors and one 10.8Ω resistor. What is the voltage drop across the 10.8Ω resistor?
-a) 1.370E+00V
-b) 1.507E+00V
-c) 1.658E+00V
+d) 1.824E+00V
-e) 2.006E+00V
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 439V. If the combined external and internal resistance is 221&Omega and the capacitance is 54mF, how long will it take for the capacitor's voltage to reach 350.0V?
+a) 1.905E+01s
-b) 2.095E+01s
-c) 2.304E+01s
-d) 2.535E+01s
-e) 2.788E+01s
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Key: J1
1) Three resistors, R1=0.87Ω, and R2=R2=2.0Ω, are connected in parallel to a 8.57V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 6.977E+01W
-b) 7.674E+01W
+c) 8.442E+01W
-d) 9.286E+01W
-e) 1.021E+02W
2) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
-a) 1.203E-01A
-b) 1.324E-01A
+c) 1.456E-01A
-d) 1.602E-01A
-e) 1.762E-01A
3) A battery with a terminal voltage of 14.1V is connected to a circuit consisting of 2 20.3Ω resistors and one 13.1Ω resistor. What is the voltage drop across the 13.1Ω resistor?
-a) 2.843E+00V
-b) 3.127E+00V
+c) 3.440E+00V
-d) 3.784E+00V
-e) 4.162E+00V
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 301V. If the combined external and internal resistance is 245&Omega and the capacitance is 63mF, how long will it take for the capacitor's voltage to reach 192.0V?
-a) 1.296E+01s
-b) 1.425E+01s
+c) 1.568E+01s
-d) 1.725E+01s
-e) 1.897E+01s
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Key: J2
1) The resistances in the figure shown are R1= 1.18Ω, R2= 0.878Ω, and R2= 2.11Ω. V1 and V3 are text 0.637V and 3.51V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.547V. What is the absolute value of the current through R1?
-a) 1.701E-01A
+b) 1.871E-01A
-c) 2.058E-01A
-d) 2.264E-01A
-e) 2.490E-01A
2) Three resistors, R1=1.25Ω, and R2=R2=2.82Ω, are connected in parallel to a 8.6V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 4.890E+01W
-b) 5.379E+01W
+c) 5.917E+01W
-d) 6.508E+01W
-e) 7.159E+01W
3) A battery with a terminal voltage of 8.66V is connected to a circuit consisting of 3 19.6Ω resistors and one 10.6Ω resistor. What is the voltage drop across the 10.6Ω resistor?
-a) 1.202E+00V
+b) 1.323E+00V
-c) 1.455E+00V
-d) 1.600E+00V
-e) 1.761E+00V
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 130V. If the combined external and internal resistance is 109&Omega and the capacitance is 59mF, how long will it take for the capacitor's voltage to reach 69.9V?
-a) 3.728E+00s
-b) 4.101E+00s
-c) 4.511E+00s
+d) 4.962E+00s
-e) 5.458E+00s
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Key: K0
1) In the circuit shown V=10.9V, R1=1.68Ω, R2=7.52Ω, and R3=12.8Ω. What is the power dissipated by R2?
-a) 7.827E+00W
+b) 8.610E+00W
-c) 9.470E+00W
-d) 1.042E+01W
-e) 1.146E+01W
2) Two sources of emf ε1=24.4V, and ε2=6.73V are oriented as shownin the circuit. The resistances are R1=5.7kΩ and R2=1.95kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.36mA and I4=0.418mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 5.418E+00V
-b) 5.960E+00V
-c) 6.556E+00V
-d) 7.212E+00V
+e) 7.933E+00V
3) The resistances in the figure shown are R1= 2.24Ω, R2= 1.03Ω, and R2= 2.39Ω. V1 and V3 are text 0.595V and 2.58V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.707V. What is the absolute value of the current through R1?
-a) 1.834E-01A
+b) 2.018E-01A
-c) 2.220E-01A
-d) 2.441E-01A
-e) 2.686E-01A
4) Two sources of emf ε1=21.0V, and ε2=8.72V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.15kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.41mA and I4=0.816mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
+a) 5.267E+00V
-b) 5.794E+00V
-c) 6.373E+00V
-d) 7.011E+00V
-e) 7.712E+00V
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Key: K1
1) Two sources of emf ε1=54.9V, and ε2=19.8V are oriented as shownin the circuit. The resistances are R1=3.93kΩ and R2=1.31kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=9.18mA and I4=1.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
+a) 1.779E+01V
-b) 1.957E+01V
-c) 2.153E+01V
-d) 2.368E+01V
-e) 2.605E+01V
2) In the circuit shown V=16.2V, R1=2.84Ω, R2=7.06Ω, and R3=13.1Ω. What is the power dissipated by R2?
+a) 1.418E+01W
-b) 1.560E+01W
-c) 1.716E+01W
-d) 1.887E+01W
-e) 2.076E+01W
3) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
-a) 1.886E-01A
+b) 2.075E-01A
-c) 2.282E-01A
-d) 2.510E-01A
-e) 2.761E-01A
4) Two sources of emf ε1=38.9V, and ε2=14.4V are oriented as shownin the circuit. The resistances are R1=4.33kΩ and R2=1.65kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=5.59mA and I4=1.07mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 9.142E+00V
-b) 1.006E+01V
+c) 1.106E+01V
-d) 1.217E+01V
-e) 1.338E+01V
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Key: K2
1) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
-a) 1.203E-01A
-b) 1.324E-01A
+c) 1.456E-01A
-d) 1.602E-01A
-e) 1.762E-01A
2) In the circuit shown V=13.5V, R1=2.66Ω, R2=7.29Ω, and R3=14.5Ω. What is the power dissipated by R2?
-a) 7.123E+00W
-b) 7.835E+00W
-c) 8.618E+00W
-d) 9.480E+00W
+e) 1.043E+01W
3) Two sources of emf ε1=16.8V, and ε2=6.85V are oriented as shownin the circuit. The resistances are R1=4.43kΩ and R2=1.24kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.68mA and I4=0.758mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 3.890E+00V
-b) 4.279E+00V
-c) 4.707E+00V
+d) 5.178E+00V
-e) 5.695E+00V
4) Two sources of emf ε1=54.9V, and ε2=19.8V are oriented as shownin the circuit. The resistances are R1=3.93kΩ and R2=1.31kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=9.18mA and I4=1.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
+a) 1.779E+01V
-b) 1.957E+01V
-c) 2.153E+01V
-d) 2.368E+01V
-e) 2.605E+01V
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Key: L0
1) The resistances in the figure shown are R1= 2.38Ω, R2= 1.87Ω, and R2= 2.32Ω. V1 and V3 are text 0.605V and 3.8V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.67V. What is the absolute value of the current through R1?
-a) 8.147E-02A
-b) 8.962E-02A
-c) 9.858E-02A
+d) 1.084E-01A
-e) 1.193E-01A
2) In the circuit shown V=15.4V, R1=2.55Ω, R2=5.12Ω, and R3=12.7Ω. What is the power dissipated by R2?
-a) 1.096E+01W
-b) 1.206E+01W
-c) 1.326E+01W
-d) 1.459E+01W
+e) 1.605E+01W
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 319V. If the combined external and internal resistance is 231&Omega and the capacitance is 64mF, how long will it take for the capacitor's voltage to reach 175.0V?
-a) 9.718E+00s
-b) 1.069E+01s
+c) 1.176E+01s
-d) 1.293E+01s
-e) 1.423E+01s
4) A battery with a terminal voltage of 7.82V is connected to a circuit consisting of 2 19.3Ω resistors and one 12.2Ω resistor. What is the voltage drop across the 12.2Ω resistor?
-a) 1.552E+00V
-b) 1.707E+00V
+c) 1.878E+00V
-d) 2.066E+00V
-e) 2.272E+00V
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Key: L1
1) The resistances in the figure shown are R1= 2.42Ω, R2= 1.09Ω, and R2= 3.89Ω. V1 and V3 are text 0.677V and 1.86V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.745V. What is the absolute value of the current through R1?
-a) 2.089E-01A
-b) 2.298E-01A
+c) 2.528E-01A
-d) 2.781E-01A
-e) 3.059E-01A
2) A battery with a terminal voltage of 8.41V is connected to a circuit consisting of 3 16.1Ω resistors and one 10.9Ω resistor. What is the voltage drop across the 10.9Ω resistor?
-a) 1.058E+00V
-b) 1.163E+00V
-c) 1.280E+00V
-d) 1.408E+00V
+e) 1.548E+00V
3) In the circuit shown V=19.6V, R1=1.45Ω, R2=7.85Ω, and R3=15.8Ω. What is the power dissipated by R2?
-a) 2.730E+01W
+b) 3.003E+01W
-c) 3.304E+01W
-d) 3.634E+01W
-e) 3.998E+01W
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 129V. If the combined external and internal resistance is 169&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 109.0V?
-a) 2.177E+01s
+b) 2.394E+01s
-c) 2.634E+01s
-d) 2.897E+01s
-e) 3.187E+01s
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Key: L2
1) The resistances in the figure shown are R1= 2.04Ω, R2= 1.19Ω, and R2= 2.5Ω. V1 and V3 are text 0.507V and 3.07V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.602V. What is the absolute value of the current through R1?
+a) 1.401E-01A
-b) 1.542E-01A
-c) 1.696E-01A
-d) 1.865E-01A
-e) 2.052E-01A
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 467V. If the combined external and internal resistance is 172&Omega and the capacitance is 74mF, how long will it take for the capacitor's voltage to reach 258.0V?
-a) 7.688E+00s
-b) 8.457E+00s
-c) 9.303E+00s
+d) 1.023E+01s
-e) 1.126E+01s
3) A battery with a terminal voltage of 8.14V is connected to a circuit consisting of 2 21.5Ω resistors and one 13.1Ω resistor. What is the voltage drop across the 13.1Ω resistor?
-a) 1.298E+00V
-b) 1.428E+00V
-c) 1.571E+00V
-d) 1.728E+00V
+e) 1.901E+00V
4) In the circuit shown V=13.5V, R1=2.66Ω, R2=7.29Ω, and R3=14.5Ω. What is the power dissipated by R2?
-a) 7.123E+00W
-b) 7.835E+00W
-c) 8.618E+00W
-d) 9.480E+00W
+e) 1.043E+01W
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Key: M0
1) A battery with a terminal voltage of 7.82V is connected to a circuit consisting of 2 19.3Ω resistors and one 12.2Ω resistor. What is the voltage drop across the 12.2Ω resistor?
-a) 1.552E+00V
-b) 1.707E+00V
+c) 1.878E+00V
-d) 2.066E+00V
-e) 2.272E+00V
2) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
-a) 1.552E-01A
-b) 1.707E-01A
-c) 1.878E-01A
-d) 2.065E-01A
+e) 2.272E-01A
3) In the circuit shown V=17.5V, R1=2.34Ω, R2=7.1Ω, and R3=15.3Ω. What is the power dissipated by R2?
-a) 1.784E+01W
+b) 1.963E+01W
-c) 2.159E+01W
-d) 2.375E+01W
-e) 2.612E+01W
4) Two sources of emf ε1=18.6V, and ε2=5.63V are oriented as shownin the circuit. The resistances are R1=3.9kΩ and R2=1.1kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.41mA and I4=0.614mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 4.342E+00V
-b) 4.776E+00V
-c) 5.254E+00V
+d) 5.779E+00V
-e) 6.357E+00V
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Key: M1
1) The resistances in the figure shown are R1= 2.54Ω, R2= 1.15Ω, and R2= 2.9Ω. V1 and V3 are text 0.446V and 3.39V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
+a) 1.285E-01A
-b) 1.414E-01A
-c) 1.555E-01A
-d) 1.711E-01A
-e) 1.882E-01A
2) A battery with a terminal voltage of 14.9V is connected to a circuit consisting of 2 16.3Ω resistors and one 9.8Ω resistor. What is the voltage drop across the 9.8Ω resistor?
-a) 2.352E+00V
-b) 2.587E+00V
-c) 2.846E+00V
-d) 3.131E+00V
+e) 3.444E+00V
3) Two sources of emf ε1=40.9V, and ε2=16.1V are oriented as shownin the circuit. The resistances are R1=5.55kΩ and R2=1.55kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=6.11mA and I4=1.06mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 8.754E+00V
-b) 9.630E+00V
-c) 1.059E+01V
-d) 1.165E+01V
+e) 1.282E+01V
4) In the circuit shown V=11.9V, R1=2.75Ω, R2=7.19Ω, and R3=14.6Ω. What is the power dissipated by R2?
+a) 7.982E+00W
-b) 8.780E+00W
-c) 9.658E+00W
-d) 1.062E+01W
-e) 1.169E+01W
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Key: M2
1) A battery with a terminal voltage of 14.9V is connected to a circuit consisting of 2 16.3Ω resistors and one 9.8Ω resistor. What is the voltage drop across the 9.8Ω resistor?
-a) 2.352E+00V
-b) 2.587E+00V
-c) 2.846E+00V
-d) 3.131E+00V
+e) 3.444E+00V
2) Two sources of emf ε1=27.9V, and ε2=11.1V are oriented as shownin the circuit. The resistances are R1=2.82kΩ and R2=2.25kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.1mA and I4=0.676mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 8.334E+00V
-b) 9.167E+00V
+c) 1.008E+01V
-d) 1.109E+01V
-e) 1.220E+01V
3) The resistances in the figure shown are R1= 2.67Ω, R2= 1.78Ω, and R2= 3.63Ω. V1 and V3 are text 0.448V and 2.29V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.656V. What is the absolute value of the current through R1?
-a) 9.287E-02A
-b) 1.022E-01A
-c) 1.124E-01A
+d) 1.236E-01A
-e) 1.360E-01A
4) In the circuit shown V=18.8V, R1=2.59Ω, R2=5.47Ω, and R3=15.8Ω. What is the power dissipated by R2?
-a) 2.191E+01W
+b) 2.410E+01W
-c) 2.651E+01W
-d) 2.916E+01W
-e) 3.208E+01W
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Key: N0
1) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
-a) 1.203E-01A
-b) 1.324E-01A
+c) 1.456E-01A
-d) 1.602E-01A
-e) 1.762E-01A
2) A battery with a terminal voltage of 14.1V is connected to a circuit consisting of 3 15.7Ω resistors and one 10.2Ω resistor. What is the voltage drop across the 10.2Ω resistor?
-a) 2.074E+00V
-b) 2.282E+00V
+c) 2.510E+00V
-d) 2.761E+00V
-e) 3.037E+00V
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 327V. If the combined external and internal resistance is 204&Omega and the capacitance is 68mF, how long will it take for the capacitor's voltage to reach 218.0V?
-a) 1.385E+01s
+b) 1.524E+01s
-c) 1.676E+01s
-d) 1.844E+01s
-e) 2.028E+01s
4) Two sources of emf ε1=43.0V, and ε2=13.8V are oriented as shownin the circuit. The resistances are R1=3.97kΩ and R2=1.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=6.25mA and I4=1.82mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 3.661E+00mA
-b) 4.027E+00mA
+c) 4.430E+00mA
-d) 4.873E+00mA
-e) 5.360E+00mA
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Key: N1
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 129V. If the combined external and internal resistance is 169&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 109.0V?
-a) 2.177E+01s
+b) 2.394E+01s
-c) 2.634E+01s
-d) 2.897E+01s
-e) 3.187E+01s
2) Two sources of emf ε1=43.7V, and ε2=13.1V are oriented as shownin the circuit. The resistances are R1=5.21kΩ and R2=1.72kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.86mA and I4=0.9mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 2.691E+00mA
+b) 2.960E+00mA
-c) 3.256E+00mA
-d) 3.582E+00mA
-e) 3.940E+00mA
3) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 2 15.9Ω resistors and one 10.4Ω resistor. What is the voltage drop across the 10.4Ω resistor?
-a) 1.709E+00V
+b) 1.880E+00V
-c) 2.068E+00V
-d) 2.275E+00V
-e) 2.503E+00V
4) The resistances in the figure shown are R1= 2.42Ω, R2= 1.09Ω, and R2= 3.89Ω. V1 and V3 are text 0.677V and 1.86V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.745V. What is the absolute value of the current through R1?
-a) 2.089E-01A
-b) 2.298E-01A
+c) 2.528E-01A
-d) 2.781E-01A
-e) 3.059E-01A
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Key: N2
1) A battery with a terminal voltage of 8.66V is connected to a circuit consisting of 3 19.6Ω resistors and one 10.6Ω resistor. What is the voltage drop across the 10.6Ω resistor?
-a) 1.202E+00V
+b) 1.323E+00V
-c) 1.455E+00V
-d) 1.600E+00V
-e) 1.761E+00V
2) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
-a) 1.552E-01A
-b) 1.707E-01A
-c) 1.878E-01A
-d) 2.065E-01A
+e) 2.272E-01A
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 301V. If the combined external and internal resistance is 245&Omega and the capacitance is 63mF, how long will it take for the capacitor's voltage to reach 192.0V?
-a) 1.296E+01s
-b) 1.425E+01s
+c) 1.568E+01s
-d) 1.725E+01s
-e) 1.897E+01s
4) Two sources of emf ε1=36.3V, and ε2=12.9V are oriented as shownin the circuit. The resistances are R1=4.28kΩ and R2=1.58kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.16mA and I4=1.2mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 2.224E+00mA
-b) 2.446E+00mA
-c) 2.691E+00mA
+d) 2.960E+00mA
-e) 3.256E+00mA
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Key: O0
1) Two sources of emf ε1=39.4V, and ε2=12.2V are oriented as shownin the circuit. The resistances are R1=3.84kΩ and R2=2.01kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.71mA and I4=0.669mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 8.825E+00V
-b) 9.708E+00V
-c) 1.068E+01V
-d) 1.175E+01V
+e) 1.292E+01V
2) Three resistors, R1=1.74Ω, and R2=R2=3.92Ω, are connected in parallel to a 8.5V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 2.836E+01W
-b) 3.120E+01W
-c) 3.432E+01W
-d) 3.775E+01W
+e) 4.152E+01W
3) Two sources of emf ε1=44.4V, and ε2=16.8V are oriented as shownin the circuit. The resistances are R1=4.58kΩ and R2=1.2kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=8.43mA and I4=1.46mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 6.970E+00mA
-b) 7.667E+00mA
-c) 8.434E+00mA
-d) 9.277E+00mA
-e) 1.020E+01mA
4) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
-a) 1.213E-01A
-b) 1.334E-01A
-c) 1.468E-01A
+d) 1.614E-01A
-e) 1.776E-01A
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Key: O1
1) Two sources of emf ε1=29.5V, and ε2=11.0V are oriented as shownin the circuit. The resistances are R1=2.45kΩ and R2=1.96kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.03mA and I4=0.783mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 2.247E+00mA
-b) 2.472E+00mA
-c) 2.719E+00mA
-d) 2.991E+00mA
-e) 3.290E+00mA
2) Two sources of emf ε1=39.4V, and ε2=12.2V are oriented as shownin the circuit. The resistances are R1=3.84kΩ and R2=2.01kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.71mA and I4=0.669mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 8.825E+00V
-b) 9.708E+00V
-c) 1.068E+01V
-d) 1.175E+01V
+e) 1.292E+01V
3) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
-a) 1.886E-01A
+b) 2.075E-01A
-c) 2.282E-01A
-d) 2.510E-01A
-e) 2.761E-01A
4) Three resistors, R1=0.855Ω, and R2=R2=1.91Ω, are connected in parallel to a 6.97V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
+a) 5.682E+01W
-b) 6.250E+01W
-c) 6.875E+01W
-d) 7.563E+01W
-e) 8.319E+01W
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Key: O2
1) Three resistors, R1=0.686Ω, and R2=R2=1.58Ω, are connected in parallel to a 8.97V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
+a) 1.173E+02W
-b) 1.290E+02W
-c) 1.419E+02W
-d) 1.561E+02W
-e) 1.717E+02W
2) Two sources of emf ε1=39.0V, and ε2=15.9V are oriented as shownin the circuit. The resistances are R1=3.4kΩ and R2=2.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.58mA and I4=0.978mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 2.150E+00mA
-b) 2.365E+00mA
+c) 2.602E+00mA
-d) 2.862E+00mA
-e) 3.148E+00mA
3) Two sources of emf ε1=17.3V, and ε2=6.46V are oriented as shownin the circuit. The resistances are R1=2.54kΩ and R2=2.79kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.1mA and I4=0.281mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 6.488E+00V
+b) 7.137E+00V
-c) 7.850E+00V
-d) 8.635E+00V
-e) 9.499E+00V
4) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
-a) 1.213E-01A
-b) 1.334E-01A
-c) 1.468E-01A
+d) 1.614E-01A
-e) 1.776E-01A
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Key: P0
1) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
-a) 1.213E-01A
-b) 1.334E-01A
-c) 1.468E-01A
+d) 1.614E-01A
-e) 1.776E-01A
2) A given battery has a 15V emf and an internal resistance of 0.162Ω. If it is connected to a 0.561Ω resistor what is the power dissipated by that load?
-a) 1.814E+02W
-b) 1.996E+02W
-c) 2.195E+02W
+d) 2.415E+02W
-e) 2.656E+02W
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 543V. If the combined external and internal resistance is 201&Omega and the capacitance is 82mF, how long will it take for the capacitor's voltage to reach 281.0V?
-a) 9.024E+00s
-b) 9.927E+00s
-c) 1.092E+01s
+d) 1.201E+01s
-e) 1.321E+01s
4) Two sources of emf ε1=35.5V, and ε2=12.3V are oriented as shownin the circuit. The resistances are R1=4.49kΩ and R2=1.53kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.63mA and I4=0.972mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 1.093E+01V
+b) 1.202E+01V
-c) 1.322E+01V
-d) 1.454E+01V
-e) 1.600E+01V
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Key: P1
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 129V. If the combined external and internal resistance is 169&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 109.0V?
-a) 2.177E+01s
+b) 2.394E+01s
-c) 2.634E+01s
-d) 2.897E+01s
-e) 3.187E+01s
2) Two sources of emf ε1=57.0V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=4.95kΩ and R2=2.09kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.23mA and I4=1.04mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 1.921E+01V
+b) 2.114E+01V
-c) 2.325E+01V
-d) 2.557E+01V
-e) 2.813E+01V
3) A given battery has a 12V emf and an internal resistance of 0.0984Ω. If it is connected to a 0.485Ω resistor what is the power dissipated by that load?
+a) 2.052E+02W
-b) 2.257E+02W
-c) 2.483E+02W
-d) 2.731E+02W
-e) 3.004E+02W
4) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
-a) 1.203E-01A
-b) 1.324E-01A
+c) 1.456E-01A
-d) 1.602E-01A
-e) 1.762E-01A
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Key: P2
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 466V. If the combined external and internal resistance is 123&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 331.0V?
-a) 9.571E+00s
-b) 1.053E+01s
+c) 1.158E+01s
-d) 1.274E+01s
-e) 1.401E+01s
2) The resistances in the figure shown are R1= 1.33Ω, R2= 1.72Ω, and R2= 3.69Ω. V1 and V3 are text 0.606V and 3.31V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.608V. What is the absolute value of the current through R1?
-a) 1.137E-01A
-b) 1.251E-01A
-c) 1.376E-01A
+d) 1.514E-01A
-e) 1.665E-01A
3) A given battery has a 13V emf and an internal resistance of 0.106Ω. If it is connected to a 0.752Ω resistor what is the power dissipated by that load?
-a) 1.569E+02W
+b) 1.726E+02W
-c) 1.899E+02W
-d) 2.089E+02W
-e) 2.298E+02W
4) Two sources of emf ε1=38.8V, and ε2=14.9V are oriented as shownin the circuit. The resistances are R1=5.83kΩ and R2=1.77kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.57mA and I4=1.19mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 1.013E+01V
-b) 1.115E+01V
-c) 1.226E+01V
+d) 1.349E+01V
-e) 1.484E+01V
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Key: Q0
1) Three resistors, R1=1.2Ω, and R2=R2=2.75Ω, are connected in parallel to a 6.42V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 2.581E+01W
-b) 2.839E+01W
-c) 3.122E+01W
+d) 3.435E+01W
-e) 3.778E+01W
2) Two sources of emf ε1=58.5V, and ε2=17.3V are oriented as shownin the circuit. The resistances are R1=3.06kΩ and R2=1.88kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=5.25mA and I4=1.25mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 1.981E+01V
+b) 2.179E+01V
-c) 2.397E+01V
-d) 2.637E+01V
-e) 2.901E+01V
3) A battery with a terminal voltage of 10.6V is connected to a circuit consisting of 2 21.1Ω resistors and one 12.8Ω resistor. What is the voltage drop across the 12.8Ω resistor?
+a) 2.467E+00V
-b) 2.714E+00V
-c) 2.985E+00V
-d) 3.283E+00V
-e) 3.612E+00V
4) Two sources of emf ε1=26.8V, and ε2=10.1V are oriented as shownin the circuit. The resistances are R1=2.2kΩ and R2=2.55kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.29mA and I4=0.464mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 3.436E+00V
-b) 3.779E+00V
-c) 4.157E+00V
-d) 4.573E+00V
+e) 5.030E+00V
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Key: Q1
1) Two sources of emf ε1=28.6V, and ε2=11.1V are oriented as shownin the circuit. The resistances are R1=3.73kΩ and R2=1.95kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.27mA and I4=0.774mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 6.641E+00V
+b) 7.305E+00V
-c) 8.035E+00V
-d) 8.839E+00V
-e) 9.723E+00V
2) A battery with a terminal voltage of 14.6V is connected to a circuit consisting of 2 21.7Ω resistors and one 14.4Ω resistor. What is the voltage drop across the 14.4Ω resistor?
+a) 3.637E+00V
-b) 4.001E+00V
-c) 4.401E+00V
-d) 4.841E+00V
-e) 5.325E+00V
3) Two sources of emf ε1=54.9V, and ε2=19.8V are oriented as shownin the circuit. The resistances are R1=3.93kΩ and R2=1.31kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=9.18mA and I4=1.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
+a) 1.779E+01V
-b) 1.957E+01V
-c) 2.153E+01V
-d) 2.368E+01V
-e) 2.605E+01V
4) Three resistors, R1=1.74Ω, and R2=R2=3.92Ω, are connected in parallel to a 8.5V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 2.836E+01W
-b) 3.120E+01W
-c) 3.432E+01W
-d) 3.775E+01W
+e) 4.152E+01W
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Key: Q2
1) A battery with a terminal voltage of 12.4V is connected to a circuit consisting of 3 21.6Ω resistors and one 12.1Ω resistor. What is the voltage drop across the 12.1Ω resistor?
-a) 1.333E+00V
-b) 1.466E+00V
-c) 1.612E+00V
-d) 1.774E+00V
+e) 1.951E+00V
2) Two sources of emf ε1=24.4V, and ε2=6.73V are oriented as shownin the circuit. The resistances are R1=5.7kΩ and R2=1.95kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.36mA and I4=0.418mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 5.418E+00V
-b) 5.960E+00V
-c) 6.556E+00V
-d) 7.212E+00V
+e) 7.933E+00V
3) Three resistors, R1=1.31Ω, and R2=R2=2.91Ω, are connected in parallel to a 6.03V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 2.294E+01W
-b) 2.523E+01W
+c) 2.776E+01W
-d) 3.053E+01W
-e) 3.359E+01W
4) Two sources of emf ε1=26.2V, and ε2=8.29V are oriented as shownin the circuit. The resistances are R1=3.43kΩ and R2=1.16kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.09mA and I4=1.06mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 6.720E+00V
-b) 7.392E+00V
-c) 8.131E+00V
-d) 8.944E+00V
+e) 9.838E+00V
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Key: R0
1) The resistances in the figure shown are R1= 1.18Ω, R2= 0.878Ω, and R2= 2.11Ω. V1 and V3 are text 0.637V and 3.51V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.547V. What is the absolute value of the current through R1?
-a) 1.701E-01A
+b) 1.871E-01A
-c) 2.058E-01A
-d) 2.264E-01A
-e) 2.490E-01A
2) Three resistors, R1=0.686Ω, and R2=R2=1.58Ω, are connected in parallel to a 8.97V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
+a) 1.173E+02W
-b) 1.290E+02W
-c) 1.419E+02W
-d) 1.561E+02W
-e) 1.717E+02W
3) Two sources of emf ε1=46.1V, and ε2=16.2V are oriented as shownin the circuit. The resistances are R1=5.17kΩ and R2=2.06kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.97mA and I4=1.07mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 1.309E+01V
-b) 1.440E+01V
+c) 1.584E+01V
-d) 1.742E+01V
-e) 1.917E+01V
4) A given battery has a 14V emf and an internal resistance of 0.192Ω. If it is connected to a 0.766Ω resistor what is the power dissipated by that load?
-a) 1.229E+02W
-b) 1.352E+02W
-c) 1.487E+02W
+d) 1.636E+02W
-e) 1.799E+02W
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Key: R1
1) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?
-a) 1.203E-01A
-b) 1.324E-01A
+c) 1.456E-01A
-d) 1.602E-01A
-e) 1.762E-01A
2) A given battery has a 13V emf and an internal resistance of 0.161Ω. If it is connected to a 0.814Ω resistor what is the power dissipated by that load?
-a) 1.087E+02W
-b) 1.196E+02W
-c) 1.316E+02W
+d) 1.447E+02W
-e) 1.592E+02W
3) Three resistors, R1=0.686Ω, and R2=R2=1.58Ω, are connected in parallel to a 8.97V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
+a) 1.173E+02W
-b) 1.290E+02W
-c) 1.419E+02W
-d) 1.561E+02W
-e) 1.717E+02W
4) Two sources of emf ε1=58.5V, and ε2=17.3V are oriented as shownin the circuit. The resistances are R1=3.06kΩ and R2=1.88kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=5.25mA and I4=1.25mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 1.981E+01V
+b) 2.179E+01V
-c) 2.397E+01V
-d) 2.637E+01V
-e) 2.901E+01V
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Key: R2
1) Two sources of emf ε1=36.7V, and ε2=12.1V are oriented as shownin the circuit. The resistances are R1=2.52kΩ and R2=1.22kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.14mA and I4=1.19mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 7.805E+00V
-b) 8.586E+00V
-c) 9.444E+00V
-d) 1.039E+01V
+e) 1.143E+01V
2) Three resistors, R1=1.82Ω, and R2=R2=4.14Ω, are connected in parallel to a 5.65V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
+a) 1.754E+01W
-b) 1.929E+01W
-c) 2.122E+01W
-d) 2.335E+01W
-e) 2.568E+01W
3) The resistances in the figure shown are R1= 2.04Ω, R2= 1.19Ω, and R2= 2.5Ω. V1 and V3 are text 0.507V and 3.07V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.602V. What is the absolute value of the current through R1?
+a) 1.401E-01A
-b) 1.542E-01A
-c) 1.696E-01A
-d) 1.865E-01A
-e) 2.052E-01A
4) A given battery has a 12V emf and an internal resistance of 0.0984Ω. If it is connected to a 0.485Ω resistor what is the power dissipated by that load?
+a) 2.052E+02W
-b) 2.257E+02W
-c) 2.483E+02W
-d) 2.731E+02W
-e) 3.004E+02W
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Key: S0
1) Two sources of emf ε1=39.2V, and ε2=12.6V are oriented as shownin the circuit. The resistances are R1=3.86kΩ and R2=1.89kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.05mA and I4=0.701mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 8.687E+00V
-b) 9.555E+00V
-c) 1.051E+01V
-d) 1.156E+01V
+e) 1.272E+01V
2) Three resistors, R1=1.2Ω, and R2=R2=2.75Ω, are connected in parallel to a 6.42V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 2.581E+01W
-b) 2.839E+01W
-c) 3.122E+01W
+d) 3.435E+01W
-e) 3.778E+01W
3) Two sources of emf ε1=39.0V, and ε2=15.9V are oriented as shownin the circuit. The resistances are R1=3.4kΩ and R2=2.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.58mA and I4=0.978mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 2.150E+00mA
-b) 2.365E+00mA
+c) 2.602E+00mA
-d) 2.862E+00mA
-e) 3.148E+00mA
4) A battery with a terminal voltage of 14.9V is connected to a circuit consisting of 2 16.3Ω resistors and one 9.8Ω resistor. What is the voltage drop across the 9.8Ω resistor?
-a) 2.352E+00V
-b) 2.587E+00V
-c) 2.846E+00V
-d) 3.131E+00V
+e) 3.444E+00V
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Key: S1
1) Two sources of emf ε1=36.3V, and ε2=12.9V are oriented as shownin the circuit. The resistances are R1=4.28kΩ and R2=1.58kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.16mA and I4=1.2mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 2.224E+00mA
-b) 2.446E+00mA
-c) 2.691E+00mA
+d) 2.960E+00mA
-e) 3.256E+00mA
2) A battery with a terminal voltage of 7.63V is connected to a circuit consisting of 3 20.9Ω resistors and one 12.1Ω resistor. What is the voltage drop across the 12.1Ω resistor?
+a) 1.234E+00V
-b) 1.358E+00V
-c) 1.493E+00V
-d) 1.643E+00V
-e) 1.807E+00V
3) Two sources of emf ε1=16.8V, and ε2=7.15V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.51kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.95mA and I4=0.603mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 4.108E+00V
+b) 4.519E+00V
-c) 4.970E+00V
-d) 5.468E+00V
-e) 6.014E+00V
4) Three resistors, R1=0.87Ω, and R2=R2=2.0Ω, are connected in parallel to a 8.57V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 6.977E+01W
-b) 7.674E+01W
+c) 8.442E+01W
-d) 9.286E+01W
-e) 1.021E+02W
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Key: S2
1) A battery with a terminal voltage of 8.72V is connected to a circuit consisting of 2 15.8Ω resistors and one 9.58Ω resistor. What is the voltage drop across the 9.58Ω resistor?
-a) 1.677E+00V
-b) 1.844E+00V
+c) 2.029E+00V
-d) 2.231E+00V
-e) 2.455E+00V
2) Two sources of emf ε1=24.8V, and ε2=10.3V are oriented as shownin the circuit. The resistances are R1=2.19kΩ and R2=1.6kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.49mA and I4=0.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 1.660E+00mA
-b) 1.826E+00mA
-c) 2.009E+00mA
-d) 2.209E+00mA
-e) 2.430E+00mA
3) Two sources of emf ε1=35.5V, and ε2=12.3V are oriented as shownin the circuit. The resistances are R1=4.49kΩ and R2=1.53kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.63mA and I4=0.972mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 1.093E+01V
+b) 1.202E+01V
-c) 1.322E+01V
-d) 1.454E+01V
-e) 1.600E+01V
4) Three resistors, R1=1.43Ω, and R2=R2=3.25Ω, are connected in parallel to a 9.03V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 5.184E+01W
+b) 5.702E+01W
-c) 6.272E+01W
-d) 6.900E+01W
-e) 7.590E+01W
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Key: T0
1) In the circuit shown V=17.8V, R1=2.27Ω, R2=6.79Ω, and R3=15.1Ω. What is the power dissipated by R2?
-a) 1.446E+01W
-b) 1.591E+01W
-c) 1.750E+01W
-d) 1.925E+01W
+e) 2.117E+01W
2) A battery with a terminal voltage of 7.82V is connected to a circuit consisting of 2 19.3Ω resistors and one 12.2Ω resistor. What is the voltage drop across the 12.2Ω resistor?
-a) 1.552E+00V
-b) 1.707E+00V
+c) 1.878E+00V
-d) 2.066E+00V
-e) 2.272E+00V
3) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
-a) 1.213E-01A
-b) 1.334E-01A
-c) 1.468E-01A
+d) 1.614E-01A
-e) 1.776E-01A
4) A given battery has a 14V emf and an internal resistance of 0.192Ω. If it is connected to a 0.766Ω resistor what is the power dissipated by that load?
-a) 1.229E+02W
-b) 1.352E+02W
-c) 1.487E+02W
+d) 1.636E+02W
-e) 1.799E+02W
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Key: T1
1) A given battery has a 13V emf and an internal resistance of 0.113Ω. If it is connected to a 0.686Ω resistor what is the power dissipated by that load?
-a) 1.501E+02W
-b) 1.651E+02W
+c) 1.816E+02W
-d) 1.998E+02W
-e) 2.197E+02W
2) In the circuit shown V=15.2V, R1=1.6Ω, R2=7.89Ω, and R3=15.3Ω. What is the power dissipated by R2?
+a) 1.713E+01W
-b) 1.885E+01W
-c) 2.073E+01W
-d) 2.280E+01W
-e) 2.508E+01W
3) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
-a) 1.886E-01A
+b) 2.075E-01A
-c) 2.282E-01A
-d) 2.510E-01A
-e) 2.761E-01A
4) A battery with a terminal voltage of 13.2V is connected to a circuit consisting of 3 15.7Ω resistors and one 10.3Ω resistor. What is the voltage drop across the 10.3Ω resistor?
-a) 1.958E+00V
-b) 2.153E+00V
+c) 2.369E+00V
-d) 2.606E+00V
-e) 2.866E+00V
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Key: T2
1) In the circuit shown V=19.6V, R1=1.45Ω, R2=7.85Ω, and R3=15.8Ω. What is the power dissipated by R2?
-a) 2.730E+01W
+b) 3.003E+01W
-c) 3.304E+01W
-d) 3.634E+01W
-e) 3.998E+01W
2) The resistances in the figure shown are R1= 1.57Ω, R2= 1.25Ω, and R2= 3.38Ω. V1 and V3 are text 0.585V and 2.91V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.55V. What is the absolute value of the current through R1?
-a) 1.427E-01A
-b) 1.569E-01A
+c) 1.726E-01A
-d) 1.899E-01A
-e) 2.089E-01A
3) A battery with a terminal voltage of 14.6V is connected to a circuit consisting of 2 21.7Ω resistors and one 14.4Ω resistor. What is the voltage drop across the 14.4Ω resistor?
+a) 3.637E+00V
-b) 4.001E+00V
-c) 4.401E+00V
-d) 4.841E+00V
-e) 5.325E+00V
4) A given battery has a 11V emf and an internal resistance of 0.0998Ω. If it is connected to a 0.417Ω resistor what is the power dissipated by that load?
-a) 1.419E+02W
-b) 1.561E+02W
-c) 1.717E+02W
+d) 1.889E+02W
-e) 2.078E+02W
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Key: U0
1) Two sources of emf ε1=14.3V, and ε2=5.6V are oriented as shownin the circuit. The resistances are R1=5.31kΩ and R2=2.39kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.12mA and I4=0.284mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 3.416E+00V
-b) 3.757E+00V
-c) 4.133E+00V
+d) 4.546E+00V
-e) 5.001E+00V
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 213V. If the combined external and internal resistance is 118&Omega and the capacitance is 61mF, how long will it take for the capacitor's voltage to reach 142.0V?
-a) 5.401E+00s
-b) 5.941E+00s
-c) 6.535E+00s
-d) 7.189E+00s
+e) 7.908E+00s
3) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
-a) 1.552E-01A
-b) 1.707E-01A
-c) 1.878E-01A
-d) 2.065E-01A
+e) 2.272E-01A
4) Three resistors, R1=0.61Ω, and R2=R2=1.35Ω, are connected in parallel to a 7.04V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 7.386E+01W
+b) 8.125E+01W
-c) 8.937E+01W
-d) 9.831E+01W
-e) 1.081E+02W
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Key: U1
1) Three resistors, R1=1.25Ω, and R2=R2=2.82Ω, are connected in parallel to a 8.6V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 4.890E+01W
-b) 5.379E+01W
+c) 5.917E+01W
-d) 6.508E+01W
-e) 7.159E+01W
2) Two sources of emf ε1=18.6V, and ε2=5.63V are oriented as shownin the circuit. The resistances are R1=3.9kΩ and R2=1.1kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.41mA and I4=0.614mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 4.342E+00V
-b) 4.776E+00V
-c) 5.254E+00V
+d) 5.779E+00V
-e) 6.357E+00V
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 439V. If the combined external and internal resistance is 221&Omega and the capacitance is 54mF, how long will it take for the capacitor's voltage to reach 350.0V?
+a) 1.905E+01s
-b) 2.095E+01s
-c) 2.304E+01s
-d) 2.535E+01s
-e) 2.788E+01s
4) The resistances in the figure shown are R1= 1.57Ω, R2= 1.25Ω, and R2= 3.38Ω. V1 and V3 are text 0.585V and 2.91V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.55V. What is the absolute value of the current through R1?
-a) 1.427E-01A
-b) 1.569E-01A
+c) 1.726E-01A
-d) 1.899E-01A
-e) 2.089E-01A
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Key: U2
1) Two sources of emf ε1=21.6V, and ε2=8.59V are oriented as shownin the circuit. The resistances are R1=4.97kΩ and R2=1.69kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.2mA and I4=0.749mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 6.064E+00V
-b) 6.670E+00V
+c) 7.337E+00V
-d) 8.071E+00V
-e) 8.878E+00V
2) The resistances in the figure shown are R1= 2.42Ω, R2= 1.09Ω, and R2= 3.89Ω. V1 and V3 are text 0.677V and 1.86V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.745V. What is the absolute value of the current through R1?
-a) 2.089E-01A
-b) 2.298E-01A
+c) 2.528E-01A
-d) 2.781E-01A
-e) 3.059E-01A
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 554V. If the combined external and internal resistance is 228&Omega and the capacitance is 93mF, how long will it take for the capacitor's voltage to reach 450.0V?
-a) 3.224E+01s
+b) 3.547E+01s
-c) 3.902E+01s
-d) 4.292E+01s
-e) 4.721E+01s
4) Three resistors, R1=0.624Ω, and R2=R2=1.37Ω, are connected in parallel to a 7.46V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 7.371E+01W
-b) 8.108E+01W
+c) 8.919E+01W
-d) 9.810E+01W
-e) 1.079E+02W
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Key: V0
1) A given battery has a 11V emf and an internal resistance of 0.0998Ω. If it is connected to a 0.417Ω resistor what is the power dissipated by that load?
-a) 1.419E+02W
-b) 1.561E+02W
-c) 1.717E+02W
+d) 1.889E+02W
-e) 2.078E+02W
2) In the circuit shown V=15.4V, R1=2.77Ω, R2=6.07Ω, and R3=14.5Ω. What is the power dissipated by R2?
-a) 1.190E+01W
-b) 1.309E+01W
+c) 1.440E+01W
-d) 1.584E+01W
-e) 1.742E+01W
3) The resistances in the figure shown are R1= 1.54Ω, R2= 0.927Ω, and R2= 2.46Ω. V1 and V3 are text 0.632V and 2.12V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.586V. What is the absolute value of the current through R1?
-a) 1.770E-01A
-b) 1.947E-01A
+c) 2.141E-01A
-d) 2.355E-01A
-e) 2.591E-01A
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 301V. If the combined external and internal resistance is 245&Omega and the capacitance is 63mF, how long will it take for the capacitor's voltage to reach 192.0V?
-a) 1.296E+01s
-b) 1.425E+01s
+c) 1.568E+01s
-d) 1.725E+01s
-e) 1.897E+01s
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Key: V1
1) A given battery has a 14V emf and an internal resistance of 0.132Ω. If it is connected to a 0.689Ω resistor what is the power dissipated by that load?
-a) 1.656E+02W
-b) 1.821E+02W
+c) 2.003E+02W
-d) 2.204E+02W
-e) 2.424E+02W
2) The resistances in the figure shown are R1= 2.42Ω, R2= 1.09Ω, and R2= 3.89Ω. V1 and V3 are text 0.677V and 1.86V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.745V. What is the absolute value of the current through R1?
-a) 2.089E-01A
-b) 2.298E-01A
+c) 2.528E-01A
-d) 2.781E-01A
-e) 3.059E-01A
3) In the circuit shown V=17.8V, R1=2.27Ω, R2=6.79Ω, and R3=15.1Ω. What is the power dissipated by R2?
-a) 1.446E+01W
-b) 1.591E+01W
-c) 1.750E+01W
-d) 1.925E+01W
+e) 2.117E+01W
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 351V. If the combined external and internal resistance is 148&Omega and the capacitance is 60mF, how long will it take for the capacitor's voltage to reach 227.0V?
+a) 9.240E+00s
-b) 1.016E+01s
-c) 1.118E+01s
-d) 1.230E+01s
-e) 1.353E+01s
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Key: V2
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 543V. If the combined external and internal resistance is 201&Omega and the capacitance is 82mF, how long will it take for the capacitor's voltage to reach 281.0V?
-a) 9.024E+00s
-b) 9.927E+00s
-c) 1.092E+01s
+d) 1.201E+01s
-e) 1.321E+01s
2) In the circuit shown V=10.8V, R1=1.26Ω, R2=5.65Ω, and R3=14.8Ω. What is the power dissipated by R2?
-a) 8.240E+00W
-b) 9.064E+00W
-c) 9.970E+00W
-d) 1.097E+01W
+e) 1.206E+01W
3) A given battery has a 13V emf and an internal resistance of 0.159Ω. If it is connected to a 0.617Ω resistor what is the power dissipated by that load?
-a) 1.301E+02W
-b) 1.431E+02W
-c) 1.574E+02W
+d) 1.732E+02W
-e) 1.905E+02W
4) The resistances in the figure shown are R1= 2.24Ω, R2= 1.03Ω, and R2= 2.39Ω. V1 and V3 are text 0.595V and 2.58V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.707V. What is the absolute value of the current through R1?
-a) 1.834E-01A
+b) 2.018E-01A
-c) 2.220E-01A
-d) 2.441E-01A
-e) 2.686E-01A
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Key: W0
1) Three resistors, R1=1.52Ω, and R2=R2=3.38Ω, are connected in parallel to a 5.82V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 1.842E+01W
-b) 2.026E+01W
+c) 2.228E+01W
-d) 2.451E+01W
-e) 2.696E+01W
2) A battery with a terminal voltage of 14.1V is connected to a circuit consisting of 2 20.3Ω resistors and one 13.1Ω resistor. What is the voltage drop across the 13.1Ω resistor?
-a) 2.843E+00V
-b) 3.127E+00V
+c) 3.440E+00V
-d) 3.784E+00V
-e) 4.162E+00V
3) Two sources of emf ε1=18.2V, and ε2=6.59V are oriented as shownin the circuit. The resistances are R1=5.47kΩ and R2=2.81kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.64mA and I4=0.341mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 1.299E+00mA
-b) 1.429E+00mA
-c) 1.572E+00mA
-d) 1.729E+00mA
-e) 1.902E+00mA
4) The resistances in the figure shown are R1= 2.74Ω, R2= 1.63Ω, and R2= 2.75Ω. V1 and V3 are text 0.485V and 2.01V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.555V. What is the absolute value of the current through R1?
-a) 1.114E-01A
+b) 1.225E-01A
-c) 1.348E-01A
-d) 1.483E-01A
-e) 1.631E-01A
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Key: W1
1) A battery with a terminal voltage of 10.7V is connected to a circuit consisting of 2 24.5Ω resistors and one 15.2Ω resistor. What is the voltage drop across the 15.2Ω resistor?
-a) 1.730E+00V
-b) 1.903E+00V
-c) 2.094E+00V
-d) 2.303E+00V
+e) 2.533E+00V
2) The resistances in the figure shown are R1= 1.57Ω, R2= 1.25Ω, and R2= 3.38Ω. V1 and V3 are text 0.585V and 2.91V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.55V. What is the absolute value of the current through R1?
-a) 1.427E-01A
-b) 1.569E-01A
+c) 1.726E-01A
-d) 1.899E-01A
-e) 2.089E-01A
3) Three resistors, R1=1.25Ω, and R2=R2=2.82Ω, are connected in parallel to a 8.6V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 4.890E+01W
-b) 5.379E+01W
+c) 5.917E+01W
-d) 6.508E+01W
-e) 7.159E+01W
4) Two sources of emf ε1=24.9V, and ε2=10.1V are oriented as shownin the circuit. The resistances are R1=2.32kΩ and R2=2.31kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.74mA and I4=0.444mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 1.725E+00mA
-b) 1.898E+00mA
-c) 2.087E+00mA
+d) 2.296E+00mA
-e) 2.526E+00mA
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Key: W2
1) Three resistors, R1=0.672Ω, and R2=R2=1.52Ω, are connected in parallel to a 5.34V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 2.898E+01W
-b) 3.188E+01W
-c) 3.507E+01W
-d) 3.858E+01W
+e) 4.243E+01W
2) The resistances in the figure shown are R1= 1.1Ω, R2= 1.55Ω, and R2= 2.11Ω. V1 and V3 are text 0.545V and 3.22V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.744V. What is the absolute value of the current through R1?
-a) 1.886E-01A
+b) 2.075E-01A
-c) 2.282E-01A
-d) 2.510E-01A
-e) 2.761E-01A
3) Two sources of emf ε1=29.3V, and ε2=11.0V are oriented as shownin the circuit. The resistances are R1=5.65kΩ and R2=2.68kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.81mA and I4=0.525mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 1.717E+00mA
-b) 1.888E+00mA
-c) 2.077E+00mA
+d) 2.285E+00mA
-e) 2.514E+00mA
4) A battery with a terminal voltage of 14.1V is connected to a circuit consisting of 2 20.3Ω resistors and one 13.1Ω resistor. What is the voltage drop across the 13.1Ω resistor?
-a) 2.843E+00V
-b) 3.127E+00V
+c) 3.440E+00V
-d) 3.784E+00V
-e) 4.162E+00V
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Key: X0
1) The resistances in the figure shown are R1= 2.34Ω, R2= 1.34Ω, and R2= 2.94Ω. V1 and V3 are text 0.609V and 1.68V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.541V. What is the absolute value of the current through R1?
-a) 1.464E-01A
+b) 1.610E-01A
-c) 1.772E-01A
-d) 1.949E-01A
-e) 2.144E-01A
2) Two sources of emf ε1=44.4V, and ε2=16.8V are oriented as shownin the circuit. The resistances are R1=4.58kΩ and R2=1.2kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=8.43mA and I4=1.46mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 6.970E+00mA
-b) 7.667E+00mA
-c) 8.434E+00mA
-d) 9.277E+00mA
-e) 1.020E+01mA
3) Three resistors, R1=0.686Ω, and R2=R2=1.58Ω, are connected in parallel to a 8.97V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
+a) 1.173E+02W
-b) 1.290E+02W
-c) 1.419E+02W
-d) 1.561E+02W
-e) 1.717E+02W
4) Two sources of emf ε1=38.9V, and ε2=14.4V are oriented as shownin the circuit. The resistances are R1=4.33kΩ and R2=1.65kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=5.59mA and I4=1.07mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 9.142E+00V
-b) 1.006E+01V
+c) 1.106E+01V
-d) 1.217E+01V
-e) 1.338E+01V
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Key: X1
1) Three resistors, R1=1.82Ω, and R2=R2=4.14Ω, are connected in parallel to a 5.65V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
+a) 1.754E+01W
-b) 1.929E+01W
-c) 2.122E+01W
-d) 2.335E+01W
-e) 2.568E+01W
2) Two sources of emf ε1=29.5V, and ε2=11.0V are oriented as shownin the circuit. The resistances are R1=2.45kΩ and R2=1.96kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.03mA and I4=0.783mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 2.247E+00mA
-b) 2.472E+00mA
-c) 2.719E+00mA
-d) 2.991E+00mA
-e) 3.290E+00mA
3) The resistances in the figure shown are R1= 2.73Ω, R2= 1.4Ω, and R2= 2.35Ω. V1 and V3 are text 0.549V and 1.27V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.584V. What is the absolute value of the current through R1?
-a) 1.213E-01A
-b) 1.334E-01A
-c) 1.468E-01A
+d) 1.614E-01A
-e) 1.776E-01A
4) Two sources of emf ε1=27.1V, and ε2=8.04V are oriented as shownin the circuit. The resistances are R1=2.94kΩ and R2=1.61kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=2.87mA and I4=0.57mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 8.482E+00V
+b) 9.330E+00V
-c) 1.026E+01V
-d) 1.129E+01V
-e) 1.242E+01V
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Key: X2
1) Two sources of emf ε1=49.6V, and ε2=19.3V are oriented as shownin the circuit. The resistances are R1=4.87kΩ and R2=2.81kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.37mA and I4=1.01mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 3.055E+00mA
+b) 3.360E+00mA
-c) 3.696E+00mA
-d) 4.066E+00mA
-e) 4.472E+00mA
2) Three resistors, R1=1.23Ω, and R2=R2=2.73Ω, are connected in parallel to a 5.41V voltage source. Calculate the power dissipated by the smaller resistor (R1.)
-a) 1.788E+01W
-b) 1.967E+01W
-c) 2.163E+01W
+d) 2.380E+01W
-e) 2.617E+01W
3) Two sources of emf ε1=16.8V, and ε2=7.15V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.51kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.95mA and I4=0.603mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 4.108E+00V
+b) 4.519E+00V
-c) 4.970E+00V
-d) 5.468E+00V
-e) 6.014E+00V
4) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
-a) 1.552E-01A
-b) 1.707E-01A
-c) 1.878E-01A
-d) 2.065E-01A
+e) 2.272E-01A
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Key: Y0
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 569V. If the combined external and internal resistance is 137&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 419.0V?
-a) 1.043E+01s
-b) 1.147E+01s
-c) 1.262E+01s
+d) 1.388E+01s
-e) 1.527E+01s
2) In the circuit shown V=13.5V, R1=2.66Ω, R2=7.29Ω, and R3=14.5Ω. What is the power dissipated by R2?
-a) 7.123E+00W
-b) 7.835E+00W
-c) 8.618E+00W
-d) 9.480E+00W
+e) 1.043E+01W
3) A battery with a terminal voltage of 8.01V is connected to a circuit consisting of 3 22.1Ω resistors and one 14.5Ω resistor. What is the voltage drop across the 14.5Ω resistor?
-a) 9.818E-01V
-b) 1.080E+00V
-c) 1.188E+00V
-d) 1.307E+00V
+e) 1.437E+00V
4) Two sources of emf ε1=18.2V, and ε2=6.59V are oriented as shownin the circuit. The resistances are R1=5.47kΩ and R2=2.81kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=1.64mA and I4=0.341mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
+a) 1.299E+00mA
-b) 1.429E+00mA
-c) 1.572E+00mA
-d) 1.729E+00mA
-e) 1.902E+00mA
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Key: Y1
1) Two sources of emf ε1=38.9V, and ε2=15.7V are oriented as shownin the circuit. The resistances are R1=2.24kΩ and R2=2.23kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.01mA and I4=0.86mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 1.955E+00mA
+b) 2.150E+00mA
-c) 2.365E+00mA
-d) 2.601E+00mA
-e) 2.862E+00mA
2) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 319V. If the combined external and internal resistance is 231&Omega and the capacitance is 64mF, how long will it take for the capacitor's voltage to reach 175.0V?
-a) 9.718E+00s
-b) 1.069E+01s
+c) 1.176E+01s
-d) 1.293E+01s
-e) 1.423E+01s
3) In the circuit shown V=15.8V, R1=1.86Ω, R2=7.66Ω, and R3=12.9Ω. What is the power dissipated by R2?
-a) 1.157E+01W
-b) 1.273E+01W
-c) 1.400E+01W
-d) 1.540E+01W
+e) 1.694E+01W
4) A battery with a terminal voltage of 8.14V is connected to a circuit consisting of 2 21.5Ω resistors and one 13.1Ω resistor. What is the voltage drop across the 13.1Ω resistor?
-a) 1.298E+00V
-b) 1.428E+00V
-c) 1.571E+00V
-d) 1.728E+00V
+e) 1.901E+00V
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Key: Y2
1) A battery with a terminal voltage of 14.1V is connected to a circuit consisting of 3 15.7Ω resistors and one 10.2Ω resistor. What is the voltage drop across the 10.2Ω resistor?
-a) 2.074E+00V
-b) 2.282E+00V
+c) 2.510E+00V
-d) 2.761E+00V
-e) 3.037E+00V
2) Two sources of emf ε1=39.0V, and ε2=15.9V are oriented as shownin the circuit. The resistances are R1=3.4kΩ and R2=2.12kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.58mA and I4=0.978mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of I5?
-a) 2.150E+00mA
-b) 2.365E+00mA
+c) 2.602E+00mA
-d) 2.862E+00mA
-e) 3.148E+00mA
3) In the circuit shown V=15.2V, R1=1.6Ω, R2=7.89Ω, and R3=15.3Ω. What is the power dissipated by R2?
+a) 1.713E+01W
-b) 1.885E+01W
-c) 2.073E+01W
-d) 2.280E+01W
-e) 2.508E+01W
4) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 439V. If the combined external and internal resistance is 221&Omega and the capacitance is 54mF, how long will it take for the capacitor's voltage to reach 350.0V?
+a) 1.905E+01s
-b) 2.095E+01s
-c) 2.304E+01s
-d) 2.535E+01s
-e) 2.788E+01s
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Key: Z0
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 319V. If the combined external and internal resistance is 231&Omega and the capacitance is 64mF, how long will it take for the capacitor's voltage to reach 175.0V?
-a) 9.718E+00s
-b) 1.069E+01s
+c) 1.176E+01s
-d) 1.293E+01s
-e) 1.423E+01s
2) The resistances in the figure shown are R1= 1.81Ω, R2= 1.18Ω, and R2= 2.62Ω. V1 and V3 are text 0.628V and 2.54V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.748V. What is the absolute value of the current through R1?
-a) 1.552E-01A
-b) 1.707E-01A
-c) 1.878E-01A
-d) 2.065E-01A
+e) 2.272E-01A
3) Two sources of emf ε1=35.5V, and ε2=12.3V are oriented as shownin the circuit. The resistances are R1=4.49kΩ and R2=1.53kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.63mA and I4=0.972mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 1.093E+01V
+b) 1.202E+01V
-c) 1.322E+01V
-d) 1.454E+01V
-e) 1.600E+01V
4) Two sources of emf ε1=36.7V, and ε2=12.1V are oriented as shownin the circuit. The resistances are R1=2.52kΩ and R2=1.22kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.14mA and I4=1.19mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 7.805E+00V
-b) 8.586E+00V
-c) 9.444E+00V
-d) 1.039E+01V
+e) 1.143E+01V
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Key: Z1
1) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 466V. If the combined external and internal resistance is 123&Omega and the capacitance is 76mF, how long will it take for the capacitor's voltage to reach 331.0V?
-a) 9.571E+00s
-b) 1.053E+01s
+c) 1.158E+01s
-d) 1.274E+01s
-e) 1.401E+01s
2) The resistances in the figure shown are R1= 1.57Ω, R2= 1.25Ω, and R2= 3.38Ω. V1 and V3 are text 0.585V and 2.91V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.55V. What is the absolute value of the current through R1?
-a) 1.427E-01A
-b) 1.569E-01A
+c) 1.726E-01A
-d) 1.899E-01A
-e) 2.089E-01A
3) Two sources of emf ε1=57.0V, and ε2=18.1V are oriented as shownin the circuit. The resistances are R1=4.95kΩ and R2=2.09kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.23mA and I4=1.04mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
-a) 1.921E+01V
+b) 2.114E+01V
-c) 2.325E+01V
-d) 2.557E+01V
-e) 2.813E+01V
4) Two sources of emf ε1=18.6V, and ε2=5.63V are oriented as shownin the circuit. The resistances are R1=3.9kΩ and R2=1.1kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=3.41mA and I4=0.614mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
-a) 4.342E+00V
-b) 4.776E+00V
-c) 5.254E+00V
+d) 5.779E+00V
-e) 6.357E+00V
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Key: Z2
1) Two sources of emf ε1=54.9V, and ε2=19.8V are oriented as shownin the circuit. The resistances are R1=3.93kΩ and R2=1.31kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=9.18mA and I4=1.83mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R2?
+a) 1.779E+01V
-b) 1.957E+01V
-c) 2.153E+01V
-d) 2.368E+01V
-e) 2.605E+01V
2) Two sources of emf ε1=21.0V, and ε2=8.72V are oriented as shownin the circuit. The resistances are R1=3.12kΩ and R2=1.15kΩ. Three other currents enter and exit or exit from portions of the circuit that lie outside the dotted rectangle and are not shown. I3=4.41mA and I4=0.816mA enter and leave near R2, while the current I5 exits near R1.What is the magnitude (absolute value) of voltage drop across R1?
+a) 5.267E+00V
-b) 5.794E+00V
-c) 6.373E+00V
-d) 7.011E+00V
-e) 7.712E+00V
3) In the circuit shown the voltage across the capaciator is zero at time t=0 when a switch is closed putting the capacitor into contact with a power supply of 327V. If the combined external and internal resistance is 204&Omega and the capacitance is 68mF, how long will it take for the capacitor's voltage to reach 218.0V?
-a) 1.385E+01s
+b) 1.524E+01s
-c) 1.676E+01s
-d) 1.844E+01s
-e) 2.028E+01s
4) The resistances in the figure shown are R1= 2.41Ω, R2= 1.74Ω, and R2= 3.35Ω. V1 and V3 are text 0.508V and 1.36V, respectively. But V2 is opposite to that shown in the figure, or, equivalently, V2=−0.595V. What is the absolute value of the current through R1?