t=0 Rs1 Rs2 LE R Vsi R2 Vs2 Figure P5.61 2 In the circuit shown in Figure P5.61 Vsi = 12 V Rsi = 50 2 Vsz = 12 V Rsz = 50 2 R = 2.2 k2 R2 = 600 2 L = 7.8 mH C = 68 µF Assume that DC steady-state conditions exist at t < 0. Determine the voltage across the capacitor and the current through the inductor as t approaches infinity. Remember to specify the polarity of the voltage and the direction of the current that you assume for your solution.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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t=0
Rs1
Rs2
LE R
Vsi
R2
Vs2
Figure P5.61
2 In the circuit shown in Figure P5.61
Vsi = 12 V
Rsi = 50 2
Vsz = 12 V
Rsz = 50 2
R = 2.2 k2
R2 = 600 2
L = 7.8 mH
C = 68 µF
Assume that DC steady-state conditions exist at t < 0.
Determine the voltage across the capacitor and the
Transcribed Image Text:t=0 Rs1 Rs2 LE R Vsi R2 Vs2 Figure P5.61 2 In the circuit shown in Figure P5.61 Vsi = 12 V Rsi = 50 2 Vsz = 12 V Rsz = 50 2 R = 2.2 k2 R2 = 600 2 L = 7.8 mH C = 68 µF Assume that DC steady-state conditions exist at t < 0. Determine the voltage across the capacitor and the
current through the inductor as t approaches infinity.
Remember to specify the polarity of the voltage and
the direction of the current that you assume for your
solution.
Transcribed Image Text:current through the inductor as t approaches infinity. Remember to specify the polarity of the voltage and the direction of the current that you assume for your solution.
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