3. Find the capacitor voltage for t<0 and t>0 for the circuit in figure below: 302 292 12 V 10 V 4. Obtain the inductor current for both t<0 and t>0 in the circuit below: 5A 2023 (b) di(0*)/dt and dv(0*)/dt. (c) i(00) and v(00). 1+ 12 V 4V 5. For the circuit shown in figure below, find: (a) i(0*) and v(0*). 24 V 402 1=0 602 Xt=0 6 Ω 2H 1=0 www A 3F 1=0 6. In the circuit of figure below, the switch instantaneously moves from position A to B at t = 0. Find v(t) for all t 2 0. 1052 492 0.4 F 2H 302 0.25 H 0.04 F
3. Find the capacitor voltage for t<0 and t>0 for the circuit in figure below: 302 292 12 V 10 V 4. Obtain the inductor current for both t<0 and t>0 in the circuit below: 5A 2023 (b) di(0*)/dt and dv(0*)/dt. (c) i(00) and v(00). 1+ 12 V 4V 5. For the circuit shown in figure below, find: (a) i(0*) and v(0*). 24 V 402 1=0 602 Xt=0 6 Ω 2H 1=0 www A 3F 1=0 6. In the circuit of figure below, the switch instantaneously moves from position A to B at t = 0. Find v(t) for all t 2 0. 1052 492 0.4 F 2H 302 0.25 H 0.04 F
Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter19: Capacitors
Section: Chapter Questions
Problem 2PA: You are an electrician working in an industrial plant. You discover that the problem with a certain...
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