Consider the circuit seen in fig. 3. If the switch is closed at t=0, a) (12) Write down the differential equation for the capacitor voltage v(t) for C = 4 F, R = 1/2 N, Ig 20 A. b) (18) Solve the differential equation for v(t) if the capacitor initial voltage is v(0) = 4 V. c) (05) Calculate v(t) for t = 0, 2, 0o.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Consider the circuit seen in fig. 3. If the switch is closed at t=0,
a) (12) Write down the differential equation for the capacitor voltage v(t) for C = 4 F,R = 1/2 N, I,
20 A.
b) (18) Solve the differential equation for v(t) if the capacitor initial voltage is v(0) = 4 V.
c) (05) Calculate v(t) for t = 0,2, 0.
d) (05) Write down ic(t) expression.
t = 0
+
ic
'g
R
v(t)
iR
Fig. 3.
Transcribed Image Text:Consider the circuit seen in fig. 3. If the switch is closed at t=0, a) (12) Write down the differential equation for the capacitor voltage v(t) for C = 4 F,R = 1/2 N, I, 20 A. b) (18) Solve the differential equation for v(t) if the capacitor initial voltage is v(0) = 4 V. c) (05) Calculate v(t) for t = 0,2, 0. d) (05) Write down ic(t) expression. t = 0 + ic 'g R v(t) iR Fig. 3.
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