Consider the following second- order DC in Fig.. The switch has been at position 1 for a long time and moves to position 2 at the time t = 0. (a) Derive the circuit differential equation and (b) find the capacitor voltage v(t) for t > 0 ese 0.25 H www 2 802 ww 1=0- 0.512 1F 4V

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Consider the following second-
order DC in Fig.. The switch has
been at position 1 for a long time
and moves to position 2 at the
time t = 0. (a) Derive the circuit
differential equation and (b) find
the capacitor voltage v(t) for t
> 0
ese
0.25 H
www
2
802
ww
1=0-
0.512
1F
4V
Transcribed Image Text:Consider the following second- order DC in Fig.. The switch has been at position 1 for a long time and moves to position 2 at the time t = 0. (a) Derive the circuit differential equation and (b) find the capacitor voltage v(t) for t > 0 ese 0.25 H www 2 802 ww 1=0- 0.512 1F 4V
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