8. For the following circuit, find: a. Time constant (T) b. Initial value for the capacitor voltage. c. Final value for the capacitor voltage. d. The complete solution of capacitor voltage (Vc) for all t> 0 e. The complete solution of capacitor current (ic) for all t>0 f. The energy stored in the capacitor. 252 2A 6Ω www 1=0 5mF O vc(t) - Yic(t) 5925 www 6 V

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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8. For the following circuit, find:
a. Time constant (T)
b. Initial value for the capacitor voltage.
c. Final value for the capacitor voltage.
d. The complete solution of capacitor voltage (Vc) for all t> 0
e. The complete solution of capacitor current (ic) for all t > 0
f. The energy stored in the capacitor.
2 A
252
www
60
5mF Vc(t)
ic(t)
5125
6 V
Transcribed Image Text:8. For the following circuit, find: a. Time constant (T) b. Initial value for the capacitor voltage. c. Final value for the capacitor voltage. d. The complete solution of capacitor voltage (Vc) for all t> 0 e. The complete solution of capacitor current (ic) for all t > 0 f. The energy stored in the capacitor. 2 A 252 www 60 5mF Vc(t) ic(t) 5125 6 V
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