6. Determine v(t)) for t> 0 if the circuit is in steady state at t= 0". Use the Step-by-Step method on Slide 59 of the lecture notes. (Ans.: v(t) = 5.7 – 15.3 e·12t V, t> 0) 5 ka 15 ka t-0 12 V 10 V 20 ka 10 µF 2

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Please solve the problem using the step-by-step method provide in the second picture. (Explanation Appreciated) Thanks!

 
6. Determine v(t)) for t> 0 if the circuit is in steady state at t= 0". Use the
Step-by-Step method on Slide 59 of the lecture notes.
(Ans.: v(t) = 5.7 – 15.3 e·12t V, t> 0)
5 ka
15 ka
t-0
12 V
10 V
20 ka
10 µF 2
Transcribed Image Text:6. Determine v(t)) for t> 0 if the circuit is in steady state at t= 0". Use the Step-by-Step method on Slide 59 of the lecture notes. (Ans.: v(t) = 5.7 – 15.3 e·12t V, t> 0) 5 ka 15 ka t-0 12 V 10 V 20 ka 10 µF 2
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