2. The circuit shown below is in DC steady-state before the switch flips at t = 0. ww 30 12 V 652 t=0 -M 60 6H VL(t) iL(t) (a) Determine v₁(0) and iL (0¯). (b) For t > 0, determine the zero-state response, il,zs(t), the zero-input response, il,zı(t) and the full response, i(t). (c) For t > 0, determine v₁.(t).

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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2. The circuit shown below is in DC steady-state before the switch flips at t = 0.
ww
30
12 V
6Ω
t = 0
-M
60
6H
VL (t)
ir(t)
(a) Determine VL (0) and iL(0-).
(b) For t > 0, determine the zero-state response, iL,zs(t), the zero-input response, iL,zı(t) and the full
response, i(t).
(c) For t> 0, determine VL(t).
(d) Sketch vL (t) and i(t) for t> -1 clearly labelling important points.
Transcribed Image Text:2. The circuit shown below is in DC steady-state before the switch flips at t = 0. ww 30 12 V 6Ω t = 0 -M 60 6H VL (t) ir(t) (a) Determine VL (0) and iL(0-). (b) For t > 0, determine the zero-state response, iL,zs(t), the zero-input response, iL,zı(t) and the full response, i(t). (c) For t> 0, determine VL(t). (d) Sketch vL (t) and i(t) for t> -1 clearly labelling important points.
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