After having been in position 1 for a long time, the switch in the circuit below was moved to position 2 at t = 0 s. Determine: a) iL(t=0) and vɩ(t=0-), i.e., just before the switch changes positions (just before t = 0 s) b) iL(t=0) and vɩ(t=0), i.e., just after the switch changes positions c) iL(t=∞) and VL(t=∞), i.e., at steady state after the switch changes positions d) The expression for iL(t) for t≥0s E₁ 14 V R₁ 301 Ω 2 LL R₂ 110 Q R₁ R5 41 120 Ω 120 Ω 0.3 H R3 10 Ω
After having been in position 1 for a long time, the switch in the circuit below was moved to position 2 at t = 0 s. Determine: a) iL(t=0) and vɩ(t=0-), i.e., just before the switch changes positions (just before t = 0 s) b) iL(t=0) and vɩ(t=0), i.e., just after the switch changes positions c) iL(t=∞) and VL(t=∞), i.e., at steady state after the switch changes positions d) The expression for iL(t) for t≥0s E₁ 14 V R₁ 301 Ω 2 LL R₂ 110 Q R₁ R5 41 120 Ω 120 Ω 0.3 H R3 10 Ω
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Question
After having been in position 1 for a long time, the switch in the circuit below
was moved to position 2 at t = 0 s. Determine:
a) iL(t=0-) and vL(t=0-), i.e., just before the switch changes positions (just before t
= 0 s)
b) iL(t=0) and vL(t=0), i.e., just after the switch changes positions
c) iL(t=∞) and vL(t=∞), i.e., at steady state after the switch changes positions
d) The expression for iL(t) for t ≥ 0 s

Transcribed Image Text:After having been in position 1 for a long time, the switch in the circuit below
was moved to position 2 at t = 0 s. Determine:
a) iL(t=0) and vɩ(t=0-), i.e., just before the switch changes positions (just before t
= 0 s)
b) iL(t=0) and vɩ(t=0), i.e., just after the switch changes positions
c) iL(t=∞) and VL(t=∞), i.e., at steady state after the switch changes positions
d) The expression for iL(t) for t≥0s
E₁
14 V
R₁
301 Ω
2
LL
R₂
110 Q
R₁
R5
41
120 Ω
120 Ω
0.3 H
R3
10 Ω
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