You Answered In the circuit shown, the switch has been in position "a" for a long time. It then moves to position "b" at time t = 0. The component values are R₁ = 100, R₂ =300, C= 2.5μF, L = 100m.H, and the source current is I, = 496mA. Find the value of the inductor current, I (t), at time t =0.7ms. Enter your answer in units of milli-Amps (mA). t=0 Is ↑ Correct Answer 288.07 margin of error +/- 1% R2 R₁ C L

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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In the circuit shown, the switch has been in position "a" for a long time. It then
moves to position "b" at time t = 0. The component values are R₁ = 100,
R₂ =300, C= 2.5μF, L = 100m.H, and the source current is I, =
496mA. Find the value of the inductor current, I (t), at time t =0.7ms. Enter
your answer in units of milli-Amps (mA).
t=0
Is ↑
Correct Answer
288.07 margin of error +/- 1%
R2
R₁
C
L
Transcribed Image Text:You Answered In the circuit shown, the switch has been in position "a" for a long time. It then moves to position "b" at time t = 0. The component values are R₁ = 100, R₂ =300, C= 2.5μF, L = 100m.H, and the source current is I, = 496mA. Find the value of the inductor current, I (t), at time t =0.7ms. Enter your answer in units of milli-Amps (mA). t=0 Is ↑ Correct Answer 288.07 margin of error +/- 1% R2 R₁ C L
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