1. Expression for the inductor current for 0

Introductory Circuit Analysis (13th Edition)
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In the circuit below, switch S1 is in position A and switch S2 is open. Both switches are in
these states for a very long time. At t=0, switch S1 moves from position A to B while switch S2
remains open. 10ms after switch S1 moves to position B, switch S2 is closed and remains
closed for 20ms only.
S1
S2
close at t=10 ms
A
t=0
50
open at t=30 ms
20 A
15 Q
100 mH
20 2
ll
Transcribed Image Text:In the circuit below, switch S1 is in position A and switch S2 is open. Both switches are in these states for a very long time. At t=0, switch S1 moves from position A to B while switch S2 remains open. 10ms after switch S1 moves to position B, switch S2 is closed and remains closed for 20ms only. S1 S2 close at t=10 ms A t=0 50 open at t=30 ms 20 A 15 Q 100 mH 20 2 ll
Determine the following:
1. Expression for the inductor current for 0 < t < 10ms
2. Expression for the inductor current for 10ms < t < 30ms
3. Expression for the inductor current for 30ms < t < 0
4. Determine the time (in ms) after switch S1 moves to position B is the current in the inductor
equivalent to 30% of the initial value (at t=0).
Transcribed Image Text:Determine the following: 1. Expression for the inductor current for 0 < t < 10ms 2. Expression for the inductor current for 10ms < t < 30ms 3. Expression for the inductor current for 30ms < t < 0 4. Determine the time (in ms) after switch S1 moves to position B is the current in the inductor equivalent to 30% of the initial value (at t=0).
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