R1 20µF R2 Ve 0.5mH R3 12V 80.4mH 10µF 25V Assume the above circuit has been in this state for a very long time. Determine the current through the 0.4mH inductor i, given R=50 R2=20 R3=70 Note: Round your answer to the nearest single digit decimal place. Your answer should be in Amps. For example, if you compute 15.43 Amps then enter 15.4 as you answer. Find i 0000

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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R1
20µF
R2
Vc
0.5mH
R3
12V
0.4mH
10µF
25V
Assume the above circuit has been in this state for a very long time. Determine the current through the 0.4mH inductor i, given
R1=50
R2= 20
R3-D7Ω
Note: Round your answer to the nearest single digit decimal place. Your answer should be in Amps. For example, if you compute 15.43 Amps then enter 15.4 as you answer.
Find iL
O Type here to search
52°F
prt sc
elete
0000
Transcribed Image Text:R1 20µF R2 Vc 0.5mH R3 12V 0.4mH 10µF 25V Assume the above circuit has been in this state for a very long time. Determine the current through the 0.4mH inductor i, given R1=50 R2= 20 R3-D7Ω Note: Round your answer to the nearest single digit decimal place. Your answer should be in Amps. For example, if you compute 15.43 Amps then enter 15.4 as you answer. Find iL O Type here to search 52°F prt sc elete 0000
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