a /b FE t=0 80 mH 75 75 mA 50 N Ω 40 Ω www 200μF 1. For the circuit shown above, reverse the way in which the switch is moved. Assume that it has been in position b for a long time and that it moves to position a at time t = 0. (The type of switch shown is called "make before break") a) Determine the value of the current i(t) at time t = 0. b) Obtain a complete solution for the current through the inductor (assuming a downward pointing reference orientation) that is valid for t≥0.

Introductory Circuit Analysis (13th Edition)
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075
75 mA
a
50 Ω
b
t=0
80 mH
40 Ω
200 μF
1. For the circuit shown above, reverse the way in which the switch is moved. Assume that it
has been in position b for a long time and that it moves to position a at time t=0. (The type
of switch shown is called "make before break") a) Determine the value of the current i(t) at
time t= 0. b) Obtain a complete solution for the current through the inductor (assuming a
downward pointing reference orientation) that is valid for t≥0.
Transcribed Image Text:075 75 mA a 50 Ω b t=0 80 mH 40 Ω 200 μF 1. For the circuit shown above, reverse the way in which the switch is moved. Assume that it has been in position b for a long time and that it moves to position a at time t=0. (The type of switch shown is called "make before break") a) Determine the value of the current i(t) at time t= 0. b) Obtain a complete solution for the current through the inductor (assuming a downward pointing reference orientation) that is valid for t≥0.
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