-) The switch in the circuit below has been in position a for a long time before it moves to position b tt = 0. Obtain a differential equation (in terms of capacitor voltage ve and circuit parameters, R, L, C) hat describes the behavior of the circuit for t > 0 a t= b 32-2 R 150 N₁ + SMF i √ 32 m H

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1. (-) The switch in the circuit below has been in position a for a long time before it moves to position b
at t = 0. Obtain a differential equation (in terms of capacitor voltage ve and circuit parameters, R, L, C)
that describes the behavior of the circuit for t > 0
2.
3
гол аt
uv
150V
Nc
+
32-2
m
R
L
2mH
32n
ESAF
re) External circuitry (not depicted) causes the initial inductor current to be i(0) = 2A. Determine
the values of all initial conditions needed to obtain an equation for the inductor current i(t), t≥ 0.
....) Obtain an equation for the inductor current i(t), t≥ 0. Estimate the duration of the transient
response. If the response exhibits oscillatory behavior, determine the oscillation frequency.
Transcribed Image Text:1. (-) The switch in the circuit below has been in position a for a long time before it moves to position b at t = 0. Obtain a differential equation (in terms of capacitor voltage ve and circuit parameters, R, L, C) that describes the behavior of the circuit for t > 0 2. 3 гол аt uv 150V Nc + 32-2 m R L 2mH 32n ESAF re) External circuitry (not depicted) causes the initial inductor current to be i(0) = 2A. Determine the values of all initial conditions needed to obtain an equation for the inductor current i(t), t≥ 0. ....) Obtain an equation for the inductor current i(t), t≥ 0. Estimate the duration of the transient response. If the response exhibits oscillatory behavior, determine the oscillation frequency.
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