(suteh) Consider the Circuit below: RI=200r R2 35mH 1000 For parts a-c assume the switch S is in position "a" after it was off for a long time. a) Find the time constant t for the switch in position "a". b) Determine the maximum inductor current, Imax- c) When will the inductor current be 95% of Imax. eeler

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(surtch
)
Consider the Circuit below:
RI=200r
a
7.
R2
35mH
1000
For parts a-c assume the switch S is in position "a" after it was off for a long time.
a) Find the time constant t for the switch in position "a".
b) Determine the maximum inductor current, Imax.
c) When will the inductor current be 95% of Imax.
For parts d-f assume the switch S is in position “b" after it was in position "a" for a long time
d) Find the time constant t for the switch in position "b".
e) When will the inductor current be 5% of its initial value (initial value is when the switch is
switched from “a" to “b")
f) How much energy is dissipated by the resistance if the switch is in position "b" for a long time.
eele
Transcribed Image Text:(surtch ) Consider the Circuit below: RI=200r a 7. R2 35mH 1000 For parts a-c assume the switch S is in position "a" after it was off for a long time. a) Find the time constant t for the switch in position "a". b) Determine the maximum inductor current, Imax. c) When will the inductor current be 95% of Imax. For parts d-f assume the switch S is in position “b" after it was in position "a" for a long time d) Find the time constant t for the switch in position "b". e) When will the inductor current be 5% of its initial value (initial value is when the switch is switched from “a" to “b") f) How much energy is dissipated by the resistance if the switch is in position "b" for a long time. eele
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