In the circuit of the figure below, R1 = 21 kQ, R2 = 53 kN, L = 82 mH, and the ideal battery has 8 = 64 V. Switch S has been open for a long time when it is closed at time t = 0. Just after the switch is closed, what are (a) the current ipat through the battery and (b) the rate dibay/dt? At t = 6.3 µs, what are (c)ipat and (d)dipag/dt? A long time later, what are (e)igat and (f)dipay/dt? EE L. (a) Number i Units (b) Number i Units (c) Number i Units >

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In the circuit of the figure below, R1 = 21 kQ, R2 = 53 k0, L = 82 mH, and the ideal battery has 8 = 64 V. Switch S has been open for a
long time when it is closed at time t = 0. Just after the switch is closed, what are (a) the current ipat through the battery and (b) the rate
dipat dt? Att = 6.3 µs, what are (c)ipat and (d)dipa/dt? A long time later, what are (e)ipat and (f)dipat/dt?
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(a) Number
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(c) Number
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(d) Number
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(e) Number
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(f) Number
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Transcribed Image Text:In the circuit of the figure below, R1 = 21 kQ, R2 = 53 k0, L = 82 mH, and the ideal battery has 8 = 64 V. Switch S has been open for a long time when it is closed at time t = 0. Just after the switch is closed, what are (a) the current ipat through the battery and (b) the rate dipat dt? Att = 6.3 µs, what are (c)ipat and (d)dipa/dt? A long time later, what are (e)ipat and (f)dipat/dt? lell L. R1 Ra (a) Number i Units (b) Number i Units (c) Number i Units (d) Number i Units (e) Number i Units (f) Number Units > > > > www
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Please answer parts d, e, and f.

In the circuit of the figure below, R1 = 21 kQ, R2 = 53 k0, L = 82 mH, and the ideal battery has 8 = 64 V. Switch S has been open for a
long time when it is closed at time t = 0. Just after the switch is closed, what are (a) the current ipat through the battery and (b) the rate
dipat dt? Att = 6.3 µs, what are (c)ipat and (d)dipa/dt? A long time later, what are (e)ipat and (f)dipat/dt?
lell
L.
R1
Ra
(a) Number
i
Units
(b) Number
i
Units
(c) Number
i
Units
(d) Number
i
Units
(e) Number
i
Units
(f) Number
Units
>
>
>
>
www
Transcribed Image Text:In the circuit of the figure below, R1 = 21 kQ, R2 = 53 k0, L = 82 mH, and the ideal battery has 8 = 64 V. Switch S has been open for a long time when it is closed at time t = 0. Just after the switch is closed, what are (a) the current ipat through the battery and (b) the rate dipat dt? Att = 6.3 µs, what are (c)ipat and (d)dipa/dt? A long time later, what are (e)ipat and (f)dipat/dt? lell L. R1 Ra (a) Number i Units (b) Number i Units (c) Number i Units (d) Number i Units (e) Number i Units (f) Number Units > > > > www
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