In the circuit shown in figure, & = 10.0 V, R₁ = 5.00 S2, R₂ = 10.0 2, and L = 5.00 H. a) Switch S is closed at t = 0. Just after the switch is closed, what is the potential difference across R₁ and across the inductor L? b) At some time t after the switch S is closed, the current in the inductor is increasing at a rate of di₂/dt = 1.00 A/s. At this instant, what are the current in through R₁ and the current i2 through R₂? c) After the switch has been closed a long time, it is opened again. Just after it is opened, what is the potential difference across R₁ and across L? d) In part c, how much time elapses before the current drops to 1/2 of its initial value? a R₂ E +|1|4 R₁ CL d b

Introductory Circuit Analysis (13th Edition)
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Publisher:Robert L. Boylestad
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In the circuit shown in figure, & = 10.0 V, R₁ = 5.00 , R₂ = 10.0 2, and L = 5.00 H. a) Switch S is
closed at t = 0. Just after the switch is closed, what is the potential difference across R₁ and across the
inductor L? b) At some time t after the switch S is closed, the current in the inductor is increasing at a
rate of di2/dt = 1.00 A/s. At this instant, what are the current is through R₁ and the current i2 through
R₂? c) After the switch has been closed a long time, it is opened again. Just after it is opened, what is
the potential difference across R₁ and across L? d) In part c, how much time elapses before the current
drops to 1/2 of its initial value?
a
www
R₂
E
+|1|1
R₁
с
voor
L
d
b
Transcribed Image Text:In the circuit shown in figure, & = 10.0 V, R₁ = 5.00 , R₂ = 10.0 2, and L = 5.00 H. a) Switch S is closed at t = 0. Just after the switch is closed, what is the potential difference across R₁ and across the inductor L? b) At some time t after the switch S is closed, the current in the inductor is increasing at a rate of di2/dt = 1.00 A/s. At this instant, what are the current is through R₁ and the current i2 through R₂? c) After the switch has been closed a long time, it is opened again. Just after it is opened, what is the potential difference across R₁ and across L? d) In part c, how much time elapses before the current drops to 1/2 of its initial value? a www R₂ E +|1|1 R₁ с voor L d b
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