In the figure below, after switch S is closed at time t= 0, the emf of the source is automatically adjusted to maintain a constant current i = 1.13 A through S. (a) Find the current through the inductor at time t= 16 TL. (b) What is the time when the current through the resistor equal to the current through the inductor (assume that TL = 3.0 s)? (a) Number i (b) Number i Units Units Constant current source reelle
In the figure below, after switch S is closed at time t= 0, the emf of the source is automatically adjusted to maintain a constant current i = 1.13 A through S. (a) Find the current through the inductor at time t= 16 TL. (b) What is the time when the current through the resistor equal to the current through the inductor (assume that TL = 3.0 s)? (a) Number i (b) Number i Units Units Constant current source reelle
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
Transcribed Image Text:In the figure below, after switch S is closed at time t = 0, the emf of the source is automatically adjusted to maintain a constant current i
= 1.13 A through S. (a) Find the current through the inductor at time t = 16 TL. (b) What is the time when the current through the
resistor equal to the current through the inductor (assume that TL = 3.0 s)?
(a) Number i
(b) Number i
Units
Units
Constant
current
source
reelle
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