Consider the circuit shown in the figure below. Take = 10.00 V, L = 12 mH, and R = 9 22. Shown in the figure below. R ww (a) What is the inductive time constant of the circuit? (b) Calculate the current in the circuit 100 us after the switch is closed. (c) What is the value of the final steady-state current? (d) How long does it take the current to reach 75.0% of its maximum value?

University Physics Volume 2
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ISBN:9781938168161
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Chapter14: Inductance
Section: Chapter Questions
Problem 14.8CYU: Check Your Understanding (a) If the current in the circuit of in Figure 14.12(b) increases to 909 of...
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Consider the circuit shown in the figure below. Take = 10.00 V, L = 12 mH, and R = 9 Q. Shown
in the figure below.
S
R
(a) What is the inductive time constant of the circuit?
(b) Calculate the current in the circuit 100 us after the switch is closed.
(c) What is the value of the final steady-state current?
(d) How long does it take the current to reach 75.0% of its maximum value?
Transcribed Image Text:Consider the circuit shown in the figure below. Take = 10.00 V, L = 12 mH, and R = 9 Q. Shown in the figure below. S R (a) What is the inductive time constant of the circuit? (b) Calculate the current in the circuit 100 us after the switch is closed. (c) What is the value of the final steady-state current? (d) How long does it take the current to reach 75.0% of its maximum value?
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