Consider the circuit in the figure below, taking E = 6.00 V, L = 7.20 mH, and R = 6.00 N. S R (a) What is the inductive time constant of the circuit? ms (b) Calculate the current in the circuit 250 µs after the switch is closed. A (c) What is the value of the final steady-state current? A (d) After what time interval does the current reach 80.0% of its maximum value? ms
Consider the circuit in the figure below, taking E = 6.00 V, L = 7.20 mH, and R = 6.00 N. S R (a) What is the inductive time constant of the circuit? ms (b) Calculate the current in the circuit 250 µs after the switch is closed. A (c) What is the value of the final steady-state current? A (d) After what time interval does the current reach 80.0% of its maximum value? ms
Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter23: Faraday’s Law And Inductance
Section: Chapter Questions
Problem 8OQ
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Transcribed Image Text:Consider the circuit in the figure below, taking E = 6.00 V, L = 7.20 mH, and R = 6.00 n.
S
R
(a) What is the inductive time constant of the circuit?
ms
(b) Calculate the current in the circuit 250 us after the switch is closed.
A
(c) What is the value of the final steady-state current?
A
(d) After what time interval does the current reach 80.0% of its maximum value?
ms
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