7.1 In the circuit in Fig. P7.1, the voltage and current expressions are v=160e-10V, 120t: i = 6.4c-10 A, 1 ≥ 0. Find a) R. b) 7 (in milliseconds). c) L. d) the initial energy stored in the inductor. e) the time (in milliseconds) it takes to dissipate 60% of the initial stored energy. Figure P7.1 R
7.1 In the circuit in Fig. P7.1, the voltage and current expressions are v=160e-10V, 120t: i = 6.4c-10 A, 1 ≥ 0. Find a) R. b) 7 (in milliseconds). c) L. d) the initial energy stored in the inductor. e) the time (in milliseconds) it takes to dissipate 60% of the initial stored energy. Figure P7.1 R
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Question
![7.1 In the circuit in Fig. P7.1, the voltage and current
expressions are
v=160e-10V, 120t:
i = 6.4e-A,
1 ≥ 0.
Find
a) R.
b) 7 (in milliseconds).
c) L.
d) the initial energy stored in the inductor.
e) the time (in milliseconds) it takes to dissipate
60% of the initial stored energy.
Figure P7.1
R](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd7251b8a-c15e-4c6a-88d3-93344d11ae2b%2F2d429e9d-930c-4ace-b500-08c746ecd0fc%2Fav1xc1a_processed.jpeg&w=3840&q=75)
Transcribed Image Text:7.1 In the circuit in Fig. P7.1, the voltage and current
expressions are
v=160e-10V, 120t:
i = 6.4e-A,
1 ≥ 0.
Find
a) R.
b) 7 (in milliseconds).
c) L.
d) the initial energy stored in the inductor.
e) the time (in milliseconds) it takes to dissipate
60% of the initial stored energy.
Figure P7.1
R
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