The voltage v(t) shown in Fig. P7.85a is given by the graph shown in Fig. P7.85b. If iL(0) = 0A, how much energy is stored in the inductor at t = 3 s? Given L = 7 H and R = 3 Q. v(1) (+ v(1) 10 V i(t) 10 V Figure P7.85 LH 2 (a) (b) Notes on entering solution: • Enter your solution in Joules(1) 5 CRO [ (S)
The voltage v(t) shown in Fig. P7.85a is given by the graph shown in Fig. P7.85b. If iL(0) = 0A, how much energy is stored in the inductor at t = 3 s? Given L = 7 H and R = 3 Q. v(1) (+ v(1) 10 V i(t) 10 V Figure P7.85 LH 2 (a) (b) Notes on entering solution: • Enter your solution in Joules(1) 5 CRO [ (S)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Question

Transcribed Image Text:The voltage v(t) shown in Fig. P7.85a is given by the graph
shown in Fig. P7.85b. If iL(0) = 0A, how much energy is
stored in the inductor at t = 3 s? Given L = 7 H and R = 30.
i(t)
D(1)
LH
Figure P7.85
(a)
D(1)
10 V
tu
5
2
-10 V
i, (t)
(b)
Notes on entering solution:
• Enter your solution in Joules(J)
• Enter your solution to 2 decimal points
. Do not include units in your answer
.ex. 5 J is entered as 5.00
R92
[(S)
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