Problem 5. In the circuit shown to the right, the voltage and current expressions are v = 100e-80 V, t≥0¹; i { = 4e-80 A, t ≥ 0; Find a) R b) r (in milliseconds) c) L L + v www R
Problem 5. In the circuit shown to the right, the voltage and current expressions are v = 100e-80 V, t≥0¹; i { = 4e-80 A, t ≥ 0; Find a) R b) r (in milliseconds) c) L L + v www R
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Question
![Resistors (5% tolerance) [9]
Find
10
15
22
33
47
100 1.0 k
120
150
180
220
270
330
390
1.2 k
560
1.5 k
1.8 k
2.2 k
2.7 k
3.3 k
3.9 k
470 4.7 k
5.6 k
68 680 6.8 k
10 k
12 k
15 k
22 k
27 k
18 k 180 k
33 k
39 k
47 k
56 k
100 k
68 k
120 k
150 k
220 k
270 k
330 k
390 k
470 k
560 k
1.0 M
1.5 M
2.2 M
3.3 M
4.7 M
680 k 6.8 M
Inductors
Value
10 pH
1 mH
Current Rating
100 μH 0.91 A
10 mH
3 A
0.15 A
0.04 A
Problem 5. In the circuit shown to the right, the voltage and current expressions are
v = 100e-80t V, t≥ 0¹;
i
i=4e-80t A, t≥ 0;
+
V
ww
R
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 80% of the initial stored energy.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F514923f2-e704-4cb3-8e16-d4c01e5e97ad%2Fa4dd494d-9b49-4be2-81e7-3bd521970fc0%2F733ctda_processed.png&w=3840&q=75)
Transcribed Image Text:Resistors (5% tolerance) [9]
Find
10
15
22
33
47
100 1.0 k
120
150
180
220
270
330
390
1.2 k
560
1.5 k
1.8 k
2.2 k
2.7 k
3.3 k
3.9 k
470 4.7 k
5.6 k
68 680 6.8 k
10 k
12 k
15 k
22 k
27 k
18 k 180 k
33 k
39 k
47 k
56 k
100 k
68 k
120 k
150 k
220 k
270 k
330 k
390 k
470 k
560 k
1.0 M
1.5 M
2.2 M
3.3 M
4.7 M
680 k 6.8 M
Inductors
Value
10 pH
1 mH
Current Rating
100 μH 0.91 A
10 mH
3 A
0.15 A
0.04 A
Problem 5. In the circuit shown to the right, the voltage and current expressions are
v = 100e-80t V, t≥ 0¹;
i
i=4e-80t A, t≥ 0;
+
V
ww
R
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 80% of the initial stored energy.
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