For the circuit in Fig. 6.33, i(t) = 4(2 – e10) mA. If i2(0) = -1 mA, find: (a) i(0); (b) v(t), v1(1), and v2(1); (c) i,(1) and iz(t). 2 H all + v1 - + 4 H 12 H Figure 6.33 ll
For the circuit in Fig. 6.33, i(t) = 4(2 – e10) mA. If i2(0) = -1 mA, find: (a) i(0); (b) v(t), v1(1), and v2(1); (c) i,(1) and iz(t). 2 H all + v1 - + 4 H 12 H Figure 6.33 ll
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Question
![For the circuit in Fig. 6.33, i(t) = 4(2 - e-10) mA. If iz2(0) = -1 mA,
find: (a) i(0); (b) v(t), v1(1), and v2(1); (c) i(1) and iz(t).
2H
v1 -
4 H
12 H
Figure 6.33
all](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa3b07939-48c0-4c40-8d0b-fd7feca0fdfd%2F8984138c-b4b7-4c41-a019-a97205b7938f%2Fkuklqlo_processed.jpeg&w=3840&q=75)
Transcribed Image Text:For the circuit in Fig. 6.33, i(t) = 4(2 - e-10) mA. If iz2(0) = -1 mA,
find: (a) i(0); (b) v(t), v1(1), and v2(1); (c) i(1) and iz(t).
2H
v1 -
4 H
12 H
Figure 6.33
all
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