For the network shown in the given figure, find i(t) and v(t) for t > 0. Assume L= 6.9 H. 592 www 2 A 12 92 i(0) - i(x) = 0.4 T = t=0 20 22 www 6Ω L The inductor current for t>0 is i(t)=i(∞)+(i(0) — i(∞))e¯t/t, where: i(0) = 1.6 A (Calculate to 2 decimal places) Your last answer was interpreted as follows: 1.6 V The inductor voltage for t>0 is u(t)= 20 V A (Calculate to 2 decimal places) Your last answer was interpreted as follows: 0.4 s (Calculate to 2 decimal places) -t/t V, where T = s (Calculate to 2 decimal places)
For the network shown in the given figure, find i(t) and v(t) for t > 0. Assume L= 6.9 H. 592 www 2 A 12 92 i(0) - i(x) = 0.4 T = t=0 20 22 www 6Ω L The inductor current for t>0 is i(t)=i(∞)+(i(0) — i(∞))e¯t/t, where: i(0) = 1.6 A (Calculate to 2 decimal places) Your last answer was interpreted as follows: 1.6 V The inductor voltage for t>0 is u(t)= 20 V A (Calculate to 2 decimal places) Your last answer was interpreted as follows: 0.4 s (Calculate to 2 decimal places) -t/t V, where T = s (Calculate to 2 decimal places)
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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Transcribed Image Text:For the network shown in the given figure, find i(t) and u(t) for t > 0. Assume L= 6.9 H.
592
2 A
12 Ω
www
T =
i(0) - i() = 0.4
t=0
20 22
6Ω
www
i↓
L
The inductor current for t>0 is i(t)=i(∞)+(i(0) — i(∞))e¯t, where:
i() = 1.6
A (Calculate to 2 decimal places)
Your last answer was interpreted as follows: 1.6
+
A (Calculate to 2 decimal places)
Your last answer was interpreted as follows: 0.4
The inductor voltage for t>0 is v(t)=
+ 20 V
s (Calculate to 2 decimal places)
e-t/t V, where T =
s (Calculate to 2 decimal places)
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