1) Find the inverse Laplace transform of the ff: 10(s+2) s(s+1)(s+10) (a) G(s) (b) G(s) = = 10s(s+ 1) (s+2) (s2+35+2) 2) Find the transfer function, G(s) = Vo(s)/v₁(s) for the network shown in Figure 1. + Vo(f)- 00000000 3 H vi(0) Ⓒ v(7) 2 H ΤΩ 252 Figure 1 3) Write but do not solve the mesh equations for the network of Figure 2. 252 0000 4 Ω F2 6 H 100004 Figure 2 8 Ω .

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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1) Find the inverse Laplace transform of the ff:
10(s+2)
5²(s+1)(s+10)
(a) G(s):
(b) G(s)
=
=
10s(s+1)
(s+2) (s2+35+2)
2) Find the transfer function, G(s)
vj(1) (+
oooo
2 H
ΤΩ
Figure 1
252
www
252
=
4 H
+ Vo(f)-
0000
3 H
3) Write but do not solve the mesh equations for the network of Figure 2.
F
M-0000
Vo(s)/V₁(s) for the network shown in Figure 1.
452
Figure 2
F
6 H
1oooo
852
Transcribed Image Text:1) Find the inverse Laplace transform of the ff: 10(s+2) 5²(s+1)(s+10) (a) G(s): (b) G(s) = = 10s(s+1) (s+2) (s2+35+2) 2) Find the transfer function, G(s) vj(1) (+ oooo 2 H ΤΩ Figure 1 252 www 252 = 4 H + Vo(f)- 0000 3 H 3) Write but do not solve the mesh equations for the network of Figure 2. F M-0000 Vo(s)/V₁(s) for the network shown in Figure 1. 452 Figure 2 F 6 H 1oooo 852
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