8. Find the transfer function, G(s) = Vo(s)/V₁(s), each network shown in Figure P2.3 v¡(t) 192 IH (a) 19 Vo(t) vj(t) 192 ΤΩ (b) 1H 0000 IF (1)

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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answer question 8 only in handwriting
7. Write the differential equation for the system shown in Figure P2.1.
R(s) 55+254 +453 +5² +4
56 + 755 +35¹ +25³ +5² +5
FIGURE P2.1
vj(t)
8. Find the transfer function, G(s) = Vo(s)/V;(s), each network shown in Figure P2.3
192
1Η
(a)
eeee
C(s)
102 Vo(t)
vi(t)
192
1H
W 0000.
192
1F
[WW
(b)
+
vo(t)
Transcribed Image Text:7. Write the differential equation for the system shown in Figure P2.1. R(s) 55+254 +453 +5² +4 56 + 755 +35¹ +25³ +5² +5 FIGURE P2.1 vj(t) 8. Find the transfer function, G(s) = Vo(s)/V;(s), each network shown in Figure P2.3 192 1Η (a) eeee C(s) 102 Vo(t) vi(t) 192 1H W 0000. 192 1F [WW (b) + vo(t)
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