1. Find the ratio of + R(S) C(s) for the block diagram shown below using block diagram reduction technique. R(s) G1 H3 + H1 G2 + G3 H2 G4 C(s)
1. Find the ratio of + R(S) C(s) for the block diagram shown below using block diagram reduction technique. R(s) G1 H3 + H1 G2 + G3 H2 G4 C(s)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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
Transcribed Image Text:3. Using mason's gain formula find the overall transfer function for the signal flow graph shown
below.
X1
912
X23
a13.
a23
a32
a24
X3
a33
a34
X1

Transcribed Image Text:1. Find the ratio of
+
R(S)
R(S)
C(s)
for the block diagram shown below using block diagram reduction technique.
R(S)
+
G1
H3
+
G1
H1
GS
H1
2. For the block diagram shown in the figure determine the overall transfer function.
H2
G2
+
H3
G3
G2
H2
G3
H2
64
G4
+
C(s)
C(s)
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