b) A manufacturing process is represented by the following block diagram where G₁(s) = 4/s, G₂(s) = 3, G3(s) = s, Gä(s) = 5, H₁(s) = 4, and H₂(s) = 3s. R(s) + G3 H2 G2 } GI H1 G4 i and Rule 2 in the Lecture Notes to solve this question? Why / Why not? C(s) Do you need to apply Rule 1 ii) Simplify the block diagram to its most simplified form and find (C(s))/(R(s)). Show each step in your solution.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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b) A
manufacturing process is
represented
by the following block diagram
where G₁(s) = 4/s, G₂(s) = 3, G3(s) = s, G4(s) = 5, H₁(s)
= 4, and H₂(s) = 3s.
R(s) +
G3
S
G2
H2
+
GI
H1
G4
C(s)
114 Do you need to apply Rule 1
and Rule 2 in the Lecture Notes to solve this
question? Why / Why not?
ii)
Simplify the block diagram
to its most simplified form and find (C(s))/(R(s)).
Show each step in your solution.
Transcribed Image Text:b) A manufacturing process is represented by the following block diagram where G₁(s) = 4/s, G₂(s) = 3, G3(s) = s, G4(s) = 5, H₁(s) = 4, and H₂(s) = 3s. R(s) + G3 S G2 H2 + GI H1 G4 C(s) 114 Do you need to apply Rule 1 and Rule 2 in the Lecture Notes to solve this question? Why / Why not? ii) Simplify the block diagram to its most simplified form and find (C(s))/(R(s)). Show each step in your solution.
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