transfer function

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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For the mechanical system shown, the system can be described as:
f(t) = 0
H
O
B
d²y₁(t)
dt²
M +Bdy₁(t)
dt
My()+B
d²y₂(t) +Bdy₂(t) + k[y₂(t) — y₁ (t)] = o
dt²
dt
M
d²y₂(t) +Bdy₂(t)
dt²
dt
Md²y₁(t) +Bdy₂(t)
dt²
Y₂(t)
K
= k[y₂(t)-y₁(t)]
=
k[y₂(t)-y₁(t)]
+Bdy₂(t) = k[y₁(t)-Y₂(t)]
dt
Y₁(t)
- f(t)
Transcribed Image Text:For the mechanical system shown, the system can be described as: f(t) = 0 H O B d²y₁(t) dt² M +Bdy₁(t) dt My()+B d²y₂(t) +Bdy₂(t) + k[y₂(t) — y₁ (t)] = o dt² dt M d²y₂(t) +Bdy₂(t) dt² dt Md²y₁(t) +Bdy₂(t) dt² Y₂(t) K = k[y₂(t)-y₁(t)] = k[y₂(t)-y₁(t)] +Bdy₂(t) = k[y₁(t)-Y₂(t)] dt Y₁(t) - f(t)
For the system shown in the given figure transfer function X(s)/F(s) is
"QI
f(t) x(t)
K
Ms² +1
1
Ms² + K
1
Ks² + M
Ms² +1
K
Transcribed Image Text:For the system shown in the given figure transfer function X(s)/F(s) is "QI f(t) x(t) K Ms² +1 1 Ms² + K 1 Ks² + M Ms² +1 K
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