Consider the system presented in the figure I Nim Ikg IN sim Ikg Frictionless" The matrix form

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Consider the system
presented in the figure
I N/m
0000
I kg
IN-s/m
I kg
Frictionless
The matrix form
( +2s +1 -(s+2) Y x,())(F(s)
(s+2) s+s+1)x,(s)
a.
(s+s+1 s+2) Yx,()
-(s+2) s+2s +1x,)
b.
(
+2s +1
C.
(+ s+1) Y x,)
d.
-(s+1) +s+1x,()
The transfer function
defined the X2(s) as output
and F(s) input
X,(s)
F(s)
s+2
a.
s+4s' + 2s +12s +2
X,(s)
F(s) s+4s' +2s +12s +2
s+4
b.
X,(s)
F(s) s+2s'+ 2s² + 2s
X.(s)
s+1
C.
X,(s)
F(s) s+4s' +2s +12s
s+1
d.
The matrix
form
Choose...
The transfer
function with
Transcribed Image Text:4:38 l 4G O A moodle1.du.edu.om Consider the system presented in the figure I N/m 0000 I kg IN-s/m I kg Frictionless The matrix form ( +2s +1 -(s+2) Y x,())(F(s) (s+2) s+s+1)x,(s) a. (s+s+1 s+2) Yx,() -(s+2) s+2s +1x,) b. ( +2s +1 C. (+ s+1) Y x,) d. -(s+1) +s+1x,() The transfer function defined the X2(s) as output and F(s) input X,(s) F(s) s+2 a. s+4s' + 2s +12s +2 X,(s) F(s) s+4s' +2s +12s +2 s+4 b. X,(s) F(s) s+2s'+ 2s² + 2s X.(s) s+1 C. X,(s) F(s) s+4s' +2s +12s s+1 d. The matrix form Choose... The transfer function with
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