Giving that the input to the shown system is fit) = sin(wt) and the output is the displacement y(t), determine Y(s). Hint: Start by getting the transfer function Y(s)/F(s). Y(t) m fo frictionless surface Select one: 2bw Y(s) = (ms² + 2bs + k)(s² + @?) a. = (s)A (mks2 | 2kbs | 1)(s² 1 w²) O b kbo Y(s) = (2ms² + 2bs k)(s² + w?) Y(s) = d. (2ms2 + bs + 2k)(s² + w²) Y(s) = (2ms2 + bs + 2k)(s² t w?)

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Giving that the input to the shown system is fit) = sin(wt) and the output is the displacement y(t), determine Y(s). Hint:
Start by getting the transfer function Y(s)/F(s).
Y(t)
m fo
frictionless
surface
b b
Select one:
2bo
Y(s)
O a.
(ms² + 2bs + k)(s² + w²)
Y(s)
Ob.
(mks2 | 2kbs 1)(s² 1 w²)
kbo
Y(s) =
(2ms? + 2bs 1 k)(s² + @?)
Y(5) =
(2ms2 + bs + 2k)(s² 1 w²)
Y(s) =
(2ms2 + bs + 2k)(s² 1 w²)
If all closed-oop poles of a system are in the Right-Half plane and only one closed-loop pole is on the imaginary axis, this
nally) staile
Transcribed Image Text:-This course EHide blocks Giving that the input to the shown system is fit) = sin(wt) and the output is the displacement y(t), determine Y(s). Hint: Start by getting the transfer function Y(s)/F(s). Y(t) m fo frictionless surface b b Select one: 2bo Y(s) O a. (ms² + 2bs + k)(s² + w²) Y(s) Ob. (mks2 | 2kbs 1)(s² 1 w²) kbo Y(s) = (2ms? + 2bs 1 k)(s² + @?) Y(5) = (2ms2 + bs + 2k)(s² 1 w²) Y(s) = (2ms2 + bs + 2k)(s² 1 w²) If all closed-oop poles of a system are in the Right-Half plane and only one closed-loop pole is on the imaginary axis, this nally) staile
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