Question 2 x(t) Um (t) m C Π In the given mass-spring-damper system, the position a(t) is the excitation (or input) signal and the velocity um(t) of the mass is the output signal. Questions: (a) Determine the transfer function of this system. (b) Take m = 2 kg, c = 22 Ns/m and k = 20 N/m. Draw the Bode plot of this system on the next page. (c) If x(t)=sin(t), what will um(t) be equal to once the transient has disappeared?

Essentials of Business Analytics (MindTap Course List)
2nd Edition
ISBN:9781305627734
Author:Jeffrey D. Camm, James J. Cochran, Michael J. Fry, Jeffrey W. Ohlmann, David R. Anderson
Publisher:Jeffrey D. Camm, James J. Cochran, Michael J. Fry, Jeffrey W. Ohlmann, David R. Anderson
Chapter8: Time Series Analysis And_forecasting
Section: Chapter Questions
Problem 18P: Consider the following time series: Construct a time series plot. What type of pattern exists in...
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Question 2
x(t)
Um (t)
m
C
Π
In the given mass-spring-damper system, the position a(t) is the excitation
(or input) signal and the velocity um(t) of the mass is the output signal.
Questions:
(a) Determine the transfer function of this system.
(b) Take m = 2 kg, c = 22 Ns/m and k = 20 N/m. Draw the Bode plot of
this system on the next page.
(c) If x(t)=sin(t), what will um(t) be equal to once the transient has
disappeared?
Transcribed Image Text:Question 2 x(t) Um (t) m C Π In the given mass-spring-damper system, the position a(t) is the excitation (or input) signal and the velocity um(t) of the mass is the output signal. Questions: (a) Determine the transfer function of this system. (b) Take m = 2 kg, c = 22 Ns/m and k = 20 N/m. Draw the Bode plot of this system on the next page. (c) If x(t)=sin(t), what will um(t) be equal to once the transient has disappeared?
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