Y, 5 k=1000 N/ m 4 C = 50 Ns/ m 3 y(t) [cm] m = 8 kg k AYG! (1-7) t [san] 20 10 15 y(t) = %3D In the mass-spring-damper system in the figure, the platform to which the spring and damper elements are attached it moves y(t)= (4Y0*t/T)*(1-t/T) with a period of T=6 seconds so that YO=5 cm. Mass find the time solution x(t) of the motion.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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k=1000 N/ m
Y. 5
m
c = 50 Ns/ m
m = 8 kg
y(t) [cm]
t [san]
20
10
15
y(t) = %* (1–).
%3D
T
In the mass-spring-damper system in the figure, the
platform to which the spring and damper elements are
attached it moves y(t)= (4Y0*t/T)*(1-t/T) with a period of
T=6 seconds so that YO=5 cm. Mass find the time solution
x(t) of the motion.
000000
Transcribed Image Text:k=1000 N/ m Y. 5 m c = 50 Ns/ m m = 8 kg y(t) [cm] t [san] 20 10 15 y(t) = %* (1–). %3D T In the mass-spring-damper system in the figure, the platform to which the spring and damper elements are attached it moves y(t)= (4Y0*t/T)*(1-t/T) with a period of T=6 seconds so that YO=5 cm. Mass find the time solution x(t) of the motion. 000000
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