Q2:- An accelerometer having an un-damping frequency of 80 Hz and a damping constant of c = 8 N.s/m is attached to a vibrating structure. When the structure vibrates with an acceleration amplitude of 7.5 m/s² and a frequency of 50 Hz, the instrument records the acceleration amplitude as 8 m/s². Determine the suspended mass m and the spring constant k of the accelerometer. x(1) = X cos wr y(1) k www m F(t)
Q2:- An accelerometer having an un-damping frequency of 80 Hz and a damping constant of c = 8 N.s/m is attached to a vibrating structure. When the structure vibrates with an acceleration amplitude of 7.5 m/s² and a frequency of 50 Hz, the instrument records the acceleration amplitude as 8 m/s². Determine the suspended mass m and the spring constant k of the accelerometer. x(1) = X cos wr y(1) k www m F(t)
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![Q2:- An accelerometer having an un-damping frequency of 80 Hz and a damping constant of c =
8 N.s/m is attached to a vibrating structure. When the structure vibrates with an acceleration amplitude
of 7.5 m/s² and a frequency of 50 Hz, the instrument records the acceleration amplitude as 8 m/s².
Determine the suspended mass m and the spring constant k of the accelerometer.
x(t) X cos or
y(1)
F(t)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb1ff7d38-22cc-4ea8-967b-a4a2e5a8d605%2F11eadc81-c41f-440e-96f2-1c5b74656a2a%2Fwp2ktmp_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q2:- An accelerometer having an un-damping frequency of 80 Hz and a damping constant of c =
8 N.s/m is attached to a vibrating structure. When the structure vibrates with an acceleration amplitude
of 7.5 m/s² and a frequency of 50 Hz, the instrument records the acceleration amplitude as 8 m/s².
Determine the suspended mass m and the spring constant k of the accelerometer.
x(t) X cos or
y(1)
F(t)
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