A-kg mass is attached to a spring with stiffness 36 N/m. The damping constant for the system 4 is 6 N-sec/m. If the mass is moved m to the left of equilibrium and given an initial rightward 3 velocity of 2 m/sec, determine the equation of motion of the mass and give its damping factor, quasiperiod, and quasifrequency. ….. What is the equation of motion? y(t) = (Type an exact answer, using radicals as needed.) The damping factor is The quasiperiod is seconds. The quasifrequency is Hz.

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A-kg mass is attached to a spring with stiffness 36 N/m. The damping constant for the system
is 6 N-sec/m. If the mass is moved m to the left of equilibrium and given an initial rightward
3
velocity of 2 m/sec, determine the equation of motion of the mass and give its damping factor,
quasiperiod, and quasifrequency.
What is the equation of motion?
y(t) =
(Type an exact answer, using radicals as needed.)
The damping factor is
The quasiperiod is
The quasifrequency is
seconds.
Hz.
Transcribed Image Text:1 A-kg mass is attached to a spring with stiffness 36 N/m. The damping constant for the system is 6 N-sec/m. If the mass is moved m to the left of equilibrium and given an initial rightward 3 velocity of 2 m/sec, determine the equation of motion of the mass and give its damping factor, quasiperiod, and quasifrequency. What is the equation of motion? y(t) = (Type an exact answer, using radicals as needed.) The damping factor is The quasiperiod is The quasifrequency is seconds. Hz.
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