The solution to the differential equation of a damped oscillator, for the case in which the damping is small, is Age 2m cos(@'t + 8) X = The phase constant & is determined by the O initial velocity of the system O spring constant k and the mass m of the system O spring constant k and the damping coefficient b of the system O initial velocity and initial displacement of the system initial displacement of the system.

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The solution to the differential equation of a damped oscillator, for the
case in which the damping is small, is
x = Age 2m' cos(@'t + 8)
The phase constant & is determined by the
O initial velocity of the system
O spring constant k and the mass m of the system
O spring constant k and the damping coefficient b of the system
initial velocity and initial displacement of the system
O initial displacement of the system.
Transcribed Image Text:The solution to the differential equation of a damped oscillator, for the case in which the damping is small, is x = Age 2m' cos(@'t + 8) The phase constant & is determined by the O initial velocity of the system O spring constant k and the mass m of the system O spring constant k and the damping coefficient b of the system initial velocity and initial displacement of the system O initial displacement of the system.
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