When you drive your car over a bump, the springs connecting the wheels to the car compress. Your shock absorbers then damp the subsequent oscillation, keeping your car from bouncing up and down on the springs. The figure shows real data for a car driven over a bump. a) What is the frequency of this damped oscillation? b) Estimate the time constant for this damped oscillation. Please explain the calculations.
When you drive your car over a bump, the springs connecting the wheels to the car compress. Your shock absorbers then damp the subsequent oscillation, keeping your car from bouncing up and down on the springs. The figure shows real data for a car driven over a bump. a) What is the frequency of this damped oscillation? b) Estimate the time constant for this damped oscillation. Please explain the calculations.
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When you drive your car over a bump, the springs connecting the wheels to the car compress. Your shock absorbers then damp the subsequent oscillation, keeping your car from bouncing up and down on the springs. The figure shows real data for a car driven over a bump.
a) What is the frequency of this damped oscillation?
b) Estimate the time constant for this damped oscillation.
Please explain the calculations.
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