Your car rides on springs, so it will have a natural frequency of oscillation. The figure shows data for the amplitude of motion of a car driven at different frequencies. The car is driven at 23 mph over a washboard road with bumps spaced 13 feet apart; the resulting ride is quite bouncy. Determine the frequency of the oscillation, caused by the bumps. 1 mile is 5280 feet. (Express your answer with the appropriate units).
Your car rides on springs, so it will have a natural frequency of oscillation. The figure shows data for the amplitude of motion of a car driven at different frequencies. The car is driven at 23 mph over a washboard road with bumps spaced 13 feet apart; the resulting ride is quite bouncy. Determine the frequency of the oscillation, caused by the bumps. 1 mile is 5280 feet. (Express your answer with the appropriate units).
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Your car rides on springs, so it will have a natural frequency of oscillation. The figure shows data for the amplitude of motion of a car driven at different frequencies. The car is driven at 23 mph over a washboard road with bumps spaced 13 feet apart; the resulting ride is quite bouncy. Determine the frequency of the oscillation, caused by the bumps. 1 mile is 5280 feet. (Express your answer with the appropriate units).
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