The system is now subjected to a oscillatory driving force Fo cos(wt), where Fo= 10 N and the driving (angular) frequency w = 0.8 rads¹. Find the amplitude of the resulting oscillation.

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Chapter15: Oscillations
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Problem 53P: If a car has a suspension system with a force constant of 5.00104 N/m , how much energy must the...
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The system is now subjected to a oscillatory driving force Fo cos(wt), where Fo= 10 N
and the driving (angular) frequency w = 0.8 rads¹. Find the amplitude of the resulting
oscillation.
Transcribed Image Text:The system is now subjected to a oscillatory driving force Fo cos(wt), where Fo= 10 N and the driving (angular) frequency w = 0.8 rads¹. Find the amplitude of the resulting oscillation.
A mass m = = 3 kg is attached to a spring with force constant k = 48 Nm-¹ and set into
motion. The effective damping constant of the system is b = 2 kgs-¹.
Transcribed Image Text:A mass m = = 3 kg is attached to a spring with force constant k = 48 Nm-¹ and set into motion. The effective damping constant of the system is b = 2 kgs-¹.
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