A cart of mass m = 1.6 kg placed on a frictionless horizontal surface and connected to a spring with spring constant 6 N/m. The damping force strength is given by b = 255 g/s. The cart is pulled away 16.5 cm and released. k m 'b a. Calculate the time required for the amplitude of the resulting oscillations to fall to 1/7 of its initial value. 24.4 b. How many oscillations are made by the cart in this time? 7.51

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A cart of mass m = 1.6 kg placed on a frictionless horizontal surface and connected to a spring with spring constant
6 N/m. The damping force strength is given by b = 255 g/s. The cart is pulled away 16.5 cm and released.
k
m
'b
a. Calculate the time required for the amplitude of the resulting oscillations to fall to 1/7 of its initial value.
24.4
b. How many oscillations are made by the cart in this time?
7.51
Transcribed Image Text:A cart of mass m = 1.6 kg placed on a frictionless horizontal surface and connected to a spring with spring constant 6 N/m. The damping force strength is given by b = 255 g/s. The cart is pulled away 16.5 cm and released. k m 'b a. Calculate the time required for the amplitude of the resulting oscillations to fall to 1/7 of its initial value. 24.4 b. How many oscillations are made by the cart in this time? 7.51
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