25. A spring with spring constant of 840 N/m is attached on the left side to a wall and to the right side to an object of mass 3.6 kg which slides over a frictionless floor. The spring is pushed 25 cm to the left compressing the spring and let go at t = 0 sec. Write down the equation describing x as a function of time. Determine the position, velocity, and acceleration at t = 1.00 sec.
25. A spring with spring constant of 840 N/m is attached on the left side to a wall and to the right side to an object of mass 3.6 kg which slides over a frictionless floor. The spring is pushed 25 cm to the left compressing the spring and let go at t = 0 sec. Write down the equation describing x as a function of time. Determine the position, velocity, and acceleration at t = 1.00 sec.
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
Transcribed Image Text:25. A spring with spring constant of 840 N/m is attached on the left side to a
wall and to the right side to an object of mass 3.6 kg which slides over a
frictionless floor. The spring is pushed 25 cm to the left compressing the
spring and let go at t = 0 sec. Write down the equation describing x as a
function of time. Determine the position, velocity, and acceleration at t =
1.00 sec.
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