(i) If possible, solve for the mass of clay added at z = 0 which will halve the amplitude of oscillation. G) What is the smallest time to such that the system has equal kinetic and spring potential energy?

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(i) If possible, solve for the mass of clay added at z = 0 which will halve the amplitude of oscillation.
(j) What is the smallest time to such that the system has equal kinetic and spring potential energy?
Transcribed Image Text:(i) If possible, solve for the mass of clay added at z = 0 which will halve the amplitude of oscillation. (j) What is the smallest time to such that the system has equal kinetic and spring potential energy?
For this problem, refer to the figure below. A mass M is pulled from equilibrium at r = 0 to a position
x = D and is released from rest at t = 0. The spring constant k is known. There is no friction.
M
-D
-D/2 x= 0 D/2
D
Transcribed Image Text:For this problem, refer to the figure below. A mass M is pulled from equilibrium at r = 0 to a position x = D and is released from rest at t = 0. The spring constant k is known. There is no friction. M -D -D/2 x= 0 D/2 D
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