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(e) Calculate the displacement of the block from equilibrium when the kinetic energy of the block is equal to the elastic potential energy of the
(e) Calculate the displacement of the block from equilibrium when the kinetic energy of the block is equal to the elastic potential energy of the spring. The block is brought to rest at equilibrium. The block is then pulled down half the original distance. (f) Will the new period for the motion of the block be greater than, less than, or equal to the original period for the motion of the block? Greater than Less than Equal to Justify your answer. M Vo M The first block is again brought to rest at equilibrium. An identical block is launched up into the first block. The new block is moving with a speed of vo = 5.0 % when it collides with and sticks to the original block. (g) Calculate the maximum compression of the spring after the collision of the two blocks
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