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V = 0 M X = 0 (d) In the figure above, the block of mass A has come to reet at a location to

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V = 0 M X = 0 (d) In the figure above, the block of mass A has come to reet at a location to the right of the spring's equilibrium position. The spring has a spring constant & and the coefficients of kinetic and static friction between the block and the surface are j and is,, respectively. i. On the dot below, which represents the block at rest and to the right of a = (), drew and label the forces (not components) that act on the block. Each force must be represented by a distinct arrow starting on, and pointing away from, the dot. ii. Derive an expression for the maximum displacement possible for the block that will allow the block to still remain at rest. Express your answer in terms of M. It . A,, and physical constants, as appropriate

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