MI M2 In the system shown above, the block of mass M1 is on a rough horizontal table. The string that attaches it to the block of mass M2 passes over a frictionless pulley of negligible mass. The coefficient of kinetic friction ug between M1 and the table is less than the coefficient of static friction µ, a. Draw an FBD of M1 and M2. b. In terms of M1 and M2 determine the minimum value of u, that will prevent the blocks from moving. The blocks are set in motion. In terms of M1, M2 lk, and g, determine each of the following: c. The magnitude of the acceleration of M1 d. The tension in the string.

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In the system shown above, the block of mass M1 is on a rough horizontal table. The string that attaches it to the
block of mass M2 passes over a frictionless pulley of negligible mass. The coefficient of kinetic friction ug between
M1 and the table is less than the coefficient of static friction µ,
a. Draw an FBD of M1 and M2.
b. In terms of M1 and M2 determine the minimum value of µ, that will prevent the blocks from moving.
The blocks are set in motion. In terms of M1, M2 µlk, and g, determine each of the following:
c. The magnitude of the acceleration of M1
d. The tension in the string.
Transcribed Image Text:MI M2 In the system shown above, the block of mass M1 is on a rough horizontal table. The string that attaches it to the block of mass M2 passes over a frictionless pulley of negligible mass. The coefficient of kinetic friction ug between M1 and the table is less than the coefficient of static friction µ, a. Draw an FBD of M1 and M2. b. In terms of M1 and M2 determine the minimum value of µ, that will prevent the blocks from moving. The blocks are set in motion. In terms of M1, M2 µlk, and g, determine each of the following: c. The magnitude of the acceleration of M1 d. The tension in the string.
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