2. In the following diagram, mass 1 is 31.5kg and mass 2 is 25.5kg, and is full of 0.500kg blocks of metal. The angle alpha is 33°. Mass 1 and mass 2 are connected by an inflexible cable which passes over a frictionless pulley. The coefficient of kinetic friction between m1 and the inclined surface is 0.11. The coefficient of static friction between m1 and the inclined surface is 0.21. The masses have just been released from rest and have begun to move. a) Determine the acceleration of the masses b) How many blocks of metal would you need to remove from the bucket to prevent the masses from moving when they are released? m2 a.
2. In the following diagram, mass 1 is 31.5kg and mass 2 is 25.5kg, and is full of 0.500kg blocks of metal. The angle alpha is 33°. Mass 1 and mass 2 are connected by an inflexible cable which passes over a frictionless pulley. The coefficient of kinetic friction between m1 and the inclined surface is 0.11. The coefficient of static friction between m1 and the inclined surface is 0.21. The masses have just been released from rest and have begun to move. a) Determine the acceleration of the masses b) How many blocks of metal would you need to remove from the bucket to prevent the masses from moving when they are released? m2 a.
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