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Question

Two block A and B are of the same mass. Block B is kept on the block A and block A is kept on the horizontal floor. Force F1 is the necessary to push only block A at a constant speed across the floor while force F2 is the necessary force to push the stack at the same constant speed across the floor. Force F2 is greater than F1 because:

A
the force of the floor on block A is greater in the second case.
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B
the coefficient of kinetic friction between block A and the floor is greater.
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C
the force of kinetic friction, but not the normal force, on block A is greater.
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D
the coefficient of static friction between block A and the floor is greater.
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E
the weight of block A is greater in the second case.
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Solution

The correct option is A the force of the floor on block A is greater in the second case.
Force of friction opposes the tendency of a body to move on a rough surface. It is given by, Fr=μN
where μ: coefficient of friction
N: Normal reaction

Since the body moves with constant velocity, net force on the body is zero.
Hence, when only A is moving, F1=Fr1=μN1=μmAg
when both A and B are moving, F2=Fr2=μN2=μ(mA+mB)g

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