EASY
JEE Advanced
IMPORTANT
Earn 100

A block of mass m is kept on the floor of a freely falling lift. During the free fall of the lift, the block is pulled horizontally with a force of  F=5 N, μs=0.1 .  The frictional force on the block will be

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Important Questions on Newton's Laws of Motion (With Friction)

EASY
JEE Advanced
IMPORTANT

If in previous problem, an additional force  F'=100 N is applied in vertical direction as shown in figure. the friction force acting on the block is

EASY
JEE Advanced
IMPORTANT

A horizontal force of 25 N is necessary to just hold a block stationary against a wall. The coefficient of friction between the block and the wall is  0.4. The weight of the block is

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EASY
JEE Advanced
IMPORTANT
In the figure shown, the block of mass  m is at rest relative to the wedge of mass M and the wedge is at rest with respect to ground. This implies that
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MEDIUM
JEE Advanced
IMPORTANT
The given figure shows a wooden block at rest in equilibrium on a rough horizontal plane being acted upon by forces F1 = 10 N, F2= 2 N as shown. If F1 is removed, the resultant force acting on the block will be
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MEDIUM
JEE Advanced
IMPORTANT
A lift is moving upwards with a uniform velocity v in which a block of mass m is lying. The frictional force offered by the block, when coefficient of friction is μ=0.5 will be
HARD
JEE Advanced
IMPORTANT
A box of mass 8 kg is placed on a rough inclined plane of inclination θ. It's downward motion can be prevented by applying an upward pull F and it can be made to slide upwards by applying a force 2F. The coefficient of friction between the box and the inclined plane is
HARD
JEE Advanced
IMPORTANT

A block of mass 15 kg is resting on a rough inclined plane as shown in the figure. The block is tied by a horizontal string which has a tension of 50 N. The coefficient of friction between the surfaces of contact is

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MEDIUM
JEE Advanced
IMPORTANT
A horizontal force just sufficient to move a body of mass 4 kg lying on a rough horizontal surface is applied to it. The coefficient of static and kinetic friction between the body and the surface are 0.8 and 0.6, respectively. If the force continues to act even after the block has started moving, the acceleration of the block in m s-2 is (g=10 m s-2)