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JEE Main/Advance
IMPORTANT
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In the system shown. Find the initial acceleration of the wedge of mass 5M. The pulleys are ideal and the chords are inextensible. (There is no friction anywhere)

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Important Questions on Laws of Motion

MEDIUM
JEE Main/Advance
IMPORTANT

m1=20kg, m2=30kg. m2 is on smooth surface. Surface between m1 and m2 has μs=0.5 and μk=0.3. Find the acceleration of m1 and m2 for the followings figures a and b. When Take F=160 N.

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JEE Main/Advance
IMPORTANT
A car begins to move at time t=0 and then accelerates along a straight track with a speed given by Vt=2t2 m s-1 for 0t2. After the end of acceleration, the car continues to move at a constant speed. A small block initially at rest on the floor of the car begins to slip at t=1 s and stop slipping at t=3 s. Find the coefficient of static and kinetic friction between the block and the floor. g=10 m s-2
HARD
JEE Main/Advance
IMPORTANT

Three identical rigid cylinders A,B and C are arranged on smooth inclined surfaces as shown in figure. Find the least value of θ that prevent the arrangement from collapse.

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JEE Main/Advance
IMPORTANT

Block C descends vertically at 1 m s-1. Find the velocity of A relative to B.

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HARD
JEE Main/Advance
IMPORTANT

A bead of mass m is attached to one end of a spring of natural length 3R and spring constant k=3+1mgR. The other end of the spring is fixed at point A on a smooth fixed vertical ring of radius R as shown in the figure. What is the normal reaction at B just after the bead is released?

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HARD
JEE Main/Advance
IMPORTANT

The blocks are of mass 2 kg shown is in equilibrium. At t=0 right spring in figure(i) and right string in figure (ii) breaks. Find the ratio of instantaneous acceleration of blocks?

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MEDIUM
JEE Main/Advance
IMPORTANT

Fig. shows a bead of mass m moving with uniform speed v through a U-shaped smooth wire the wire has a semicircular bending between A and B. Calculate the average force exerted by the bead on the part AB of the wire.

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MEDIUM
JEE Main/Advance
IMPORTANT

A monkey of mass, 40 kg climbs on a rope that can stand a maximum tension of 600 N. Calculate the tension in rope in the following cases. In which case will the rope break:

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(i) The monkey climbs up with an acceleration of 6 m s-2

(ii) The monkey climbs down with an acceleration of 4 m s-2

(iii) The monkey climbs up with a uniform speed of, 5 m s-1. Neglect the mass of string.