In the three figures, each wire has a mass M, radius R and a uniform mass distribution. If they form part of a circle of radius R, then about an axis perpendicular to the plane and passing through the centre (shown by crosses), their moment of inertia is in the order:

 

1.  IA > IB >  IC

2.  IA = IB = IC

3.  IA < IB < IC

4.  IA < IC < IB

Subtopic:  Moment of Inertia |
 70%
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A solid body rotates about a stationary axis according to the equation θ = 6t - 2t3. What is the average angular velocity over the time interval between t = 0 and the time when the body comes to rest? (θ : angular displacements, t : time)

1. 1 rad/s 2. 2 rad/s
3. 3 rad/s 4. 4 rad/s
Subtopic:  Rotational Motion: Kinematics |
 58%
From NCERT
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The value of M, as shown, for which the rod will be in equilibrium is:
      

1. 1 kg 2. 2 kg
3. 4 kg 4. 6 kg
Subtopic:  Torque |
 86%
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Particles A and B are separated by 10 m, as shown in the figure. If A is at rest and B started moving with a speed of 20 m/s then the angular velocity of B with respect to A at that instant is:

  

1. 1 rad s-1 2. 1.5 rad s-1
3. 2 rad s-1 4. 2.5 rad s-1
Subtopic:  Rotational Motion: Kinematics |
 63%
From NCERT
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A uniform cubical block of side L rests on a rough horizontal surface with coefficient of friction μ. A horizontal force F is applied on the block as shown. If there is sufficient friction between the block and the ground, then the torque due to normal reaction about its centre of mass is:

  

1.  Zero

2.  FL

3.  FL2

4.  3FL2

Subtopic:  Torque |
From NCERT
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A bomb is projected from the ground at a horizontal range of R. If the bomb explodes mid-air, then the range of its centre of mass is:

1.  R2

2.  R

3.  2R

4.  2R3

Subtopic:  Center of Mass |
 72%
From NCERT
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The law of conservation of angular momentum is valid when:

1. The net force is zero and the net torque is non-zero 2. The net force is non-zero and the net torque is non zero
3. Net force may or may not be zero and net torque is zero 4. Both force and torque must be zero
Subtopic:  Angular Momentum |
 72%
From NCERT
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A man hangs from a rope attached to a hot-air balloon. The man's mass is greater than the mass of the balloon and its contents. The system is stationary in the air. If the man now climbs up to the balloon using the rope, the centre of mass of the "man plus balloon" system will:

1. remain stationary 
2. move up
3. move down
4. first moves up and then return to its initial position

Subtopic:  Center of Mass |
 64%
From NCERT
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Two loads P1 and P2 (P1 >P2) are connected by a string passing over a fixed pulley. The center of gravity of loads are initially at the same height. Find the acceleration of the center of gravity of the system:
1. \(\left(\frac{(P_1-P_2)^{\frac{1}{2}}}{P_1+P_2}\right)\text{g}\)
2. \(\left(\frac{P_1-P_2}{P_1+P_2}\right)\text{g}\)
3. \(\left( \frac{P_1-P_2}{P_1+P_2}\right)^2 \text{g}\)
4. \(\left( \frac{P_1+P_2}{P_1-P_2}\right)\text{g}\)

Subtopic:  Center of Mass |
 58%
From NCERT
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A rod is falling down with constant velocity \(V_0\) as shown. It makes contact with hinge A and rotates around it. The angular velocity of the rod just after the moment when it comes in contact with hinge A is:

              

1. \(2 \mathrm{V}_0 / 3 \mathrm{L} \) 2. \(3 \mathrm{V}_0 / 2 \mathrm{L} \)
3. \(\mathrm{V}_0 / \mathrm{L} \) 4. \(2 \mathrm{V}_0 / 5 \mathrm{L}\)
Subtopic:  Angular Momentum |
 72%
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