A circular disc A of radius r is made from an iron plate of thickness t and another circular disc B of radius 2r and thickness t4. The relation between moments of inertia IA and IB is

1.  IA > IB

2.  IA = IB

3.  IA < IB

4.  Depends on the actual values of t and r

Subtopic:  Moment of Inertia |
 67%
From NCERT
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A particle of mass 2 kg located at the position (i^+ j^) m has a velocity of 2(+i^ - j^ +k^) m/s. Its angular momentum about z-axis in kg-m2/s is :

1. +4

2. +8

3. -4

4. -8

Subtopic:  Angular Momentum |
From NCERT
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A cylinder of mass 'M' is suspended by two strings wrapped around it as shown. The acceleration 'a' and the tension T when the cylinder falls and the string unwinds itself are, respectively,
             

1.  a = g, T = Mg2

2.  a = g2, T = Mg2

3.  a = g3, T = Mg3

4.  a = 2g3, T = Mg6

Subtopic:  Rolling Motion (OLD NCERT) |
From NCERT
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An automobile engine develops 100 kW when rotating at a speed of 1800 rev/min. What torque does it deliver ?

1. 350 N-m

2. 440 N-m

3. 531 N-m

4. 628 N-m

Subtopic:  Torque |
 69%
From NCERT
PMT - 2000
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In an orbital motion, the angular momentum vector is 

1. Along the radius vector

2. Parallel to the linear momentum

3. In the orbital plane

4. Perpendicular to the orbital plane

Subtopic:  Angular Momentum |
 75%
From NCERT
AIIMS - 2004
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A particle of mass m moves with a constant velocity along 3 different paths, DE, OA and BC. Which of the following statements is not correct about its angular momentum about point O?

                           

1. It is zero when it is at A and moving along OA.
2. The same at all points along the line DE.
3. Of the same magnitude but oppositely directed at B and  D.
4. Increases as it moves along the line BC.

Subtopic:  Angular Momentum |
 54%
From NCERT
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A particle of mass 0.2 kg is moving in a circle of radius 1m with 
f=2/π rps, then its angular momentum is-
(A) 0.8 kgm2/s                        (B) 2 kgm2/s 
(C) 8 kgm2/s                            (D) 16 kgm2/s 

Subtopic:  Angular Momentum |
 84%
From NCERT
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In free space, a rifle of mass \(M\) shoots a bullet of mass \(m\) at a stationary block of mass \(M\) at a distance \(D\) away from it. When the bullet has moved through a distance \(d\) towards the block, the centre of mass of the bullet-block system is at a distance of:
1. \(\frac{D-d}{M+m}~\text{from the bullet}\)
2. \(\frac{md+ MD}{M+m}~\text{from the block}\)
3. \(\frac{2md+ MD}{M+m}~\text{from the block}\)
4. \(\frac{(D-d)M}{M+m}~\text{from the bullet}\)

Subtopic:  Center of Mass |
 58%
From NCERT
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Blocks A and B are resting on a smooth horizontal surface given equal speeds of 2 m/s in the opposite sense as shown in the figure.

                           

At t = 0, the position of blocks are shown, then the coordinates of centre of mass at t = 3s will be 

1.  (1, 0)

2.  (3, 0)

3.  (5, 0)

4.  (2.25, 0)

Subtopic:  Center of Mass |
 75%
From NCERT
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A wheel is at rest. Its angular velocity increases uniformly and becomes 80 rad/s after 5 s. The total angular displacement is 

1. 800 rad

2. 400 rad

3. 200 rad

4. 100 rad

Subtopic:  Rotational Motion: Kinematics |
 70%
From NCERT
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