A man of 50 kg mass is standing in a gravity free space at a height of 10 m above the floor. He throws a stone of 0.5 kg mass downwards with a speed of 2 ms-1. When the stone reaches the floor, the distance of the man above the floor will be: 

1. 9.9 m 2. 10.1 m
3. 10 m 4. 20 m

Subtopic:  Center of Mass |
 74%
From NCERT
NEET - 2010
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The one-quarter sector is cut from a uniform circular disc of radius R. This sector has a mass M. It is made to rotate about a line perpendicular to its plane and passing through the centre of the original disc. Its moment of inertia about the axis of rotation will be: 

1. \(\frac{1}{2} M R^2 \) 2. \(\frac{1}{4} M R^2 \)
3. \(\frac{1}{8} M R^2 \) 4. \(\sqrt{2} M R^2\)
Subtopic:  Moment of Inertia |
 70%
From NCERT
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A billiard ball of mass m and radius r, when hit in a horizontal direction by a cue at a height h above its centre, acquires a linear velocity v0 . The angular velocity ω0 acquired by the ball will be:

1. 5v0r22h

2. 2v0r25h

3. 2v0h5r2

4. 5v0h2r2

Subtopic:  Angular Momentum |
 50%
From NCERT
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A ladder is leaned against a smooth wall and it is allowed to slip on a frictionless floor. Which figure represents the path followed by its center of mass?

1.    2.
3. 4.

Subtopic:  Center of Mass |
From NCERT
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A circular platform is mounted on a frictionless vertical axle. Its radius is R = 2m and its moment of inertia about the axle is 200 kg m2. Initially, it is at rest. A 50 kg man stands on the edge of the platform and begins to walk along the edge at a speed of 1 m s–1 relative to the ground. The time taken by the man to complete one revolution is:
1. π sec                 
2. 3π2sec
3. 2π sec               
4. π2sec

Subtopic:  Angular Momentum |
 60%
From NCERT
NEET - 2012
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When a mass is rotating in a plane about a fixed point, its angular momentum is directed along:

1. a line perpendicular to the plane of rotation
2. the line making an angle of  \(45^\circ\) to the plane of rotation
3. the radius
4. the tangent to the orbit

Subtopic:  Angular Momentum |
 77%
From NCERT
NEET - 2012
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Two discs are rotating about their axes, normal to the discs and passing through the centres of the discs. Disc D1 has a 2 kg mass, 0.2 m radius, and an initial angular velocity of 50 rad s-1. Disc D2 has 4 kg mass, 0.1 m radius, and initial angular velocity of 200 rad s-1. The two discs are brought in contact face to face, with their axes of rotation coincident. The final angular velocity (in rad.s-1) of the system will be:

1. 60

2. 100

3. 120

4. 40

Subtopic:  Angular Momentum |
 77%
From NCERT
NEET - 2013
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If a body is moving in a circular path with decreasing speed, then: (symbols have their usual meanings):

1.  r.ω =  0

2.  τ.v = 0

3.  a.v < 0

4.  All of these

Subtopic:  Rotational Motion: Kinematics |
 68%
From NCERT
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A solid sphere of mass \(M\) and radius \(R\) is in pure rolling with angular speed ω on a horizontal plane as shown. The magnitude of the angular momentum of the sphere about the origin \(O\) is:
             

1.  75MR2ω

2.  32MR2ω

3.  12MR2ω

4.  23MR2ω

Subtopic:  Angular Momentum |
 81%
From NCERT
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Two particles of mass, 2 kg and 4 kg, are projected from the top of a tower simultaneously, such that 2 kg of mass is projected with a speed 20 m/s at an angle 30° above horizontal and 4 kg is projected at 40 m/s horizontally. The acceleration of the centre of mass of the system of two particles will be:

1.  g2

2. g4

3.  g

4.  2g

Subtopic:  Center of Mass |
 76%
From NCERT
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