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 |
 69%
From NCERT
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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 |
 78%
From NCERT
NEET - 2013
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A body rolls down an inclined plane without slipping. The fraction of total energy associated with its rotation will be

1. K2+ R2
2. K2R2
3. K2K2+ R2
4. R2K2+ R2

Where k is radius of gyration of the body about an axis passing through centre of mass and R is the radius of the body. 

Subtopic:  Rolling Motion (OLD NCERT) |
 73%
From NCERT
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A solid cylinder rolls down an inclined plane that has friction sufficient to prevent sliding. The ratio of rotational energy to total kinetic energy is

1.  12

2.  13

3.  23

4.  34

 

Subtopic:  Rolling Motion (OLD NCERT) |
 71%
From NCERT
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An inclined plane makes an angle of 30° with the horizontal. A solid sphere rolling down this inclined plane from rest without slipping has a linear acceleration equal to

1.  g3

2.  5g7

3.  2g3

4.  5g14

 

Subtopic:  Rolling Motion (OLD NCERT) |
 81%
From NCERT
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A disk and a sphere of the same radius but different masses roll off on two inclined planes Of the same altitude and length Which one of the two objects gets to the bottom of the plane first

1.  Disk

2.   Sphere

3.  Both reach at the same time

4.  Depends on their masses

Subtopic:  Rolling Motion (OLD NCERT) |
 71%
From NCERT
NEET - 2016
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If the equation for the displacement of a particle moving on a circular path is given by θ=2t3+0.5, where θ is in radian and t is in second, then the angular velocity of the particle after 2s is 

(1) 8 rad/s

(2) 12 rad/s

(3) 24 rad /s

(4) 36 rad/s

Subtopic:  Rotational Motion: Kinematics |
 87%
From NCERT
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A man weighing \(80\) kg is standing in a trolley weighing \(320\) kg. The trolley is resting on frictionless horizontal rails. If the man starts walking on the trolley with a speed of \(1\) m/s, then after \(4\) s his displacement relative to the ground will be:
1. \(5\) m
2. \(4.8\) m
3. \(3.2\) m
4. \(3.0\) m

Subtopic:  Center of Mass |
 61%
From NCERT
PMT - 2002
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A particle moves along a circle of radius 20πm with constant tangential acceleration. If the velocity of the particle is 80 m/s at the end of the second revolution after motion has begin, the tangential acceleration is

(1) 640 π m/s2

(2) 160 π m/s2

(3) 40 π m/s2

(4) 40 m/s2

Subtopic:  Rotational Motion: Kinematics |
 53%
From NCERT
PMT - 2003
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A cord is wound round the circumference of wheel of radius r. The axis of the wheel is horizotal and moment of inertia about it is I. A weight mg is attached to the end of the cord and falls from rest. After falling through a distance h, the angular velocity of the wheel will be

(1) 2ghI+mr

(2) 2mghI+mr2

(3) 2mghI+2m12

(4) 2gh

Subtopic:  Rolling Motion (OLD NCERT) |
 75%
From NCERT
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