A closed cylindrical tube containing some water (not filling the entire tube) lies in a horizontal plane. If the tube is rotated about a perpendicular bisector, the moment of inertia of water about the axis:

1. increases
2. decreases
3. remains constant
4. increases if the rotation is clockwise and decreases if it is anticlockwise

Subtopic:  Moment of Inertia |
 60%
From NCERT
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The moment of inertia of a uniform semicircular wire of mass \(\mathrm{M}\) and radius \(\mathrm{r}\) about a line perpendicular to the plane of the wire through the centre is:
1. \(\mathrm{Mr}^{2}\)

2. \(\frac{1}{2} \mathrm{Mr}^{2}\)

3. \(\frac{1}{4} \mathrm{Mr}^{2}\)

4. \(\frac{2}{5} \mathrm{Mr}^{2}\)

Subtopic:  Moment of Inertia |
 62%
From NCERT
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Let \(I_1\) and \(I_2\) be the moments of inertia of two bodies of identical geometrical shape, the first made of aluminium and the second of iron:

1. \(I_1 <I_2\)
2. \(I_1 = I_2\)
3. \(I_1>I_2\)
4. The relation between \(I_1\) and \(I_2\) depends on the actual shapes of the bodies
Subtopic:  Moment of Inertia |
 69%
From NCERT
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A body having its centre of mass at the origin has three of its particles at (a, 0, 0), (0, a, 0), (0, 0, a). The moments of inertia of the body about the X and Y axes are 0.20 kg-m2 each. The moment of inertia about the Z-axis:

1. is 0.20 kg-m2

2. is 0.40 kg-m2

3. is \(0.20\sqrt2\) kg-m2

4. cannot be deduced with this information

Subtopic:  Moment of Inertia |
From NCERT
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A cubical block of mass M and edge a slides down a rough inclined plane of inclination θ with a uniform velocity. The torque of the normal force on the block about its centre has a magnitude

1. zero

2. Mga

3. Mga sin θ

4. \(\frac{1}{2}\) Mga sin θ

Subtopic:  Torque |
From NCERT
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A thin circular ring of mass \(M\) and radius \(r\) is rotating about its axis with an angular speed \(\omega\). Two particles having mass \(m\) each are now attached at diametrically opposite points. The angular speed of the ring will become:
1. \(\frac{\omega M}{M+m}\)

2. \(\frac{\omega M}{M+2 m}\)

3. \(\frac{\omega(M-2 m)}{M+2 m}\)

4. \(\frac{\omega(M+2 m)}{M}\)

Subtopic:  Angular Momentum |
 83%
From NCERT
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A person sitting firmly over a rotating stool has his arms stretched. If he folds his arms, his angular momentum about the axis of rotation:

1. increases 2. decreases
3. remains unchanged 4. doubles
Subtopic:  Angular Momentum |
 54%
From NCERT
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The axis of rotation of a purely rotating body:

a. must pass through the centre of mass
b. may pass through the centre of mass
c. must pass through a particle of the body
d. may pass through a particle of the body

Choose the correct option:

1. (a) and (b)
2. (b) and (d)
3. (a) and (c)
4. (a), (b) and (d)
Subtopic:  Rotational Motion: Kinematics |
 68%
From NCERT
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Consider the following two equations
            (A) L = I ω    (B) \(\frac{dL}{dt}=\Gamma\)
In noninertial frames:

1. both A and B are true

2. A is true but B is false

3. B is true but A is false

4. both A and B are false

Subtopic:  Torque |
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A particle moves on a straight line with a uniform velocity. Its angular momentum:

a. is always zero.
b. is zero about a point on the straight line.
c. is not zero about a point away from the straight line.
d. about any given point remains constant.

Choose the correct option:

1. (a), (b) and (c)
2. (a), (b) and (d)
3. (b), (c) and (d)
4. none of these

Subtopic:  Angular Momentum |
 69%
From NCERT
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