The figure shows a uniform solid block of mass M and edge lengths a, b and c. Its M.O.I. about an axis through one edge and perpendicular (as shown) to the large face of the block is 

            

1. M3a2+b2

2. M4a2+b2

3. 7M12a2+b2

4. M12a2+b2

Subtopic:  Moment of Inertia |
 51%
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If the net external forces acting on the system of particles is zero, then which of the following may vary ?

1. Momentum of the system

2. Velocity of centre of mass

3. Position of centre of mass

4. None of the above

Subtopic:  Center of Mass |
From NCERT
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A constant torque of 1000 N-m turns a wheel of moment of inertial 200 kg-m2 about an axis through its centre. Its angular velocity after 3 s is

1. 1 rad/s

2. 5 rad/s

3. 10 rad/s

4. 15 rad/s

Subtopic:  Torque |
 82%
From NCERT
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Point masses m1 and m2 are placed at the opposite ends of a rigid of length L and negligible mass. The rod is to be set rotating about an axis perpendicular to it. The position of point P on this rod through which the axis should pass so that the work required to set the rod rotating with angular velocity ω0 is minimum is given by

   

1. x =m1m2L
2. x = m2m1L
3. x = m2Lm1+ m2
4. x = m1Lm1+ m2

Subtopic:  Rotational Motion: Dynamics |
 78%
From NCERT
AIPMT - 2015
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A 'T' shaped object with dimensions shown in the figure, is lying on a smooth floor. A force 'F' is applied at the point P parallel to AB, such that the object has only the translational motion without rotation. Find the location of P with respect to C

                  

 

1.  \(\frac{4}{3} l\)

2.  \(l\)

3.  \(\frac{2}{3} l\)

4.  \(\frac{3}{2} l\)

Subtopic:  Center of Mass |
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A wheel is rotating about an axis through its centre at \(720~\text{rpm}.\) It is acted upon by a constant torque opposing its motion for \(8\) seconds to bring it to rest finally. The value of torque in \((\text{N-m })\) is:
(given \(I=\frac{24}{\pi}~\text{kg.m}^2)\) 
1. \(48\)
2. \(72\)
3. \(96\)
4. \(120\)

Subtopic:  Rotational Motion: Dynamics |
 85%
From NCERT
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A solid sphere rolls down on an inclined plane of inclination \(\theta\). What is the acceleration as the sphere reaches bottom?
1. \(\frac{5}{7}g\sin\theta\)
2. \(\frac{3}{5}g\sin\theta\)
3. \(\frac{2}{7}g\sin\theta\)
4. \(\frac{2}{5}g\sin\theta\)
Subtopic:  Moment of Inertia | Rolling Motion (OLD NCERT) |
 79%
From NCERT
PMT - 2014
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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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