My Cart
Your Cart 0

    Your cart is empty.

  • Total (Amount) ₹0.00
Previous year question hub

Rotational Motion - Mechanics - Physics Previous Year Questions

Practice Rotational Motion - Mechanics - Physics previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

38Papers
26Years
93Questions
1Topics

Rotational Motion question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Rotational Motion. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Not classified 86 92.5%
Easy 4 4.3%
Medium 2 2.2%
Hard 1 1.1%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

Multiple Choices 93 100%

Subject weightage

Top subjects by unique question coverage.

Physics
93 Qs

Most asked topics

Top topics across the included previous year papers.

Mechanics
93 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Rotational Motion
93 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

NEET 2026
2 Qs
NEET 2025
3 Qs
NEET 2024
3 Qs
NEET 2024 RE EXAMINATION
1 Qs
NEET 2023
2 Qs
NEET 2023 MANIPUR
1 Qs
NEET 2022 Phase 1
2 Qs
NEET 2022 PHASE 2
1 Qs
NEET 2021
2 Qs
NEET 2020 PHASE 1
1 Qs
NEET 2019
3 Qs
AIIMS 2019
1 Qs
NEET 2018
4 Qs
AIIMS 2018
2 Qs
AIIMS 2017
2 Qs
NEET 2017
2 Qs
NEET 2016 PHASE 1
3 Qs
NEET 2016 PHASE 2
3 Qs
AIPMT 2015
3 Qs
AIPMT 2015 Cancelled Paper
3 Qs
AIPMT 2014
2 Qs
NEET 2013
2 Qs
NEET 2013 KARNATAKA
2 Qs
AIPMT 2012 MAINS
3 Qs
AIPMT 2012 PRELIMS
3 Qs
AIPMT 2011 PRELIMS
2 Qs
AIPMT 2011 MAINS
1 Qs
AIPMT 2010 MAINS
3 Qs
AIPMT 2010 PRELIMS
2 Qs
AIPMT 2009
3 Qs
AIPMT 2008
2 Qs
AIPMT 2007
3 Qs
AIPMT 2006
3 Qs
AIPMT 2005
3 Qs
AIPMT 2004
4 Qs
AIPMT 2003
4 Qs
AIPMT 2002
4 Qs
AIPMT 2000
3 Qs

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
NEET 202620262View paper
NEET 202520253View paper
NEET 202420243View paper
NEET 2024 RE EXAMINATION20241View paper
NEET 202320232View paper
NEET 2023 MANIPUR20231View paper
NEET 2022 Phase 120222View paper
NEET 2022 PHASE 220221View paper
NEET 202120212View paper
NEET 2020 PHASE 120201View paper
AIIMS 201920191View paper
NEET 201920193View paper
AIIMS 201820182View paper
NEET 201820184View paper
AIIMS 201720172View paper
NEET 201720172View paper
NEET 2016 PHASE 120163View paper
NEET 2016 PHASE 220163View paper
AIPMT 201520153View paper
AIPMT 2015 Cancelled Paper20153View paper
AIPMT 201420142View paper
NEET 201320132View paper
NEET 2013 KARNATAKA20132View paper
AIPMT 2012 MAINS20123View paper
AIPMT 2012 PRELIMS20123View paper
AIPMT 2011 MAINS20111View paper
AIPMT 2011 PRELIMS20112View paper
AIPMT 2010 MAINS20103View paper
AIPMT 2010 PRELIMS20102View paper
AIPMT 200920093View paper
AIPMT 200820082View paper
AIPMT 200720073View paper
AIPMT 200620063View paper
AIPMT 200520053View paper
AIPMT 200420044View paper
AIPMT 200320034View paper
AIPMT 200220024View paper
AIPMT 200020003View paper

All Rotational Motion previous year questions

Practice every matching question in batches of 20, with every available option.

1
2000 · Physics · Mechanics · Rotational Motion
AIPMT 2000
For a hollow cylinder and a solid cylinder rolling without slipping on an inclined plane, then which of these reaches earlier
A
solid cylinder
B
hollow cylinder
C
both simultaneously
D
can't say anything.
Open complete paper
2
2000 · Physics · Mechanics · Rotational Motion
AIPMT 2000
For the adjoining diagram, the correct relation between I1, I2, and I3 is, (I-moment of inertia)

AIPMT 2000 Physics - Rotational Motion Question 30 English
A
I1 > I2
B
I2 > I1
C
I3 > I1
D
I3 > I2
Open complete paper
3
2000 · Physics · Mechanics · Rotational Motion
AIPMT 2000
As shown in the figure at point O a mass is performing vertical circular motion. The average velocity of the particle is increased, then at which point will the string break

AIPMT 2000 Physics - Rotational Motion Question 28 English
A
A
B
B
C
C
D
D
Open complete paper
4
2002 · Physics · Mechanics · Rotational Motion
AIPMT 2002
A solid sphere of radius R is placed on smooth horizontal surface. A horizontal force F is applied at height h from the lowest point. For the maximum acceleration of centre of mass, which is correct ?
A
h = R
B
h = 2R
C
h = 0
D
no relation between h and R.
Open complete paper
5
2002 · Physics · Mechanics · Rotational Motion
AIPMT 2002
A circular disc is to be made by using iron and aluminium so that it acquired maximum moment of inertia about geometrical axis. It is possible with
A
aluminium at interior and iron surround to it
B
iron at interior and aluminium surround to it
C
using iron and aluminium layers in alternate order
D
sheet of iron is used at both external surface and aluminium sheet as internal layers.
Open complete paper
6
2002 · Physics · Mechanics · Rotational Motion
AIPMT 2002
A disc is rotating with angular speed \(\omega\). If a child sits on it, what is conserved
A
linear momentum
B
angular momentum
C
kinetic energy
D
potential energy.
Open complete paper
7
2002 · Physics · Mechanics · Rotational Motion
AIPMT 2002
A point P consider at contact point of a wheel on ground which rolls on ground without slipping then value of displacement of point P when wheel completes half of rotation (if radius of wheel is 1 m)
A
2 m
B
\(\sqrt {{\pi ^2} + 4} m\)
C
\(\pi \,m\)
D
\(\sqrt {{\pi ^2} + 2} \,m\)
Open complete paper
8
2003 · Physics · Mechanics · Rotational Motion
AIPMT 2003
A solid cylinder of mass M and radius R rolls without slipping down an inclined plane of length L and height h. What is the speed of its centre of mass when the cylinder reaches its bottom ?
A
\(\sqrt {2gh}\)
B
\(\sqrt {{3 \over 4}gh}\)
C
\(\sqrt {{4 \over 3}gh}\)
D
\(\sqrt {4gh}\)
Open complete paper
9
2003 · Physics · Mechanics · Rotational Motion
AIPMT 2003
A stone is tied to a string of length \(l\) and is whirled in a vertical circle with the other end of the string as the centre. At a certain instant of time, the stone is at its lowest position and has a speed u. The magnitude of the change in velocity as it reaches a position where the string is horizontal (g being acceleration due to gravity) is
A
\(\sqrt {2\left( {{\mu ^2} - gl} \right)}\)
B
\(\sqrt {{u^2} - gl}\)
C
\(u - \sqrt {{u^2} - 2gl}\)
D
\(\sqrt {2gl}\)
Open complete paper
10
2003 · Physics · Mechanics · Rotational Motion
AIPMT 2003
A thin circular ring of mass M and radius r is rotating about its axis with a constant angular velocity \(\omega\). Four objects each of mass m, are kept gently to the opposite ends of two perpendicular diameters of the ring. The angular velocity of the ring will be :
A
\({{M\omega } \over {4m}}\)
B
\({{M\omega } \over {M + 4m}}\)
C
\({{\left( {M + 4m} \right)\omega } \over M}\)
D
\({{\left( {M - 4m} \right)\omega } \over {M + 4m}}\)
Open complete paper
11
2003 · Physics · Mechanics · Rotational Motion
AIPMT 2003
A ball rolls without slipping. The radius of gyration of the ball about an axis passing through its centre of mass is K. If radius of the ball be R. then the fraction of total energy associated with its rotational energy will be
A
\({{{K^2} + {R^2}} \over {{R^2}}}\)
B
\({{{K^2}} \over {{R^2}}}\)
C
\({{{K^2}} \over {{K^2} + {R^2}}}\)
D
\({{{R^2}} \over {{K^2} + {R^2}}}\)
Open complete paper
12
2004 · Physics · Mechanics · Rotational Motion
AIPMT 2004
A round disc of moment of inertia \(I\)2 about its axis perpendicular to its plane and passing through its centre is placed over another disc of moment of inertia \(I\)1 rotating with an angular velocity \(\omega\) about the same axis. The final angular velocity of the combination of discs is
A
\({{{I_2}\omega } \over {{I_1} + {I_2}}}\)
B
\(\omega\)
C
\({{{I_1}\omega } \over {{I_1} + I{}_2}}\)
D
\({{\left( {{I_1} + {I_2}} \right)\omega } \over {{I_1}}}\)
Open complete paper
13
2004 · Physics · Mechanics · Rotational Motion
AIPMT 2004
Three particles, each of mass m gram, are situated at the vertices of an equilateral triangle ABC of side \(l\) cm (as shown in the figure). The moment of inertia of the system about a line AX perpendicular to AB and in the plane of ABC, in gram-cm2 units will be

AIPMT 2004 Physics - Rotational Motion Question 42 English
A
\({3 \over 4}\)m\(l\)2
B
2m\(l\)2
C
\({5 \over 4}\)m\(l\)2
D
\({3 \over 2}\)m\(l\)2
Open complete paper
14
2004 · Physics · Mechanics · Rotational Motion
AIPMT 2004
The ratio of the radii of gyration of a circular disc about a tangential axis in the plane of the disc and of a circular ring of the same radius about a tangential axes in the plane of the ring is
A
2 : 3
B
2 : 1
C
\(\sqrt 5 :\sqrt 6\)
D
\(1:\sqrt 2\)
Open complete paper
15
2004 · Physics · Mechanics · Rotational Motion
AIPMT 2004
A wheel having moment of inertia 2 kg m2 about its vertical axis, rotates at the rate of 60 rpm about this axis. The torque which can stop the wheel's rotation in one minute would be
A
\({{2\pi } \over {15}}\) N m
B
\({\pi \over {12}}\) N m
C
\({\pi \over {15}}\) N m
D
\({\pi \over {18}}\) N m
Open complete paper
16
2005 · Physics · Mechanics · Rotational Motion
AIPMT 2005
The moment of inertia of a uniform circular disc of radius R and mass M about an axis passing from the edge of the disc and normal to the disc is
A
MR2
B
\({1 \over 2}\) MR2
C
\({3 \over 2}\) MR2
D
\({7 \over 2}\) MR2
Open complete paper
17
2005 · Physics · Mechanics · Rotational Motion
AIPMT 2005
Two bodies have their moments of inertia I and 2I respectively about their axis of rotation. If their kinetic energies of rotation are equal, their angular velocity will be in the ratio
A
2 : 1
B
1 : 2
C
\(\sqrt 2 :1\)
D
\(1:\sqrt 2\)
Open complete paper
18
2005 · Physics · Mechanics · Rotational Motion
AIPMT 2005
A drum of radius R and mass M, rolls down without slipping along an inclined plane of angle \(\theta\). The frictional force
A
dissipates energy as heat
B
decreases the rotational motion
C
decreases the rotational and translation motion
D
converts translational energy to rotational energy.
Open complete paper
19
2006 · Physics · Mechanics · Rotational Motion
AIPMT 2006
A tube of length L is filled completely with an incompressible liquid of mass M and closed at both the ends. The tube is then rotated in a horizontal plane about one of its ends with a uniform angular velocity \(\omega\). The force exerted by the liquid at the other end is
A
\({{M{L^2}{\omega ^2}} \over 2}\)
B
\({{ML{\omega ^2}} \over 2}\)
C
\({{M{L^2}\omega } \over 2}\)
D
\(ML{\omega ^2}\)
Open complete paper
20
2006 · Physics · Mechanics · Rotational Motion
AIPMT 2006
A uniform rod AB of length \(l\) and mass m is free to rotate about point A. The rod is released from rest in the horizontal position. Given that the moment of inertia of the rod about A is ml2/3, the initial angular acceleration of the rod will be

A
\({{mgl} \over 2}\)
B
\({3 \over 2}gl\)
C
\({{3g} \over {2l}}\)
D
\({{2g} \over {3l}}\)
Open complete paper

Showing 20 of 93 questions