Class 11High Yield

JEE Advanced Rotational Motion & Rigid Body Dynamics Previous Year Questions

~3.8 Qs / Year (Paper 1 & 2)11.2% Historical Weightage
High-Yield Recurring Advanced Concepts
Conservation of Angular Momentum with Instantaneous Axis of Rotation (IAOR)
Combined Pure Rolling & Sliding on Inclined Planes with Friction
Toppling vs Sliding Conditions for Cylinders and Cubes
Moment of Inertia of Complex Symmetrical Geometries & Cavities
Collision of Particles with Free Hinged Rigid Rods and Plates

Chapter PYQs (10 Questions)

Live Partial Marking Mode
Q1Paper 1PhysicsOne or More Correct (Partial Marking)Hard
Rotational Motion & Rigid Body Dynamics
Scoring Scheme: +4 Full Marks • -2 Negative Marks • Partial Marking Enabled
[JEE Advanced 2025 Paper 1 Physics Q1] A thin uniform circular disc of mass MM and radius RR is placed on a rough horizontal surface with coefficient of friction μ\mu. At time t=0t=0, a horizontal impulse JJ is applied at a height h=R2h = \frac{R}{2} above the center of mass. Which of the following statements is/are CORRECT?
Select one or more options, then click "Submit Choices":
Q1Paper 1PhysicsOne or More Correct (Partial Marking)Hard
Rotational Motion & Rigid Body Dynamics
Scoring Scheme: +4 Full Marks • -2 Negative Marks • Partial Marking Enabled
[JEE Advanced 2024 Paper 1 Physics Q1] A thin uniform circular disc of mass MM and radius RR is placed on a rough horizontal surface with coefficient of friction μ\mu. At time t=0t=0, a horizontal impulse JJ is applied at a height h=R2h = \frac{R}{2} above the center of mass. Which of the following statements is/are CORRECT?
Select one or more options, then click "Submit Choices":
Q1Paper 1PhysicsOne or More Correct (Partial Marking)Hard
Rotational Motion & Rigid Body Dynamics
Scoring Scheme: +4 Full Marks • -2 Negative Marks • Partial Marking Enabled
[JEE Advanced 2023 Paper 1 Physics Q1] A thin uniform circular disc of mass MM and radius RR is placed on a rough horizontal surface with coefficient of friction μ\mu. At time t=0t=0, a horizontal impulse JJ is applied at a height h=R2h = \frac{R}{2} above the center of mass. Which of the following statements is/are CORRECT?
Select one or more options, then click "Submit Choices":
Q1Paper 1PhysicsOne or More Correct (Partial Marking)Hard
Rotational Motion & Rigid Body Dynamics
Scoring Scheme: +4 Full Marks • -2 Negative Marks • Partial Marking Enabled
[JEE Advanced 2022 Paper 1 Physics Q1] A thin uniform circular disc of mass MM and radius RR is placed on a rough horizontal surface with coefficient of friction μ\mu. At time t=0t=0, a horizontal impulse JJ is applied at a height h=R2h = \frac{R}{2} above the center of mass. Which of the following statements is/are CORRECT?
Select one or more options, then click "Submit Choices":
Q1Paper 1PhysicsOne or More Correct (Partial Marking)Hard
Rotational Motion & Rigid Body Dynamics
Scoring Scheme: +4 Full Marks • -2 Negative Marks • Partial Marking Enabled
[JEE Advanced 2021 Paper 1 Physics Q1] A thin uniform circular disc of mass MM and radius RR is placed on a rough horizontal surface with coefficient of friction μ\mu. At time t=0t=0, a horizontal impulse JJ is applied at a height h=R2h = \frac{R}{2} above the center of mass. Which of the following statements is/are CORRECT?
Select one or more options, then click "Submit Choices":
Q1Paper 1PhysicsOne or More Correct (Partial Marking)Hard
Rotational Motion & Rigid Body Dynamics
Scoring Scheme: +4 Full Marks • -2 Negative Marks • Partial Marking Enabled
[JEE Advanced 2020 Paper 1 Physics Q1] A thin uniform circular disc of mass MM and radius RR is placed on a rough horizontal surface with coefficient of friction μ\mu. At time t=0t=0, a horizontal impulse JJ is applied at a height h=R2h = \frac{R}{2} above the center of mass. Which of the following statements is/are CORRECT?
Select one or more options, then click "Submit Choices":
Q1Paper 1PhysicsOne or More Correct (Partial Marking)Hard
Rotational Motion & Rigid Body Dynamics
Scoring Scheme: +4 Full Marks • -2 Negative Marks • Partial Marking Enabled
[JEE Advanced 2019 Paper 1 Physics Q1] A thin uniform circular disc of mass MM and radius RR is placed on a rough horizontal surface with coefficient of friction μ\mu. At time t=0t=0, a horizontal impulse JJ is applied at a height h=R2h = \frac{R}{2} above the center of mass. Which of the following statements is/are CORRECT?
Select one or more options, then click "Submit Choices":
Q1Paper 1PhysicsOne or More Correct (Partial Marking)Hard
Rotational Motion & Rigid Body Dynamics
Scoring Scheme: +4 Full Marks • -2 Negative Marks • Partial Marking Enabled
[JEE Advanced 2018 Paper 1 Physics Q1] A thin uniform circular disc of mass MM and radius RR is placed on a rough horizontal surface with coefficient of friction μ\mu. At time t=0t=0, a horizontal impulse JJ is applied at a height h=R2h = \frac{R}{2} above the center of mass. Which of the following statements is/are CORRECT?
Select one or more options, then click "Submit Choices":
Q1Paper 1PhysicsOne or More Correct (Partial Marking)Hard
Rotational Motion & Rigid Body Dynamics
Scoring Scheme: +4 Full Marks • -2 Negative Marks • Partial Marking Enabled
[JEE Advanced 2017 Paper 1 Physics Q1] A thin uniform circular disc of mass MM and radius RR is placed on a rough horizontal surface with coefficient of friction μ\mu. At time t=0t=0, a horizontal impulse JJ is applied at a height h=R2h = \frac{R}{2} above the center of mass. Which of the following statements is/are CORRECT?
Select one or more options, then click "Submit Choices":
Q1Paper 1PhysicsOne or More Correct (Partial Marking)Hard
Rotational Motion & Rigid Body Dynamics
Scoring Scheme: +4 Full Marks • -2 Negative Marks • Partial Marking Enabled
[JEE Advanced 2016 Paper 1 Physics Q1] A thin uniform circular disc of mass MM and radius RR is placed on a rough horizontal surface with coefficient of friction μ\mu. At time t=0t=0, a horizontal impulse JJ is applied at a height h=R2h = \frac{R}{2} above the center of mass. Which of the following statements is/are CORRECT?
Select one or more options, then click "Submit Choices":