Physics

Angular Momentum

Physics·MCQ Practice

Conservation of Angular Momentum — MCQ Practice

NEET UG
Version 1Updated 22 Mar 2026

Interactive MCQ Practice

Test your knowledge. Click “Solve” to reveal options, select your answer, then check the result. 7 questions available.

Q1medium

A uniform circular disc of mass MM and radius RR is rotating with an angular velocity ω0\omega_0 about its axis. Two point masses, each of mass mm, are gently placed at the opposite ends of a diameter of the disc. What is the new angular velocity of the system?

Q2medium

A child stands on a freely rotating platform with his arms extended. He holds a 2,kg2,\text{kg} mass in each hand. The angular speed of the platform is 10,rad/s10,\text{rad/s}. The moment of inertia of the child and platform without the masses is 2,kg m22,\text{kg m}^2. When the child pulls his arms in, the masses are 0.2,m0.2,\text{m} from the axis of rotation. Initially, the masses are 1,m1,\text{m} from the axis. What is the new angular speed of the platform?

Q3easy

Which of the following scenarios best illustrates the conservation of angular momentum?

Q4medium

A uniform rod of mass MM and length LL is pivoted at one end and is free to rotate in a horizontal plane. Initially, it is at rest. A point mass mm moving with velocity vv perpendicular to the rod strikes the free end of the rod and sticks to it. What is the angular velocity of the rod-mass system immediately after the collision?

Q5easy

A planet of mass mm is revolving around the Sun in an elliptical orbit. If vpv_p and vav_a are the velocities of the planet at the perihelion (closest point) and aphelion (farthest point) respectively, and rpr_p and rar_a are the corresponding distances from the Sun, then which of the following relations is correct?

Q6easy

A merry-go-round of radius R=2,mR = 2,\text{m} and moment of inertia Img=100,kg m2I_{mg} = 100,\text{kg m}^2 is rotating at an angular speed of ω0=2,rad/s\omega_0 = 2,\text{rad/s}. A child of mass m=25,kgm = 25,\text{kg} jumps onto the merry-go-round at its edge. What is the new angular speed of the merry-go-round?

Q7easy

A solid cylinder of mass MM and radius RR is rotating about its axis with angular speed ω\omega. Another identical solid cylinder is gently dropped on the first cylinder, such that their axes coincide. What is the common angular speed of the combined system?

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