Home
Class 11
PHYSICS
A ball of radius R and mass m is rolling...

A ball of radius `R` and mass `m` is rolling without slipping on a horizontal surface with velocity of its centre of mass `v_(CM)`. It then rolls wilthout slippig up a hill to a height `h` before momentarily coming to rest. Find `h`

Promotional Banner

Topper's Solved these Questions

  • RIGID BODY MOTION

    ANURAG MISHRA|Exercise SCQ_TYPE|83 Videos
  • RIGID BODY MOTION

    ANURAG MISHRA|Exercise MCQ_TYPE|41 Videos
  • IMPULSE AND MOMENTUM

    ANURAG MISHRA|Exercise matching|3 Videos
  • UNIT AND DIMENSIONS

    ANURAG MISHRA|Exercise Matching Type Problem|4 Videos

Similar Questions

Explore conceptually related problems

A disc of mass 100 g is rolling without slipping on a horizontal surface with a velocity of 10 cm s^(-1) . Calculate its total energy.

A wheel of bicycle is rolling without slipping on a level road. The velocity of the centre of mass is v_(CM) , then true statement is

A spherical ball of radius r and mass m is rolling without slipping on a horizontal table. Calculate the percentage of KE , which is translational.

A disc rolls without slipping on a horizontal surface such that its velocity of center of the mass is v . Find the velocity of points A , B , C and D .

A wheel rolls without slipping on a horizontal surface such that its velocity of center of mass is v . The velocity of a particle at the highest point of the rim is

A symmetrical body of mass M and radius R is rolling without slipping on a horizontal surface with linear speed v. Then its angular speed is

A wheel is rolling without slipping on a horizontal plane with velocity v and acceleration a of centre of mass as shown in figure. Acceleration at

A solid sphere of mass m and radius R rolls without slipping on a horizontal surface such that v_(c.m.)=v_(0) .

A solid sphere of mass m= 500gm is rolling without slipping on a horizontal surface. Find kinetic energy of a sphere if velocity of centre of mass is 5 cm/sec

A uniform circular disc of radius R is rolling on a horizontal surface. Determine the tangential velocity : the centre of mass