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Pure Rolling on incline Plane...

Pure Rolling on incline Plane

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Pure Rolling on inclined Plane

A solid cylinder of mass 2kg rolls down (pure rolling) an inclined plane from a height of 4m. Its rotational kinetic energy, when its reaches the foot of the plane is (Take g=10m s^(-2))

A solid ball of mass 'm' is released on a rough fixed inclined plane from height H . The ball will perform pure rolling on the inclined plane. Then

A sphere of radius 1cm moving with 1 m/s starts going up the plane performing pure rolling on an inclined plane of inclination 30 degrees. Find total time taken by it to go up and come down the plane

A ring is rolling on an inclined plane. The ratio of the linear and rotational kinetic energies will be

A hollow cylinder is rolling on an inclined plane, inclined at an angle of 30^(@) to the horizontal. Its speed after travelling a distance of 10 m will be

The figure shows a smooth inclined plane of inclination theta fixed in a car. A sphere is set in pure rolling on the incline. For what value of the acceleration of the car in the horizontal direction the sphere will continue pure rolling?