Home
Class 11
PHYSICS
A particle of mass 1 g executes an oscil...

A particle of mass 1 g executes an oscillatory motion on the concave surface of a spherical dish of radius 2m placed on a horizontal plane, Figure . If the motion of the particle begins from a point on the dish at a height of 1 cm. from the horizontal plane and coefficient of friction is 0.01 , find the total distance (in meter) covered by the particle before coming to rest.

Text Solution

Verified by Experts

The correct Answer is:
1
Promotional Banner

Topper's Solved these Questions

  • WORK, POWER AND ENERGY

    DC PANDEY|Exercise D Matrix Matching Type Questions|10 Videos
  • WORK, ENERGY AND POWER

    DC PANDEY|Exercise MEDICAL ENTRACES GALLERY|33 Videos

Similar Questions

Explore conceptually related problems

Aparticle of mass 1 g executes an oscillatory motion on the concave surface of a spherical dish of radius 2m placed on a horizontal plane, Figure . If the motion of the particle begins from a point on the dis at a height of 1 cm. from the horizontal plane and coefficient of friction is 0.01 , fing the total distance covered by the particle before coming to rest.

A particle dropped from a height of 100 m, collides with the horizontal surface where coefficient of restitution is 0.5, the velocity attained by the particle in 5^(th) collision is

A particle of mass M is at a distance a from surface of a thin spherical shell of equal mass and having radius a .

A body of mass 2 kg is placed on rough horizontal plane. The coefficient of friction between body and plane is 0.2 Then,

A mass m slides down a fixed plane inclined at an angle a to the horizontal plane after covering the entire length of the inclined plane. The height of the inclined plane is h and the coefficient of friction over both surfaces is mu .

A partical of mass 1kg rests on rought contact with a plane inclined at 30^(@) to the horizontal and is just about to slip, Find the coefficient of friction between the plane and the particle.

A particle of mass m oscillates inside a smooth spherical shell of radius R and starts its motion from point B . At given instant the kinetic energy of the particle is K . Then the force applied by particle on the shell at this instant is :-