A rough inclined plane is placed on a cart moving with a constant velocity u on horizontal ground. A block of mass M rest on the incline. Is any work done by force of friction between the block and incline ? Is there then a dissipation of energy ?
Text Solution
Verified by Experts
Consider the adjacent diagram. As the block M is at rest. Hence, f=frictionless force=mg sin `theta` The force of frictionless acting between the block and incline opposes the tendency of sliding of the block. Since, block is not in motion, therefore no work is done by the force of friction. Hence, no dissipation of energy takes place.
Topper's Solved these Questions
WORK, ENERGY AND POWER
NCERT EXEMPLAR ENGLISH|Exercise Short answer0|1 Videos
WORK, ENERGY AND POWER
NCERT EXEMPLAR ENGLISH|Exercise Long answer|1 Videos
WORK, ENERGY AND POWER
NCERT EXEMPLAR ENGLISH|Exercise Long answer|1 Videos
WAVES
NCERT EXEMPLAR ENGLISH|Exercise LONG ANSWER TYPE QUESTIONS|5 Videos
Similar Questions
Explore conceptually related problems
An inclined plane is moving with Constant velocity v = 4 m//s on a horizoontal surface as shown in figure. If a block of mass 2 kg is kept at top of the incline and their is no friction between the block and the incline, then the distance travelled by the incline till the block reaches bottom of the inclined is (g = 10 m//s^(2))
A small block of mass m is kept on a rough inclined surface of inclination theta fixed in a car. The car moves with a uniform velocity v and the block does not slide on the wedge. The work done by the force of friction on the block in time t will be
An inclined plane is moving up with constant velocity v . A block kept on incline is at rest. Calculate the work done by gravity, friction force, and normal reaciton on block in time interval of t.
A block is stationary on a rough inclined plane. How many forces are acting on the block?
A block of mass m is moving down with constant velocity along an inclined plane of inclination theta . What is the work done by external force in pulling the block along the inclined plane through a height h with constant velocity?
The ratio of acceleration of blocks A placed on smooth incline with block B placed on rough incline is 2:1 . The coefficient of kinetic friction between block B and incline is
A block of mass m = 3 kg slides on a rough inclined plane of cofficient of friction 0.2 Find the resultant force offered by the plane on the block
A block of mass 2 kg slides down an incline plane of inclination 30°. The coefficient of friction between block and plane is 0.5. The contact force between block and plank is :
A small block of mass m is kept on a rough inclined surface of inclination theta fixed in an elevator. The elevator goes up with a uniform velocity v and te block does not slide n te wedge. The work done by the force of friction on the block in time t will be
A small block of mass m is kept on a rough inclined surface of inclination theta fixed in an elevator. The elevator goes up with a uniform velocity v and the block does not slide on the wedge. The work done by the force of friction on the block in time t will be
NCERT EXEMPLAR ENGLISH-WORK, ENERGY AND POWER-Very short answer