The velocity of a body moving in a straight line is increased by applying a constant force , for some distance in the direction of the motion. Prove that the increase in the kinetic energy of the body is equal to the work done by the force on the body.
Step 1: Given data
A constant force
Step 2: To prove
The increase in the kinetic energy of the body is equal to the work done by the force on the body.
, where is the change in kinetic energy and is the work done.
Step 3: Formulae used
, where is the force and is the displacement…….(1)
, where is the mass and is the acceleration………(2)
, where is the velocity.
Step 4: Proof of the mentioned statement:
Using the third equation of motion, we know that , where is final velocity and is initial velocity.
Rearranging this equation of motion, we get .
Substituting the value of and in formula 1 from the above expression and formula 2 respectively,
Again, substituting values from formula 3 into the above expression,
Hence. it is proved that the increase in the kinetic energy of the body is equal to the work done by the force on the body.