a) when the spring is released, all the elastic potential energy of the spring is converted into kinetic energy of the mass in motion. So we can write:

where

is the elastic constant of the spring,

is its displacement,

is the mass of the block and

the velocity of the block after it is released from the spring. So we can find v:

This is the velocity the block has before entering the rough path bc.
b) After it enters the rough path, the block starts to lose energy because of the work

done by the frictional force with frictional coefficient of

. So, calling Kf and Ki the final and initial kinetic energy, we have

the length of the rough path bc is 20 cm=0.2 m, so the work done by the frictional force is

while the initial kinetic energy is

Therefore kinetic energy after the rough path is

and the velocity is

c)

found at point b) is the kinetic energy of the block before entering the incline. At the maximum height h, all this kinetic energy is converted into potential energy, mgh. So we can write

and from this we find h:
