Answer:
(A) J = -10.57 kg-m/s (B) 17.61 N
Step-by-step explanation:
Given that,
Mass of a volleyball, m = 0.263 kg
Initial speed of volleyball, u = 17.4 m/s
Final speed of volleyball, v = -22.8 (in opposite direction)
(a) We need to find the impulse delivered to the ball by the player.
Impulse = change in momentum
J = m(v-u)
Put all the values,
J = 0.263(-22.8-17.4) kg-m/s
= -10.57 kg-m/s
(b) The time of contact with the ball, t = 0.6 s
We need to find the magnitude of the average force exerted on the players first.
Impulse, J = Ft

So, the magnitude of the average force exerted on the player is 17.61 N.