Step-by-step explanation:
a.)
We find the relative speed
u = vb + vc
b.)
chuck and the cart are at a rest position
mcartvc = mballvb
from part a above,
vc = u - vb
mcartu = vb(mcart + mball)
make vb the subject of the equation

c.)
from anser a,
vb = u - vc
then mcart vc = mball(u-vc)

d.
Mballvb = (Mcart + Mball)vj
we make vj the subject to get her relative speed

e.
given the solution in part d above,
we have

remember,
vb = u - vc
such that

thank you!