Answer:
2.1 m/s
Step-by-step explanation:
Momentum is conserved hence sum of initial momentum equals the sum of final momentum

where
is the mass of 2150 Kg car,
is the mass of 3250 Kg car,
is the velocity of the 2150 Kg car,
is the velocity of the 3250 Kg car,
is the common velocity
Making
the subject then

Substituting 2150 Kg for
, 3250 Kg for
, 10 m/s for
, 5.22 m/s for
then we obtain
