Using the kinematics equations Vf=Vi+ (a)(t) and d=Vi(t)+1/2(a)(t)^2
and given:
d=?
Vi= 0 m/s
Vf=?
g= 25m/s^2 (so a= 25m/s^2)
t= 4sec
you first have to use Vf=Vi+ (a)(t) to solve for Vf:
Vf= (0m/s) + (25m/s^2)(4 sec)
Vf= 100m/s
Now using d=Vi(t)+1/2(a)(t)^2
d= 0m/s +1/2(25m/s^2)(4)^2
Which gives us d= 200.0 meters