Answer:
(a) 41.75m/s
(b) 4.26s
Step-by-step explanation:
Let:
Distance, D = 89m
Gravity,
= 9.8 m/

Initial Velocity,
= 0m/s
Final Velocity,
= ?
Time Taken,
= ?
With the distance formula, which is
D =
+

and by substituting what we already know, we have:
89 =
×9.8×

With the equation above, we can solve for
:

Now that we have solved
, we can use the following velocity formula to solve for
:
, where
is also equals to
, so we have

By substituting
,
, and
,
We have:
