Hi there!
We can begin solving for the work necessary using the following:

W = Work (J)
Δh = change in height (10 m)
m = mass (75 kg)
g = acceleration due to gravity (9.8 m/s²)
Plug in the givens:

Now, we can solve for power with this equation:

P = Power (Watts)
W = Work (J)
t = time (s)
Plug in the values:
