Step-by-step explanation:
Given that,
Mass of the roller costar, m = 275 kg
It sits at the top of a hill with height 85 m, h = 85 m
We need to find the speed with which it is going when it reaches the bottom. It can be calculated using the conservation of energy as :

g is the acceleration due to gravity


v = 40.81 m/s
So, the speed of the roller coaster when it reaches the bottom is 40.81 m/s. Hence, this is the required solution.