Answer:
0.2 m/s^2
Step-by-step explanation:
Maximum distance, h = 19.5 m
initial speed, u = 2.80 m/s
final speed, v = 0 m/s
Let the gravitational acceleration is a.
Use third equation of motion



a = 0.2 m/s^2
Thus the gravitational acceleration on the exoplanet is 0.2 m/s^2