Answer:
the maximum speed Rey could safely attain while keeping acceleration on her body below 6 g's is 91.65 m/s
Step-by-step explanation:
Using the approach of Centripetal acceleration:

Given that:
acceleration on her body below 6 g
(i.e a < 6g)

where;
R = radius of curvature = 1.4 km = 1400 m



V = 91.65 m/s
Thus; the maximum speed Rey could safely attain while keeping acceleration on her body below 6 g's is 91.65 m/s