Answer:
6.5 m/s
Step-by-step explanation:
We are given that
Distance, s=100 m
Initial speed, u=1.4 m/s
Acceleration,

We have to find the final velocity at the end of the 100.0 m.
We know that

Using the formula






Hence, her final velocity at the end of the 100.0 m=6.5 m/s