Answer:
1.60 g
Step-by-step explanation:
From the attached file below:
we can deduce that:

The distance traveled by 2 s will be:
x = vt
x = 20 m/s × 2 s
x = 40 m
The length is quarter of the circle with radius r,
so; if 2 πr = 4 x
Then radius (r) will be:

r = 25.5 m
The centripetal acceleration can be expressed as:

so;

a = 15.7 m/s²
the magnitude of the acceleration experienced by your unfortunate passengers in terms of acceleration due to gravity is then determined by the equation:



∴ The magnitude of the acceleration experienced by your unfortunate passengers during the turn = 1.60 g