Answer:
0.17 degrees
Step-by-step explanation:
From the question we are given the following:
acceleration due to gravity =

radius (r) = 6.5 cm = 0.065 m
time (s) = 9.3 s
angle = ?
- we first have to calculate the distance the water moves, and this is the circumference of the microwave
circumference = 2 x π x r = 2 x π x 0.065 = 0.408 m
- Now we find the speed with which it moves at
speed =

=
= 0.044
- The next step is to find the centripetal acceleration
a =

=
= 0.03
being a vector quantity, acceleration has direction, the centripetal acceleration is the x component while the y component would be the acceleration due to gravity (g)
A = 0.03 x + 9.8 y
to find the angle we can apply tan θ =
![\frac{ 0.03 }{9.8]()
θ = 0.17 degrees