* You want to determine the radial acceleration of a friend who is standing on the rotating platform of a merry-go-round. You have a stopwatch and a measuring tape. Which of the following procedures would best serve your task? a. Measure the distance d between the point where the person is standing and the axis of rotation, count the number of rotations N of the platform in 20 seconds, and calculate d . ( 2 π N 20 s ) 2 b. Measure the distance d between the point where the person is standing and the edge of the platform, count the number of rotations N of the platform in 20 seconds, and calculate d . ( 2 π N 20 s ) 2 c. Measure the distance d between the point where the person is standing and the axis of rotation, measure the time t for 20 revolutions of the platform, and calculate d . ( 20 2 π t ) 2 .
* You want to determine the radial acceleration of a friend who is standing on the rotating platform of a merry-go-round. You have a stopwatch and a measuring tape. Which of the following procedures would best serve your task? a. Measure the distance d between the point where the person is standing and the axis of rotation, count the number of rotations N of the platform in 20 seconds, and calculate d . ( 2 π N 20 s ) 2 b. Measure the distance d between the point where the person is standing and the edge of the platform, count the number of rotations N of the platform in 20 seconds, and calculate d . ( 2 π N 20 s ) 2 c. Measure the distance d between the point where the person is standing and the axis of rotation, measure the time t for 20 revolutions of the platform, and calculate d . ( 20 2 π t ) 2 .
* You want to determine the radial acceleration of a friend who is standing on the rotating platform of a merry-go-round. You have a stopwatch and a measuring tape. Which of the following procedures would best serve your task?
a. Measure the distance d between the point where the person is standing and the axis of rotation, count the number of rotations N of the platform in 20 seconds, and calculate
d
.
(
2
π
N
20
s
)
2
b. Measure the distance d between the point where the person is standing and the edge of the platform, count the number of rotations N of the platform in 20 seconds, and calculate
d
.
(
2
π
N
20
s
)
2
c. Measure the distance d between the point where the person is standing and the axis of rotation, measure the time t for 20 revolutions of the platform, and calculate
d
.
(
20
2
π
t
)
2
.
Using the 95% Margin of Error (Confidence Level) values for the Experimental Acceleration due to Gravity determine the % error.= (abs value(A-E)/A)x Show calculations. MOE +- 1.84 m/s^2 --> interval 8.89,12.57 m/s^2
4. In the figure below what is the value of the angle 0?
A
30
PLEASE help with the experimental setup for this theory because i am so confused.
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