A point mass m = 3 kg can move on a straight track from point A to point B. The points are on the parameter of a circular table of radius R = 8.8 m which is rotating around its center counterclockwise at constant angular velocity w = 3 rad/s. ŷR B R R At t = () the mass is at point A and begins to move at constant speed vo = 2 m/s to point B. Note that the speed remains constant during the process. What is the Coriolis force on the mass during its motion from point A to point B? a. 25.46*(Xr+Yr) O b. 50.91*(-Xr-Yr) O c. 36.00*(Xr-Yr) O d. 9.00*(-Xr+Yr) O e. 12.73*(Xr+Yr) Of. 36.00*(Xr+Yr) O g. 36.00*(-Xr+Yr) Oh. 25.46*(Xr-Yr)

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Chapter11: Angular Momentum
Section: Chapter Questions
Problem 54P: A cylinder with rotational inertia I1=2.0kgm2 rotates clockwise about a vertical axis through its...
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A point mass m =
3 kg can move on a straight track from point A to point B. The points are on the parameter of a circular table
of radius R = 8.8 m which is rotating around its center counterclockwise at constant angular velocity w = 3 rad/s.
ŷR
B
R
R
At t = () the mass is at point A and begins to move at constant speed vo = 2 m/s to point B. Note that the speed remains
constant during the process.
What is the Coriolis force on the mass during its motion from point A to point B?
a. 25.46*(Xr+Yr)
O b. 50.91*(-Xr-Yr)
O c. 36.00*(Xr-Yr)
O d. 9.00*(-Xr+Yr)
O e. 12.73*(Xr+Yr)
Of. 36.00*(Xr+Yr)
O g. 36.00*(-Xr+Yr)
Oh. 25.46*(Xr-Yr)
Transcribed Image Text:A point mass m = 3 kg can move on a straight track from point A to point B. The points are on the parameter of a circular table of radius R = 8.8 m which is rotating around its center counterclockwise at constant angular velocity w = 3 rad/s. ŷR B R R At t = () the mass is at point A and begins to move at constant speed vo = 2 m/s to point B. Note that the speed remains constant during the process. What is the Coriolis force on the mass during its motion from point A to point B? a. 25.46*(Xr+Yr) O b. 50.91*(-Xr-Yr) O c. 36.00*(Xr-Yr) O d. 9.00*(-Xr+Yr) O e. 12.73*(Xr+Yr) Of. 36.00*(Xr+Yr) O g. 36.00*(-Xr+Yr) Oh. 25.46*(Xr-Yr)
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