A 5.85kg object is attached to two 5.0m-long cablesand swung around in a circle at 14.8m/s. See the diagram below andassume there is no frictioninvolved. a.Draw a free-body diagram for the mass from the world’s (inertial) reference frame b.What is the acceleration of the mass from the world’s (inertial) reference frame? c.Draw afree-body diagram for the mass from the frame of reference of the 5.85kg object
A 5.85kg object is attached to two 5.0m-long cablesand swung around in a circle at 14.8m/s. See the diagram below andassume there is no frictioninvolved. a.Draw a free-body diagram for the mass from the world’s (inertial) reference frame b.What is the acceleration of the mass from the world’s (inertial) reference frame? c.Draw afree-body diagram for the mass from the frame of reference of the 5.85kg object
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A 5.85kg object is attached to two 5.0m-long cablesand swung around in a circle at 14.8m/s.
See the diagram below andassume there is no frictioninvolved.
a.Draw a free-body diagram for the mass from the world’s (inertial) reference frame
b.What is the acceleration of the mass from the world’s (inertial) reference frame?
c.Draw afree-body diagram for the mass from the frame of reference of the 5.85kg object
d.What is the acceleration of the mass from the frame of reference of the 5.85kg object?
e.Determine the tension in the two strings, and explain why the tensions are not the same

Transcribed Image Text:3. A 5.85kg object is attached to two 5.0m-long cables and swung around in a circle at 14.8m/s. See the
diagram below and assume there is no friction involved.
a. Draw a free-body diagram for the mass from the world's (inertial) reference frame
b. What is the acceleration of the mass from the world's (inertial) reference frame?
c. Draw a free-body diagram for the mass from the frame of reference of the 5.85kg object
d. What is the acceleration of the mass from the frame of reference of the 5.85kg object?
e. Determine the tension in the two strings, and explain why the tensions are not the same.
5.0 m
A
8.0 m
B
5.0 m
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