4. Ball m in the figure below is a placed on top of the fixed cylinder with radius R. The only force acting on the full system is that due to gravity (this is not orbital dynamics, it is a problem set in Earth's gravity; ignore friction, air drag, etc.). Ball m is released at time 0 with a velocity Vo- m a. Before any math: i. ii. Sketch at what point you think the ball m will stop making contact with the cylinder. Sketch a free body diagram of all the forces acting on the ball when e>0.
4. Ball m in the figure below is a placed on top of the fixed cylinder with radius R. The only force acting on the full system is that due to gravity (this is not orbital dynamics, it is a problem set in Earth's gravity; ignore friction, air drag, etc.). Ball m is released at time 0 with a velocity Vo- m a. Before any math: i. ii. Sketch at what point you think the ball m will stop making contact with the cylinder. Sketch a free body diagram of all the forces acting on the ball when e>0.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
Related questions
Question
Can Someone draw this on paper the free body diagrams

Transcribed Image Text:4. Ball m in the figure below is a placed on top of the fixed cylinder with radius R. The only
force acting on the full system is that due to gravity (this is not orbital dynamics, it is a
problem set in Earth's gravity; ignore friction, air drag, etc.). Ball m is released at time 0
with a velocity Vo-
m
a. Before any math:
i.
ii.
Sketch at what point you think the ball m will stop making contact with the
cylinder.
Sketch a free body diagram of all the forces acting on the ball when e>0.
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