The figure below shows a ball with mass m = 0.330 kg attached to the end of a thin rod with length L = 0.495 m and negligible mass. The other end of the rod is pivoted so that the ball can move in a vertical circle. The rod is held horizontally as shown and then given enough of a downward push to cause the ball to swing down and around and just reach the vertically up position, with zero speed there. L

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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The figure below shows a ball with mass m = 0.330 kg attached to the end of a thin rod with length L = 0.495 m and negligible mass. The other end of the rod is pivoted so
that the ball can move in a vertical circle. The rod is held horizontally as shown and then given enough of a downward push to cause the ball to swing down and around and
just reach the vertically up position, with zero speed there.
S
Transcribed Image Text:The figure below shows a ball with mass m = 0.330 kg attached to the end of a thin rod with length L = 0.495 m and negligible mass. The other end of the rod is pivoted so that the ball can move in a vertical circle. The rod is held horizontally as shown and then given enough of a downward push to cause the ball to swing down and around and just reach the vertically up position, with zero speed there. S
If the gravitational potential energy of the ball-Earth system is taken to be zero at the initial point, what is it when the ball reaches the following points?
(d) the lowest point
J
(e) the highest point
J
(f) the point on the right level with the initial point
J
Transcribed Image Text:If the gravitational potential energy of the ball-Earth system is taken to be zero at the initial point, what is it when the ball reaches the following points? (d) the lowest point J (e) the highest point J (f) the point on the right level with the initial point J
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