1. A bouncy ball is release from rest (zero velocity) from a crane that is 10 m above the ground. Just after it rebounds off the ground, the ball has 80% of the speed that it had just before it hit the ground. (This is due to energy loss when it bounces.) (a) Calculate the height that the ball reaches when it first comes to rest again after this first bounce, and therefore work out how much the crane would have to be lowered to meet the ball at its new maximum height. (b) Using dimensional analysis, show that the dimensions of displacement are the same as that of: (velocity)2 acceleration (c) Using your answer to (a), or otherwise, work out the new maximum height of the ball after its first bounce if it instead retains 90% of its speed just after hitting the ground (rather than 80%).

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Chapter8: Potential Energy And Conservation Of Energy
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1.
A bouncy ball is release from rest (zero velocity) from a crane that is 10 m above the
ground. Just after it rebounds off the ground, the ball has 80% of the speed that it had just before it
hit the ground. (This is due to energy loss when it bounces.)
(a) Calculate the height that the ball reaches when it first comes to rest again after this first bounce,
and therefore work out how much the crane would have to be lowered to meet the ball at its new
maximum height.
(b) Using dimensional analysis, show that the dimensions of displacement are the same as that of:
(velocity)2
acceleration
(c) Using your answer to (a), or otherwise, work out the new maximum height of the ball after its
first bounce if it instead retains 90% of its speed just after hitting the ground (rather than 80%).
Transcribed Image Text:1. A bouncy ball is release from rest (zero velocity) from a crane that is 10 m above the ground. Just after it rebounds off the ground, the ball has 80% of the speed that it had just before it hit the ground. (This is due to energy loss when it bounces.) (a) Calculate the height that the ball reaches when it first comes to rest again after this first bounce, and therefore work out how much the crane would have to be lowered to meet the ball at its new maximum height. (b) Using dimensional analysis, show that the dimensions of displacement are the same as that of: (velocity)2 acceleration (c) Using your answer to (a), or otherwise, work out the new maximum height of the ball after its first bounce if it instead retains 90% of its speed just after hitting the ground (rather than 80%).
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