A mass of 8.9 kg is suspended 8 m above the earth. a) What is the potential energy (in J) of the mass? (Take g as 9.8 ms-2.) Give your answer to 2 decimal places and use it to this accuracy, if needed in subsequent calculations. b) If the mass is released, what is its kinetic energy as it is about to hit the ground? You can ignore air resistance. Give your answer to 2 decimal places and use it to this accuracy, if needed in subsequent calculations. c) If the mass loses 1/4 of its energy on impact with the ground, how much kinetic energy does it have left after the bounce? Give your answer to 2 decimal places and use it to this accuracy, if needed in subsequent calculations. d) The mass rises in the air (following the bounce). What is its potential energy at the peak of the bounce? Give your answer to 2 decimal places and use it to this accuracy, if needed in subsequent calculations. e) What is the height of the mass at the peak of the bounce? Give your answer to one decimal place.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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A mass of 8.9 kg is suspended 8 m above the earth.
a)
What is the potential energy (in J) of the mass? (Take g as 9.8 ms-2.) Give your answer to 2 decimal places and use it to this accuracy, if needed in subsequent calculations.

b)
If the mass is released, what is its kinetic energy as it is about to hit the ground? You can ignore air resistance. Give your answer to 2 decimal places and use it to this accuracy, if needed in subsequent calculations.

c)
If the mass loses 1/4 of its energy on impact with the ground, how much kinetic energy does it have left after the bounce? Give your answer to 2 decimal places and use it to this accuracy, if needed in subsequent calculations.

d)
The mass rises in the air (following the bounce). What is its potential energy at the peak of the bounce? Give your answer to 2 decimal places and use it to this accuracy, if needed in subsequent calculations.

e)
What is the height of the mass at the peak of the bounce? Give your answer to one decimal place.

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