Find the velocity of the bucket with a mass of m = 2.00 kg attached to a cylindrical pulley with a mass of M = 3.00 kg and a radius of R = 0.400 m after it has dropped (2.58x10^1) meters. Use conservation of energy and write your answer in Sl units to 3 sig figs. %3D Note: Your answer is assumed to be reduced to the highest power possible. Your Answer: x10

Inquiry into Physics
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ISBN:9781337515863
Author:Ostdiek
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Chapter3: Energy And Conservation Laws
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Problem 37P: . A particular hydraulic pile driver uses a ram with a mass of 1040 kg. If the maximum pile energy...
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Find the velocity of the bucket with a mass of m = 2.00 kg attached to a cylindrical
pulley with a mass of M = 3.00 kg and a radius of R = 0.400 m after it has dropped
(2.58x10^1) meters. Use conservation of energy and write your answer in Sl units to
3 sig figs.
%3D
Note: Your answer is assumed to be reduced to the highest power possible.
Your Answer:
х10
Transcribed Image Text:Find the velocity of the bucket with a mass of m = 2.00 kg attached to a cylindrical pulley with a mass of M = 3.00 kg and a radius of R = 0.400 m after it has dropped (2.58x10^1) meters. Use conservation of energy and write your answer in Sl units to 3 sig figs. %3D Note: Your answer is assumed to be reduced to the highest power possible. Your Answer: х10
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