File Edit View Help Problem: 10 (of 22) Do not round intermediate answers. Give your final answer(s) to three decimal places. Check your units. If the system is released from rest, determine the speeds of both masses after B has moved 1.5 m. Neglect friction and the masses of the pulleys. Hint: Perform a quick static force analysis to see which way the masses move, and then apply the energy equations. 39 kg 36° B 24 kg v of A= 2745 m/sec v of B 2.54911 m/sec Check Answer for this Problem Close

Engineering Fundamentals: An Introduction to Engineering (MindTap Course List)
5th Edition
ISBN:9781305084766
Author:Saeed Moaveni
Publisher:Saeed Moaveni
Chapter8: Time And Time-related Variables In Engineering
Section: Chapter Questions
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System is released from rest, determine the speeds of both masses after B has moved 1.7 m. (read image)

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Problem: 10
(of 22)
Do not round intermediate answers. Give your final answer(s) to three decimal places. Check your units.
If the system is released from rest, determine the speeds of both masses after B has moved 1.5 m. Neglect friction and the
masses of the pulleys.
Hint: Perform a quick static force analysis to see which way the masses move, and then apply the energy equations.
39 kg
36°
B
24 kg
v of A=
2745
m/sec
v of B 2.54911
m/sec
Check Answer for this Problem
Close
Transcribed Image Text:File Edit View Help Problem: 10 (of 22) Do not round intermediate answers. Give your final answer(s) to three decimal places. Check your units. If the system is released from rest, determine the speeds of both masses after B has moved 1.5 m. Neglect friction and the masses of the pulleys. Hint: Perform a quick static force analysis to see which way the masses move, and then apply the energy equations. 39 kg 36° B 24 kg v of A= 2745 m/sec v of B 2.54911 m/sec Check Answer for this Problem Close
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