Tow masses are connected by a light string passes over a light frictionless pulley as shown in figure. The 5kg mass is released from rest. Using law of conservation of energy a) Determine the velocity of the 3 kg mass hits ground b) Find the maximum height to which the 3 kg the mass will m30 kg h40m rise.

Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter9: Dynamics Of A System Of Particles
Section: Chapter Questions
Problem 9.55P
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Tow masses are connected by a light string passes over a light frictionless pulley as
shown in figure. The 5kg mass is released from rest.
Using law of conservation of energy
a) Determine the velocity of the 3 kg mass hits
ground
b) Find the maximum height to which the 3 kg
the
m2- 50 kç
mass will
mi- 3.0 kg
n40m
rise.
Transcribed Image Text:Tow masses are connected by a light string passes over a light frictionless pulley as shown in figure. The 5kg mass is released from rest. Using law of conservation of energy a) Determine the velocity of the 3 kg mass hits ground b) Find the maximum height to which the 3 kg the m2- 50 kç mass will mi- 3.0 kg n40m rise.
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