As in the figure, two objects are connected to each other with the help of light ropes passing through a frictionless light pulley. The object with a mass of 5.00 kg is released while at rest. Using the energy conservation principle, calculate the maximum height that the object with a mass of 3.00 kg can climb. 5.00 ku A-4.00 m -3.00 kg O A) 5.50 m OB) 4.50 m Oc) 6.00 m O D) 6.50 m O E) 5.00 m

College Physics
11th Edition
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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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As in the figure, two objects are connected to each other with the help of light ropes passing through a frictionless light pulley. The object with a mass of 5.00 kg is released while at
rest. Using the energy conservation principle, calculate the maximum height that the object with a mass of 3.00 kg can climb.
15 -
m, = 5.00 kg
h = 4.00 m
m, = 3.00 kg
O A) 5.50 m
B) 4.50 m
C) 6.00 m
D) 6.50 m
O E) 5.00 m
Transcribed Image Text:As in the figure, two objects are connected to each other with the help of light ropes passing through a frictionless light pulley. The object with a mass of 5.00 kg is released while at rest. Using the energy conservation principle, calculate the maximum height that the object with a mass of 3.00 kg can climb. 15 - m, = 5.00 kg h = 4.00 m m, = 3.00 kg O A) 5.50 m B) 4.50 m C) 6.00 m D) 6.50 m O E) 5.00 m
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