Shown below is a box of mass m1 that sits on a frictionless incline at an angle above the horizontal ?. This box is connected by a relatively massless string, over a frictionless pulley, and finally connected to a box at rest over the ledge, labeled m2. If m1 and m2 are a height h above the ground and  m2 > m1,  solve the following. (Assume the reference point of zero gravitational potential energy to be the ground. Use any variable or symbol stated above along with the following as necessary: g.)   (a) What is the initial gravitational potential energy of the system? Ui =      (b) What is the final kinetic energy of the system? (Take the final state to be the moment before the mass m2 reaches the ground.)

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Chapter1: Units, Trigonometry. And Vectors
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Shown below is a box of mass m1 that sits on a frictionless incline at an angle above the horizontal ?. This box is connected by a relatively massless string, over a frictionless pulley, and finally connected to a box at rest over the ledge, labeled m2. If m1 and m2 are a height h above the ground and 
m2 > m1,
 solve the following. (Assume the reference point of zero gravitational potential energy to be the ground. Use any variable or symbol stated above along with the following as necessary: g.)
 
(a)
What is the initial gravitational potential energy of the system?
Ui = 
 
 
(b)
What is the final kinetic energy of the system? (Take the final state to be the moment before the mass m2 reaches the ground.)
0
m₁
m₂
Transcribed Image Text:0 m₁ m₂
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I've tried KE= (m1+m2)gh and m2gh but both of those did not work

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Shown below is a box of mass m1 that sits on a frictionless incline at an angle above the horizontal ?. This box is connected by a relatively massless string, over a frictionless pulley, and finally connected to a box at rest over the ledge, labeled m2. If m1 and m2 are a height h above the ground and 
m2 > m1,
 solve the following. (Assume the reference point of zero gravitational potential energy to be the ground. Use any variable or symbol stated above along with the following as necessary: g.)
 
(a)
What is the initial gravitational potential energy of the system?
Ui = 
 
 
(b)
What is the final kinetic energy of the system? (Take the final state to be the moment before the mass m2 reaches the ground.)
 
For kinetic Energy KE=(m1+m2)gh and KE=m2gh have not worked.
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