In Figure (a), you pull upward on a rope that is attached to a cylinder on a vertical rod. Because the cylinder fits tightly on the rod, the cylinder slides along the rod with considerable friction. Your force does work (W = + 100 J) on the cylinder-rod-Earth system (Figure (b)). An "energy statement" for the system is shown in Figure (c): the kinetic energy K increases by 50 J, and the gravitational potential energy Ug increases by 20 J.

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Chapter5: Energy
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Problem 8P: A block of mass m = 2.50 kg is pushed a distance d = 2.20 m along a frictionless horizontal table by...
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In Figure (a), you pull upward on a rope that is attached to a cylinder on a vertical rod. Because the cylinder fits tightly on the rod, the
cylinder slides along the rod with considerable friction. Your force does work (W = + 100 J) on the cylinder-rod-Earth system (Figure
(b)). An "energy statement" for the system is shown in Figure (c): the kinetic energy K increases by 50 J, and the gravitational potential
energy Ug increases by 20 J.
Work W
tf#
System
Earth
(b)
Rod
Rope
Cylinder
(a)
W-+100 J
System's energies:
AK-+503
AU-+20 J
AE=?
(c)
The only other change in energy within the system is for the thermal energy Eth. What is the change AEth?
Transcribed Image Text:In Figure (a), you pull upward on a rope that is attached to a cylinder on a vertical rod. Because the cylinder fits tightly on the rod, the cylinder slides along the rod with considerable friction. Your force does work (W = + 100 J) on the cylinder-rod-Earth system (Figure (b)). An "energy statement" for the system is shown in Figure (c): the kinetic energy K increases by 50 J, and the gravitational potential energy Ug increases by 20 J. Work W tf# System Earth (b) Rod Rope Cylinder (a) W-+100 J System's energies: AK-+503 AU-+20 J AE=? (c) The only other change in energy within the system is for the thermal energy Eth. What is the change AEth?
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