In the figure here, a block of ice slides down a frictionless ramp at angle 0=59.0° while an ice worker pulls on the block (via a rope) with a force that has a magnitude of 57.0 N and is directed up the ramp. As the block slides down through distance d = 0.440 m along the ramp, its kinetic energy increases by 80.0 J. How much greater would its kinetic energy have been if the rope had not been attached to the block? e F₁ Number 92.9 Unit J

College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter5: Energy
Section: Chapter Questions
Problem 64AP: A boy starts at rest and slides down a frictionless slide as in Figure P5.64. The bottom of the...
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In the figure here, a block of ice slides down a frictionless ramp at angle 0=59.0° while an ice worker pulls on the block (via a rope) with
a force that has a magnitude of 57.0 N and is directed up the ramp. As the block slides down through distance d = 0.440 m along the
ramp, its kinetic energy increases by 80.0 J. How much greater would its kinetic energy have been if the rope had not been attached to
the block?
e
F₁
Number
92.9
Unit
J
Transcribed Image Text:In the figure here, a block of ice slides down a frictionless ramp at angle 0=59.0° while an ice worker pulls on the block (via a rope) with a force that has a magnitude of 57.0 N and is directed up the ramp. As the block slides down through distance d = 0.440 m along the ramp, its kinetic energy increases by 80.0 J. How much greater would its kinetic energy have been if the rope had not been attached to the block? e F₁ Number 92.9 Unit J
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