A 56.25 kg crate slides down a 36.87° slope (inclined plane) that is 32.00 m in length and has a kinetic friction coefficient of 0.3625. The crate is given a downward speed of only 7.500 m/s as it starts down from the top of the slope. Applying the principle of the conservation of mechanical energy in the presence of dissipative forces, determine its final speed as it reaches the bottom of the slope.
A 56.25 kg crate slides down a 36.87° slope (inclined plane) that is 32.00 m in length and has a kinetic friction coefficient of 0.3625. The crate is given a downward speed of only 7.500 m/s as it starts down from the top of the slope. Applying the principle of the conservation of mechanical energy in the presence of dissipative forces, determine its final speed as it reaches the bottom of the slope.
College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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(1.) A 56.25 kg crate slides down a 36.87° slope (inclined plane) that is 32.00 m in length and has a kinetic friction coefficient of 0.3625. The crate is given a downward speed of only 7.500 m/s as it starts down from the top of the slope. Applying the principle of the conservation of mechanical energy in the presence of dissipative forces, determine its final speed as it reaches the bottom of the slope.
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