Figure 2 shows a 40 kg crate that is pushed with constant velocity at a distance 8.0 m along a 30° incline plane by the horizontal force of 500N. The coefficient of kinetic friction between the crate and the incline is, uk0.42. Assume the crate is moving towards right direction, calculate the work done by the applied force, the frictional force and the gravitational force. 40 kg 30°

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Chapter1: Units, Trigonometry. And Vectors
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Figure 2 shows a 40 kg crate that is pushed with constant velocity at a distance 8.0 m along a 30° incline
plane by the horizontal force of 500N. The coefficient of kinetic friction between the crate and the incline
is, uk 0.42. Assume the crate is moving towards right direction, calculate the work done by the applied
force, the frictional force and the gravitational force.
40 kg
F -
30°
Figure 2
Page 1 of 1
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100%
66 words
English (Malaysia)
9:08 AM
A O 4) 03/02/2021
CS
58
Transcribed Image Text:AutoSave Off Document1 - Word O Search retroget R File Home Insert Design Layout References Mailings Review View Help A Share P Comments X Cut P Find - AaBbCcDc AaBbCcDc AaBbC AaBbCcC AaB I No Spac. Heading 1 Calibri (Body) v 11 - A A" Aa- Ap BCopy Paste Replace BIU - ab x, x A - er A v I Normal Heading 2 Dictate Sensitivity Title S Format Painter A Select Clipboard Font Paragraph Styles Editing Voice Sensitivity Figure 2 shows a 40 kg crate that is pushed with constant velocity at a distance 8.0 m along a 30° incline plane by the horizontal force of 500N. The coefficient of kinetic friction between the crate and the incline is, uk 0.42. Assume the crate is moving towards right direction, calculate the work done by the applied force, the frictional force and the gravitational force. 40 kg F - 30° Figure 2 Page 1 of 1 D Focus 100% 66 words English (Malaysia) 9:08 AM A O 4) 03/02/2021 CS 58
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