A box of 20 kg mass is pulled up an inclined plane at a constant velocity of 5 m/s as shown in Figure 2. The plane is inclined at 30° to the horizontal. The coefficient of friction between the box and inclined surface is 0.2. e a) draw a free body diagram of the system b) calculate the power of force F c) if the box is pulled 20 m up the incline calculate the work done against friction and against - gravity 5 m/se 20

Glencoe Physics: Principles and Problems, Student Edition
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ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter10: Work, Energy And Machines
Section10.1: Work And Energy
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A box of 20 kg mass is pulled up an inclined plane at a constant velocity of 5 m/s as shown in
Figure 2. The plane is inclined at 30° to the horizontal. The coefficient of friction between the
box and inclined surface is 0.2. e
a) draw a free body diagram of the system
b) calculate the power of force F
c) if the box is pulled 20 m up the incline calculate the work done against friction and against -
gravity
5 m/se
20<kg+
O: = 0.2 -
30°
Figure 2 -
Transcribed Image Text:A box of 20 kg mass is pulled up an inclined plane at a constant velocity of 5 m/s as shown in Figure 2. The plane is inclined at 30° to the horizontal. The coefficient of friction between the box and inclined surface is 0.2. e a) draw a free body diagram of the system b) calculate the power of force F c) if the box is pulled 20 m up the incline calculate the work done against friction and against - gravity 5 m/se 20<kg+ O: = 0.2 - 30° Figure 2 -
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