•C W The man in the diagram is trying to move a large box by pushing on it with a force, P. The box weighs W-250 N and its centre of gravity is located in the centre of the box (point C). Given: The coefficient of static friction between the box and the floor is μs -0.3 Dimensions: a 1.8m, b=0.6m, h= 0.9 m We want to know whether the box will move if P = 70 N.

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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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P
•C
W
The man in the diagram is trying to move a large box by pushing on it with a force, P. The box
weighs W = 250 N and its centre of gravity is located in the centre of the box (point C).
Given:
The coefficient of static friction between the box and the floor is μs = 0.3
Dimensions: a = 1.8m, b=0.6m, h= 0.9 m
We want to know whether the box will move if P = 70 N.
Scenario: Box begins to tip
Now, consider the case where force P causes the box to begin tip.
Select one:
a. The applied force, P, is greater than the static friction force, F,
resisting it.
b. The normal force, N, required for equilibrium is not located
directly under the weight force W.
c. The normal force, N, is required for equilibrium is not located
under the box.
Transcribed Image Text:Question P •C W The man in the diagram is trying to move a large box by pushing on it with a force, P. The box weighs W = 250 N and its centre of gravity is located in the centre of the box (point C). Given: The coefficient of static friction between the box and the floor is μs = 0.3 Dimensions: a = 1.8m, b=0.6m, h= 0.9 m We want to know whether the box will move if P = 70 N. Scenario: Box begins to tip Now, consider the case where force P causes the box to begin tip. Select one: a. The applied force, P, is greater than the static friction force, F, resisting it. b. The normal force, N, required for equilibrium is not located directly under the weight force W. c. The normal force, N, is required for equilibrium is not located under the box.
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