[Example] A block of weight G=100N rests on an inclined plane. The inclined angle is 45°. The coefficient of static friction between the block and the inclined plane is µ=0.58. Determine the range of horizontal force F, to hold the block stationary. F 45°

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Chapter1: Units, Trigonometry. And Vectors
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[Example] A block of weight G=100N rests on an inclined plane. The inclined angle is 45°. The coefficient of static friction between the block and the inclined plane is u-0.58. Determine the range of horizontal force F, to hold the block stationary. F 45

 

 

 

 

[Example] The two ends of bar AB slides along the vertical and horizontal surfaces. MA = 1,, MB = 1,0 = ot(@= const.) Determine the motion equation, the magnitude of the velocity and acceleration for point M. B

Assignment 3:
Passport Name:
Major:
[Example] A block of weight G=100N rests on an inclined plane. The inclined angle
is 45°. The coefficient of static friction between the block and the inclined plane is
µ=0.58. Determine the range of horizontal force F, to hold the block stationary.
F-
45°
[Example] The two ends of bar AB slides along the vertical and horizontal surfaces.
MA =1,,MB =1,,9= @t(@= const.) Determine the motion equation, the magnitude of
the velocity and acceleration for point M.
A
В
Transcribed Image Text:Assignment 3: Passport Name: Major: [Example] A block of weight G=100N rests on an inclined plane. The inclined angle is 45°. The coefficient of static friction between the block and the inclined plane is µ=0.58. Determine the range of horizontal force F, to hold the block stationary. F- 45° [Example] The two ends of bar AB slides along the vertical and horizontal surfaces. MA =1,,MB =1,,9= @t(@= const.) Determine the motion equation, the magnitude of the velocity and acceleration for point M. A В
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