7.14 The static coefficient of friction is H, at A, B, and C (the three points of contact). (a) Assuming equilibrium, cakulate the normal and friction forces at A, B, and C. (b) What is the smallest value of µ̟ necessary for equilibrium? The uniform bar and the homogeneous cylinder each have a mass of 24 kg. 1.5m -0.333 m -1m Figure P7.14

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7.14
The static coefficient of friction is H, at A, B, and C (the three points of contact).
(a) Assuming equilibrium, cakulate the normal and friction forces at A, B, and C.
(b) What is the smallest value of µ̟ necessary for equilibrium?
The uniform bar and the homogeneous cylinder each have a mass of 24 kg.
Transcribed Image Text:7.14 The static coefficient of friction is H, at A, B, and C (the three points of contact). (a) Assuming equilibrium, cakulate the normal and friction forces at A, B, and C. (b) What is the smallest value of µ̟ necessary for equilibrium? The uniform bar and the homogeneous cylinder each have a mass of 24 kg.
1.5m
-0.333 m
-1m
Figure P7.14
Transcribed Image Text:1.5m -0.333 m -1m Figure P7.14
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