A horizontal stick of mass m has its left end attached to a pivot on a plane Fig. 2.35 inclined at an angle 0, while its right end rests on the top of a cylinder also of mass m which in turn rests on the plane, as shown in Fig. 2.36. The coefficient of friction between the cylinder and both the stick and the plane is u. (a) Assuming that the system is at rest, what is the normal force from the plane on the cylinder? m LL m
A horizontal stick of mass m has its left end attached to a pivot on a plane Fig. 2.35 inclined at an angle 0, while its right end rests on the top of a cylinder also of mass m which in turn rests on the plane, as shown in Fig. 2.36. The coefficient of friction between the cylinder and both the stick and the plane is u. (a) Assuming that the system is at rest, what is the normal force from the plane on the cylinder? m LL m
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Prob 2.34

Transcribed Image Text:(b) What is the smallest value of u (in terms of 0) for which the
system doesn't slip anywhere?

Transcribed Image Text:2.34. Stick and a cylinder **
A horizontal stick of mass m has its left end attached to a pivot on a plane
inclined at an angle 0, while its right end rests on the top of a cylinder
also of mass m which in turn rests on the plane, as shown in Fig. 2.36.
The coefficient of friction between the cylinder and both the stick and
the plane is p.
(a) Assuming that the system is at rest, what is the normal force from
the plane on the cylinder?
Fig. 2.35
Fig. 2.36
m
LL
LL
m
0
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