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Question

A solid cylinder of mass m is kept in balance on a fixed incline of angle α=37 with the help of a thread fastened to its jacket. The cylinder does not slip. What will be the value of force F that is required to keep the cylinder in balance when the thread is held vertically?


A
mg8
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B
2mg7
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C
3mg5
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D
3mg8
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Solution

The correct option is D 3mg8
For complete equilibrium of the solid cylinder,
Fnet=0, & τnet=0


Applying torque balance about point C:
τnet=0
τN+τmg+τf+τF=0
(Taking anticlockwise sense of rotation as +ve)
0+0+frFr=0
Fr=fr
F=f ...(i)

Applying translational equilibrium condition,
Component of F along the inclined plane is Fsinα and to inclined plane is Fcosα
N+Fcosα=mgcosα ...(ii)
f+Fsinα=mgsinα ...(iii)

From Eq.(i) & (iii),
Fsinα+F=mgsinα [f=F]
Putting α=37
F(35)+F=mg(35)
8F5=3mg5
F=3mg8

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