The fraction of rope can hang over the edge of the table without the rope sliding is .
Further explanation:
The rope, of uniform mass, is hanging over the edge of the table. The rope is hanging without sliding.
Concept:
Let us consider,
The mass per unit length of the rope is .
The total length of the rope is .
The total mass of rope is
…… (1)
Consider is the fraction of length of the rope hanging over the edge of the table.
The length of the rope hanging over the edge of the table is:
…… (2)
The mass of rope hang over the edge of the table is:
Substitute the value of from equation (1) in the above equation.
…… (3)
The remaining mass of rope resting on the top of the table is:
Substitute the value of from equation (1) and from equation (3) in the above equation.
Simplify above expression.
…… (4)
From free body diagram of hanging mass of rope, the net force on the rope i.e., horizontal and vertical components of the net force acting on the rope is zero.
The equilibrium condition for horizontal component of force on rope is:
The equilibrium condition for vertical component of the force on the rope is:
At equilibrium, the horizontal component of net force is:
Simplify the above equation,
Substitute the value of from equation (3) in above equation.
…… (5)
From the free body diagram, the normal force acting on the rope is balanced by the weight on the part of the rope lying on the top of the table.
At equilibrium, the vertical component of net force is:
Here, is the normal reaction on the table is balanced by weight of the rope which is resting on the table.
Substitute the value of from equation (4) in above equation.
…… (6)
The friction force acting on the is:
Here, is the coefficient of static friction.
Substitute the value of from equation (6) in above equation.
…… (7)
Substitute the value of from equation (7) in above equation.
…… (8)
Equating equation (5) and equation (8),
Rearrange and simplify the above expression.
Thus, the fraction of rope can hang over the edge of the table without the rope sliding is .
Learn more:
1. Average translational kinetic energy: brainly.com/question/9078768
2. Acceleration of body by considering friction: brainly.com/question/7031524
3. Conservation of energy brainly.com/question/3943029
Answer detail:
Grade: High school
Subject: Physics
Chapter: Friction
Keywords:
Rope on the table, fraction of rope, length, rope without slide, coefficient of friction, static friction, uniformly massive rope, weight, equilibrium condition, mu/1+mu, mu/(1+mu), mass per unit length.