College Physics
College Physics
2nd Edition
ISBN: 9780840058195
Author: Giordano, Nicholas J.
Publisher: Cengage Learning
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Chapter 3, Problem 43P

(a)

To determine

The co-efficient of static friction between the floor and the refrigerator.

(a)

Expert Solution
Check Mark

Answer to Problem 43P

The co-efficient of static friction between the floor and the refrigerator is 0.18.

Explanation of Solution

Write the expression for maximum force of static friction.

  Fs=μsN        (I)

Here, Fs is the static frictional force, μs is the co-efficient of static friction between the floor and the refrigerator, and N is the normal force exerted on the refrigerator.

Write the expression for normal force acting on the downward force of gravity on the refrigerator.

  N=mg        (II)

Here, m is the mass of the refrigerator, g is the acceleration due to gravity, and N is the normal force.

Substitute equation (II) in equation (I).

  Fs=μsmgμs=Fsmg

Conclusion:

Substitute 350N for Fs, 200kg for m, and 9.8m/s2 for g in above equation to find μs.

  μs=350N(200kg)(9.8m/s2)=0.18

Therefore, the co-efficient of static friction between the floor and the refrigerator is 0.18.

(b)

To determine

The co-efficient of kinetic friction between the refrigerator and the floor.

(b)

Expert Solution
Check Mark

Answer to Problem 43P

The co-efficient of kinetic friction between the refrigerator and the floor is 0.14.

Explanation of Solution

After the refrigerator starts moving, there is acceleration and the frictional becomes kinetic friction.

Write the expression from Newton’s second law of motion.

  F=maFmove+Fk=ma        (III)

Here, Fmove is the force exerted on the moving refrigerator, Fk is the kinetic frictional force, and a is the acceleration of the refrigerator.

Write the expression for kinetic frictional force.

  Fk=μkmg        (IV)

Here, μk is the co-efficient of kinetic friction between the refrigerator and the floor.

Substitute equation (IV) in equation (III).

  Fmoveμkmg=maμkmg=Fmovemaμk=Fmovemamg        (V)

Write the expression from kinematics equation of motion.

  v=v0+at        (VI)

Here, v is the speed of the refrigerator, v0 is the initial speed, and t is the time period.

Substitute 0 for v0 and rewrite the above equation.

  v=ata=vt        (VII)

Conclusion:

Substitute 2.0m/s for v and 5.0s for t in equation (VII) to find a.

  a=2.0m/s5.0s=0.4m/s2

Substitute 0.4m/s2 for a, 350N for Fmove, 200kg for m, and 9.8m/s2 for g in equation (V) to find μk.

  μk=350N(200kg)(0.4m/s2)(200kg)(9.8m/s2)=0.14

Therefore, the co-efficient of kinetic friction between the refrigerator and the floor is 0.14.

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Chapter 3 Solutions

College Physics

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