Physics: Principles with Applications
Physics: Principles with Applications
6th Edition
ISBN: 9780130606204
Author: Douglas C. Giancoli
Publisher: Prentice Hall
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Chapter 4, Problem 49P
To determine

The average retarding force on the sled which reaches the bottom of a hill and travels a horizontal straightaway to a stop.

Expert Solution & Answer
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Answer to Problem 49P

Solution:

The average retarding force on the sled was found to be 1.20 × 102N and it acts opposite to the direction of the velocity of the sled.

Explanation of Solution

The sled reaches the bottom of the hill with a velocity v0 and travels a distance s horizontally, and comes to rest. The force of friction acting between the sled and the surface on which it skids exerts a retarding force on the sled, which brings it to rest.

Given:

The initial velocity of the sled v0=10.0 m/s

The final velocity of the sled v=0 m/s

The distance traveled by the sled before coming to rest s=25.0 m

Mass of the child and the sled m=60.0 kg.

Formula used:

      v2=v02+2as

      Favg=ma

Here, the acceleration of the sled is a and the average force is Favg.

Calculation:

Calculate the average acceleration of the sled as it comes to rest.

Substitute the given values in the equation of motion,

v2=v02+2as(0 m/s)2=(10.0 m/s)+2a(25.0 m)a=2.00 m/s2

Calculate the value of the average retarding force acting on the sled using Newton’s second law.

Favg=ma=(60.0 kg)(2.00 m/s2)=1.20×102N

The negative sign shows that the force acts opposite to the direction of motion of the sled.

Chapter 4 Solutions

Physics: Principles with Applications

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Newton's Second Law of Motion: F = ma; Author: Professor Dave explains;https://www.youtube.com/watch?v=xzA6IBWUEDE;License: Standard YouTube License, CC-BY