The feet of a standing person of mass m exert a force | StudySoup

Textbook Solutions for College Physics,

Chapter 5 Problem 5.41

Question

The feet of a standing person of mass m exert a force equal to mg on the fl oor, and the fl oor exerts an equal and opposite force upwards on the feet, which we call the normal force. During the extension phase of a vertical jump (see page 147), the feet exert a force on the fl oor that is greater than mg, so the normal force is greater than mg. As you learned in Chapter 4, we can use this result and Newtons second law to calculate the acceleration of the jumper: a Fnet/m (n mg)/m. Using energy ideas, we know that work is performed on the jumper to give him or her kinetic energy. But the normal force cant perform any work here because the feet dont undergo any displacement. How is energy transferred to the jumper?

Solution

Step 1 of 4)

The first step in solving 5 problem number 477 trying to solve the problem we have to refer to the textbook question: The feet of a standing person of mass m exert a force equal to mg on the fl oor, and the fl oor exerts an equal and opposite force upwards on the feet, which we call the normal force. During the extension phase of a vertical jump (see page 147), the feet exert a force on the fl oor that is greater than mg, so the normal force is greater than mg. As you learned in Chapter 4, we can use this result and Newtons second law to calculate the acceleration of the jumper: a Fnet/m (n mg)/m. Using energy ideas, we know that work is performed on the jumper to give him or her kinetic energy. But the normal force cant perform any work here because the feet dont undergo any displacement. How is energy transferred to the jumper?
From the textbook chapter Energy you will find a few key concepts needed to solve this.

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full solution

Title College Physics, 8 
Author Raymond A. Serway Chris Vuille, Jerry S. Faughn
ISBN 9780495386933

The feet of a standing person of mass m exert a force

Chapter 5 textbook questions

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