Solved: In Example 13.5 (Section 13.3) we ignored the | StudySoup

Textbook Solutions for Sears and Zemansky's University Physics with Modern Physics

Chapter 13 Problem 13.60

Question

In Example 13.5 (Section 13.3) we ignored the gravitational effects of the moon on a spacecraft en route from the earth to the moon. In fact, we must include the gravitational potential energy due to the moon as well. For this problem, you can ignore the motion of the earth and moon. (a) If the moon has radius and the distance between the centers of the earth and the moon is find the total gravitational potential energy of the particle earth and particlemoon systems when a particle with mass m is between the earth and the moon, and a distance r from the center of the earth. Take the gravitational potential energy to be zero when the objects are far from each other. (b) There is a point along a line between the earth and the moon where the net gravitational force is zero. Use the expression derived in part (a) and numerical values from Appendix F to find the distance of this point from the center of the earth. With what speed must a spacecraft be launched from the surface of the earth just barely to reach this point? (c) If a spacecraft were launched from the earths surface toward the moon with an initial speed of with what speed would it impact the moon?

Solution

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The first step in solving 13 problem number 60 trying to solve the problem we have to refer to the textbook question: In Example 13.5 (Section 13.3) we ignored the gravitational effects of the moon on a spacecraft en route from the earth to the moon. In fact, we must include the gravitational potential energy due to the moon as well. For this problem, you can ignore the motion of the earth and moon. (a) If the moon has radius and the distance between the centers of the earth and the moon is find the total gravitational potential energy of the particle earth and particlemoon systems when a particle with mass m is between the earth and the moon, and a distance r from the center of the earth. Take the gravitational potential energy to be zero when the objects are far from each other. (b) There is a point along a line between the earth and the moon where the net gravitational force is zero. Use the expression derived in part (a) and numerical values from Appendix F to find the distance of this point from the center of the earth. With what speed must a spacecraft be launched from the surface of the earth just barely to reach this point? (c) If a spacecraft were launched from the earths surface toward the moon with an initial speed of with what speed would it impact the moon?
From the textbook chapter Gravitation you will find a few key concepts needed to solve this.

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full solution

Title Sears and Zemansky's University Physics with Modern Physics 13 
Author Hugh D. Young; Roger A. Freedman; A. Lewis Ford
ISBN 9780321696861

Solved: In Example 13.5 (Section 13.3) we ignored the

Chapter 13 textbook questions

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