The center of a moon of mass m is a distance D from the center of a planet of mass M. At some distance x from the center of the planet, along a line connecting the centers of planet and moon, the net force on an object will be zero. Part (a)  Derive an expression for x.  Part (b)  If the net force is zero a distance 2/3 D from the planet, what is the ratio R of the mass of the planet to the mass of the moon, M/m?

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 49P: In Figure P1.49, find (a) the side opposite , (b) the side adjacent to . (c) cos , (d) sin , and (c)...
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The center of a moon of mass m is a distance D from the center of a planet of mass M. At some distance x from the center of the planet, along a line connecting the centers of planet and moon, the net force on an object will be zero.

Part (a)  Derive an expression for x

Part (b)  If the net force is zero a distance 2/3 D from the planet, what is the ratio R of the mass of the planet to the mass of the moon, M/m

M
x = D
M
x = D
1
x = D
m
1+
M
т
т+ 1
1
M
x = D –
m
x = D
M
x = D
m
1+
M
M+m
Transcribed Image Text:M x = D M x = D 1 x = D m 1+ M т т+ 1 1 M x = D – m x = D M x = D m 1+ M M+m
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