The drawing (not to scale) shows one alignment of the sun, earth, and moon. The gravitational force F SM that the sun exerts on the moon is perpendicular to the force F EM that the earth exerts on the moon. The masses are: mass of sun = 1.99 x 1030 kg, mass of earth = 5.98 x 1024 kg, mass of moon = 7.35 x 1022 kg. The distances shown in the drawing are rsM = 1.50 x 1011 m and rEM = 3.85 x 10° m. Determine the magnitude of the net gravitational force on the moon. SM Moon FSM Sun FEM TEM Earth

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter11: Gravity, Planetary Orbits, And The Hydrogen Atom
Section: Chapter Questions
Problem 47P: Let gM represent the difference in the gravitational fields produced by the Moon at the points on...
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The drawing (not to scale) shows one alignment of the sun, earth, and moon. The gravitational force F
SM that the sun exerts on
the moon is perpendicular to the force F EM that the earth exerts on the moon. The masses are: mass of sun = 1.99 × 1030 kg, mass
of earth = 5.98 x 1024 kg, mass of moon = 7.35 x 1022 kg. The distances shown in the drawing are rsM = 1.50 x 1011 m and rEM =
3.85 x 10° m. Determine the magnitude of the net gravitational force on the moon.
rSM
Moon
Sun
FEM
Earth
Number
i
Units
Transcribed Image Text:The drawing (not to scale) shows one alignment of the sun, earth, and moon. The gravitational force F SM that the sun exerts on the moon is perpendicular to the force F EM that the earth exerts on the moon. The masses are: mass of sun = 1.99 × 1030 kg, mass of earth = 5.98 x 1024 kg, mass of moon = 7.35 x 1022 kg. The distances shown in the drawing are rsM = 1.50 x 1011 m and rEM = 3.85 x 10° m. Determine the magnitude of the net gravitational force on the moon. rSM Moon Sun FEM Earth Number i Units
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