If the mass of the Earth is ... (see step #4) e. . increased by a factor of 2, then the F is by a factor of f. ... increased by a factor of 3, then the F is by a factor of g. . decreased by a factor of 4, then the F is by a factor of h. Discuss some evidence (data values) and reasoning in which you explain the logic behind your answers to parts e-g.

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From The Physics Classroom's Physics Interactive
http://www.physicsclassroom.com
If the mass of the Earth is ... (see step #4)
increased by a factor of 2, then the F is,
e. ..*
by a factor of
f. ... increased by a factor of 3, then the F is.
by a factor of
decreased by a factor of 4, then the F is
by a factor of
g-
...
h. Discuss some evidence (data values) and reasoning in which you explain the
logic behind your answers to parts e-g.
Conclusion:
Develop an equation (with a proportionality constant) that describes the relationship
between the gravitational force (F), the mass of the moon (M..), the mass of the planet
(M-), and the distance (d) of separation between the planet and the moon. Then
support the claim (i.e., the equation) with evidence and reasoning.
Transcribed Image Text:From The Physics Classroom's Physics Interactive http://www.physicsclassroom.com If the mass of the Earth is ... (see step #4) increased by a factor of 2, then the F is, e. ..* by a factor of f. ... increased by a factor of 3, then the F is. by a factor of decreased by a factor of 4, then the F is by a factor of g- ... h. Discuss some evidence (data values) and reasoning in which you explain the logic behind your answers to parts e-g. Conclusion: Develop an equation (with a proportionality constant) that describes the relationship between the gravitational force (F), the mass of the moon (M..), the mass of the planet (M-), and the distance (d) of separation between the planet and the moon. Then support the claim (i.e., the equation) with evidence and reasoning.
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