Newton's law of universal gravitation states that the force of gravity between two bodies is proportional to the product of the two masses (mı and m2) and inversely proportional to the square of their separation (r). For each scenario described below, explain how the force of gravity would change. Say something like "the force of gravity would double". (a) The separation between the two bodies is increased by a factor of 10. (b) The separation between the two bodies is decreased by a factor of 10. (c) Both masses are tripled, and the separation is increased by a factor of 3. (d) The separation is increased by a factor of 5.65 and one of the masses is increased by a factor of 2.55.

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Chapter13: Gravitation
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Problem 2CQ: In the law of universal gravitation, Newton assumed that the force was proportional to the product...
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Problem 24
Newton's law of universal gravitation states that the force of gravity between two bodies
is proportional to the product of the two masses (m1 and m2) and inversely proportional
to the square of their separation (r). For each scenario described below, explain how the
force of gravity would change. Say something like "the force of gravity would double".
(a) The separation between the two bodies is increased by a factor of 10.
(b) The separation between the two bodies is decreased by a factor of 10.
(c) Both masses are tripled, and the separation is increased by a factor of 3.
(d) The separation is increased by a factor of 5.65 and one of the masses is
increased by a factor of 2.55.
Transcribed Image Text:Problem 24 Newton's law of universal gravitation states that the force of gravity between two bodies is proportional to the product of the two masses (m1 and m2) and inversely proportional to the square of their separation (r). For each scenario described below, explain how the force of gravity would change. Say something like "the force of gravity would double". (a) The separation between the two bodies is increased by a factor of 10. (b) The separation between the two bodies is decreased by a factor of 10. (c) Both masses are tripled, and the separation is increased by a factor of 3. (d) The separation is increased by a factor of 5.65 and one of the masses is increased by a factor of 2.55.
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