Objects with masses of 242 kg and 440 kg are separated by 0.474 m. A 75.7 kg mass is placed midway between them. 440 kg 242 kg 75.7 kg -0.474 m Find the magnitude of the net gravitational force exerted by the two larger masses on the 75.7 kg mass. The value of the universal gravi- tational constant is 6.672 × 10−¹¹ N · m²/kg². Answer in units of N. 017 (part 2 of 2) Leaving the distance between the 242 kg and the 440 kg masses fixed, at what distance from the 440 kg mass (other than infinitely remote ones) does the 75.7 kg mass experience a net force of zero? Answer in units of m.

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016 (part 1 of 2)
Objects with masses of 242 kg and 440 kg
are separated by 0.474 m. A 75.7 kg mass is
placed midway between them.
440 kg
242 kg
75.7 kg
0.474 m
Find the magnitude of the net gravitational
force exerted by the two larger masses on the
75.7kg mass. The value of the universal gravi-
tational constant is 6.672 × 10-¹¹ N·m²/kg².
Answer in units of N.
017 (part 2 of 2)
Leaving the distance between the 242 kg and
the 440 kg masses fixed, at what distance from
the 440 kg mass (other than infinitely remote
ones) does the 75.7 kg mass experience a net
force of zero?
Answer in units of m.
Transcribed Image Text:016 (part 1 of 2) Objects with masses of 242 kg and 440 kg are separated by 0.474 m. A 75.7 kg mass is placed midway between them. 440 kg 242 kg 75.7 kg 0.474 m Find the magnitude of the net gravitational force exerted by the two larger masses on the 75.7kg mass. The value of the universal gravi- tational constant is 6.672 × 10-¹¹ N·m²/kg². Answer in units of N. 017 (part 2 of 2) Leaving the distance between the 242 kg and the 440 kg masses fixed, at what distance from the 440 kg mass (other than infinitely remote ones) does the 75.7 kg mass experience a net force of zero? Answer in units of m.
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