One than an oil company may discover new oil fields is by flying a balloon close to the 10° m, ground and measuring g very precisely. Since the density of oil is less than the density of rock, 0.8 x 103 kg/m³ and the density of the 5.5 x 103 kg/m³. The mass of the Earth is M = 6 × 1024 kg and = 6.4 x 106 m. By what fraction will the value of g decrease when way the value of g will decrease. Assume that there is a spherical oil field of radius r just below the surface. The density of oil is poil surrounding rock is Prock the radius of the Earth is R the balloon is just above the center of the oil field? (Hint: use A+B=C)

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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One way than an oil company may discover new oil fields is by flying a balloon close to the
ground and measuring g very precisely. Since the density of oil is less than the density of rock,
the value of g will decrease. Assume that there is a spherical oil field of radius r =
just below the surface. The density of oil is poil
surrounding rock is prock = 5.5 × 10³ kg/m³. The mass of the Earth is M = 6 × 1024 kg and
the radius of the Earth is R = 6.4 × 106 m. By what fraction will the value of g decrease when
the balloon is just above the center of the oil field? (Hint: use A+B=C)
10° m,
0.8 × 103 kg/m3 and the density of the
3
Transcribed Image Text:One way than an oil company may discover new oil fields is by flying a balloon close to the ground and measuring g very precisely. Since the density of oil is less than the density of rock, the value of g will decrease. Assume that there is a spherical oil field of radius r = just below the surface. The density of oil is poil surrounding rock is prock = 5.5 × 10³ kg/m³. The mass of the Earth is M = 6 × 1024 kg and the radius of the Earth is R = 6.4 × 106 m. By what fraction will the value of g decrease when the balloon is just above the center of the oil field? (Hint: use A+B=C) 10° m, 0.8 × 103 kg/m3 and the density of the 3
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