A satellite is in a circular orbit around the Earth at an altitude of 1.72 x 10° m. (a) Find the period of the orbit. (Hint: Modify Kepler's third law so it is suitable for objects orbiting the Earth rather than the Sun. The radius of the Earth is 6.38 x 10° m, and the mass of the Earth is 5.98 x 1024 kg.) 7017 |x Modify the equation in the textbook for the period of the Earth orbiting around the Sun so it can be applied to the period of a satellite in orbit around the Earth. h (b) Find the speed of the satellite. 7.017 km/s (c) Find the acceleration of the satellite. 6.07 V m/s? toward the center of the earth

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Chapter7: Gravity
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A satellite is in a circular orbit around the Earth at an altitude of 1.72 x 106 m.
(a) Find the period of the orbit. (Hint: Modify Kepler's third law so it is suitable for objects orbiting the Earth rather than the Sun. The radius of the Earth is 6.38 x 10° m, and the mass of the Earth is
5.98 x 1024 kg.)
7017
Modify the equation in the textbook for the period of the Earth orbiting around the Sun so it can be applied to the period of a satellite in orbit around the Earth. h
(b) Find the speed of the satellite.
7.017
km/s
(c) Find the acceleration of the satellite.
6.07
V m/s toward the center of the earth
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Transcribed Image Text:A satellite is in a circular orbit around the Earth at an altitude of 1.72 x 106 m. (a) Find the period of the orbit. (Hint: Modify Kepler's third law so it is suitable for objects orbiting the Earth rather than the Sun. The radius of the Earth is 6.38 x 10° m, and the mass of the Earth is 5.98 x 1024 kg.) 7017 Modify the equation in the textbook for the period of the Earth orbiting around the Sun so it can be applied to the period of a satellite in orbit around the Earth. h (b) Find the speed of the satellite. 7.017 km/s (c) Find the acceleration of the satellite. 6.07 V m/s toward the center of the earth Need Help? Read It Master It
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