A non-rotating frame of reference placed at the center of the Sun is very nearly an inertial one. Why is it not exactly an inertial frame?
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A non-rotating frame of reference placed at the center of the Sun is very nearly an inertial one. Why is it not exactly an inertial frame?
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- An asteroid, whose mass is 2.7 × 10-4 times the mass of Earth, revolves in a circular orbit around the Sun at a distance that is 1.6 times the Earth's distance from the Sun. (a) Calculate the period of revolution of the asteroid in years. (b) What is the ratio of the kinetic energy of the asteroid to the kinetic energy of Earth?An asteroid, whose mass is 1.9 × 10-4 times the mass of Earth, revolves in a circular orbit around the Sun at a distance that is 3.2 times the Earth's distance from the Sun. (a) Calculate the period of revolution of the asteroid in years. (b) What is the ratio of the kinetic energy of the asteroid to the kinetic energy of Earth?The mass of the Hubble spacecraft is 1.11 x 10ʻkg. Determine the weight of the spacecraft at the orbital altitude, which is 560km above the Earth's surface. The mass of the Earth is 5.972 x 1024kg and the radius of the Earth is 6370 km.
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