A 1000 kg satellite is in orbit a distance r = 6.5 x 106 m from...
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A 1000 kg satellite is in orbit a distance r = 6.5 x 106 m from the center of the Earth. Something completely stops the motion of the satellite, and it falls to the Earth. 1 The surface of the Earth is a distance R = 6.4 x 106m from the center of the satellite, and the mass of the Earth is m = 6 x 1024 kg. At what speed will the satellite strike the surface? Answer: 1387 m/s 2 If we assume that the acceleration of the satellite during its fall is a constant g= 9.8 m/s², at what speed will it strike the surface of the Earth? Answer: 1400 m/s Superman is standing on the surface of the Earth when he throws a ball straight up into the air that it is moving at 100 m/s when it hits a satellite that is moving in an orbit of radius r = 6.6 x 107 m. Ignore the effects of all other objects on the ball. The mass of the Earth is 6.00 x 10²4 kg. 3 How fast was the ball moving when it was 6.5 x 107 m from the center of the earth? A 1000 kg satellite is in orbit a distance r = 6.5 x 106 m from the center of the Earth. Something completely stops the motion of the satellite, and it falls to the Earth. 1 The surface of the Earth is a distance R = 6.4 x 106m from the center of the satellite, and the mass of the Earth is m = 6 x 1024 kg. At what speed will the satellite strike the surface? Answer: 1387 m/s 2 If we assume that the acceleration of the satellite during its fall is a constant g= 9.8 m/s², at what speed will it strike the surface of the Earth? Answer: 1400 m/s Superman is standing on the surface of the Earth when he throws a ball straight up into the air that it is moving at 100 m/s when it hits a satellite that is moving in an orbit of radius r = 6.6 x 107 m. Ignore the effects of all other objects on the ball. The mass of the Earth is 6.00 x 10²4 kg. 3 How fast was the ball moving when it was 6.5 x 107 m from the center of the earth?
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Solutions Given Mass of satellite m 1000 kg Altitude of satellite from h 1000 km 10 3 1000 m 10 6 m ... View the full answer
Related Book For
Differential Equations And Linear Algebra
ISBN: 9780134497181
4th Edition
Authors: C. Edwards, David Penney, David Calvis
Posted Date:
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