To place a communications satellite into a geosynchronous orbit at an altitude of 22,240 mi above the surface of the earth, the satellite is first released from a space shuttle, which is in a circular orbit at an altitude of 185 mi, and is then propelled by an upper-stage booster to its final altitude. As the satellite passes through A, the booster's motor is fired to insert the satellite into an elliptic transfer orbit. The booster is again fired at B to insert the satellite into a geosynchronous orbit. The second firing increases the speed of the satellite by 4870 ft/s. 22.240 mi 185 mi B R=3960 mi/ Determine the speed of the satellite as it approaches Bon the elliptic transfer orbit. (You must provide an answer before moving to the next part.) The speed of the satellite as it approaches B is 5214.24 ft/s.

Principles of Physics: A Calculus-Based Text
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Chapter11: Gravity, Planetary Orbits, And The Hydrogen Atom
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"The speed of the satellite as it approaches is 5214.24" is correct. use it to solve other part

To place a communications satellite into a geosynchronous orbit at an altitude of 22,240 mi above the surface of the earth,
the satellite is first released from a space shuttle, which is in a circular orbit at an altitude of 185 mi, and is then propelled
by an upper-stage booster to its final altitude. As the satellite passes through A, the booster's motor is fired to insert the
satellite into an elliptic transfer orbit. The booster is again fired at B to insert the satellite into a geosynchronous orbit. The
second firing increases the speed of the satellite by 4870 ft/s.
22.240 mi
185 mi
B
R=3960 mi/
Determine the speed of the satellite as it approaches Bon the elliptic transfer orbit. (You must provide an answer before moving to the
next part.)
The speed of the satellite as it approaches B is 5214.24
ft/s.
Transcribed Image Text:To place a communications satellite into a geosynchronous orbit at an altitude of 22,240 mi above the surface of the earth, the satellite is first released from a space shuttle, which is in a circular orbit at an altitude of 185 mi, and is then propelled by an upper-stage booster to its final altitude. As the satellite passes through A, the booster's motor is fired to insert the satellite into an elliptic transfer orbit. The booster is again fired at B to insert the satellite into a geosynchronous orbit. The second firing increases the speed of the satellite by 4870 ft/s. 22.240 mi 185 mi B R=3960 mi/ Determine the speed of the satellite as it approaches Bon the elliptic transfer orbit. (You must provide an answer before moving to the next part.) The speed of the satellite as it approaches B is 5214.24 ft/s.
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