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What is the AV required to go to the moon from (a) a 185-km altitude circular Earth parking orbit, (b) the perigee of a

What is the AV required to go to the moon from (a) a 185-km altitude circular Earth parking orbit, (b) the

What is the AV required to go to the moon from (a) a 185-km altitude circular Earth parking orbit, (b) the perigee of a geostationary transfer orbit of dimension 6563 km x 42,164 km, and (c) geostationary orbit?

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SOLUTION To calculate the required deltav V to go to the Moon from different starting points we need to consider the gravitational potential energy and the velocity changes involved Ill provide the ca... blur-text-image

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