Engineering 3.1.10 The average person can jump off the ground with a velocity of 7 mph without fear of leaving the planet. However, if an astronaut jumps with this velocity while standing on Halley's Comet, will the astronaut ever come back down? Create a program that allows the user to input a launch velocity (in mph) from the surface of Halley's Comet and determine whether a jumper will return to the surface. If not, the program should calculate how much more massive the comet must be in order to return the jumper to the surface. Hint: Escape velocity is vecape GM , where G = 6.67 x 10-1"N m²/kg² is R the gravitational constant, M = 1.3 × 1022kg is the mass of Halley's comet, and R = 1.153 x 10°m is its radius.

Computer Networking: A Top-Down Approach (7th Edition)
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Author:James Kurose, Keith Ross
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Engineering 3.1.10 The average person can jump off the ground with a velocity of 7 mph
without fear of leaving the planet. However, if an astronaut jumps with this velocity while
standing on Halley's Comet, will the astronaut ever come back down? Create a program that
allows the user to input a launch velocity (in mph) from the surface of Halley's Comet and
determine whether a jumper will retum to the surface. If not, the program should calculate
how much more massive the comet must be in order to return the jumper to the surface.
Hint: Escape velocity is vecape
,GM
, where G = 6.67 x 10o-1"Nm²/kg² is
the gravitational constant, M = 1.3 x 1022 kg is the mass of Halley's comet, and
R = 1.153 x 10° m is its radius.
Transcribed Image Text:Engineering 3.1.10 The average person can jump off the ground with a velocity of 7 mph without fear of leaving the planet. However, if an astronaut jumps with this velocity while standing on Halley's Comet, will the astronaut ever come back down? Create a program that allows the user to input a launch velocity (in mph) from the surface of Halley's Comet and determine whether a jumper will retum to the surface. If not, the program should calculate how much more massive the comet must be in order to return the jumper to the surface. Hint: Escape velocity is vecape ,GM , where G = 6.67 x 10o-1"Nm²/kg² is the gravitational constant, M = 1.3 x 1022 kg is the mass of Halley's comet, and R = 1.153 x 10° m is its radius.
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