Exoplanet Taphao Keow is a Jupiter-sized planet orbiting another star. It has a mass of approximately 1×10*27[kg]. Its actual radius is not currently known, but we do know that the radius of Jupiter is 7×107[m]. Question: If Taphao Keow had a radius that was the same radius as Jupiter, what would it's local surface gravitational acceleration be? O 266 [m/s²] O 124 [m/s²] O 70 [m/s²] O 24 [m/s²] O 14 [m/s²] It would have a gravitational acceleration far larger than any of the other answers (many orders of magnitude larger) O It would have a gravitational acceleration far smaller than any of the other answers (many orders of magnitude larger)

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter11: Gravity, Planetary Orbits, And The Hydrogen Atom
Section: Chapter Questions
Problem 6OQ: Suppose the gravitational acceleration at the surface of a certain moon A of Jupiter is 2 m/s2. Moon...
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Exoplanet Taphao Keow is a Jupiter-sized planet orbiting another star. It has a mass
of approximately 1×10+27[kg]. Its actual radius is not currently known, but we do
know that the radius of Jupiter is 7×107[m].
Question: If Taphao Keow had a radius that was the same radius as Jupiter, what
would it's local surface gravitational acceleration be?
O 266 [m/s2]
124 [m/s²]
70 [m/s²]
O 24 [m/s²]
O 14 [m/s²]
It would have a gravitational acceleration far larger than any of the other
answers (many orders of magnitude larger)
It would have a gravitational acceleration far smaller than any of the other
answers (many orders of magnitude larger)
Transcribed Image Text:Exoplanet Taphao Keow is a Jupiter-sized planet orbiting another star. It has a mass of approximately 1×10+27[kg]. Its actual radius is not currently known, but we do know that the radius of Jupiter is 7×107[m]. Question: If Taphao Keow had a radius that was the same radius as Jupiter, what would it's local surface gravitational acceleration be? O 266 [m/s2] 124 [m/s²] 70 [m/s²] O 24 [m/s²] O 14 [m/s²] It would have a gravitational acceleration far larger than any of the other answers (many orders of magnitude larger) It would have a gravitational acceleration far smaller than any of the other answers (many orders of magnitude larger)
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