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Deriving the Acceleration due to Gravity on any Planet and specifically Mt. Everest
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Derive the acceleration due to gravity on any planet. Find the acceleration due to gravity on Mt. Everest. And determine how much higher you could jump on the top of Mt. Everest!
0:00 Intro
0:08 Deriving the acceleration due to gravity on any planet
1:54 Finding the acceleration due to gravity on Mt. Everest
3:16 How much higher could you jump on the top of Mt. Everest?
Next Video: Altitude of Geosynchronous Orbit (aka Geostationary Orbit)
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Previous Video: The Force of Gravitational Attraction between the Earth and the Moon
Please support me on Patreon!
Thank you to Christopher Becke and Aarti Sangwan for being my Quality Control Team for this video.
Thank you to Youssef Nasr for transcribing the English subtitles of this video.
0:00 Intro
0:08 Deriving the acceleration due to gravity on any planet
1:54 Finding the acceleration due to gravity on Mt. Everest
3:16 How much higher could you jump on the top of Mt. Everest?
Next Video: Altitude of Geosynchronous Orbit (aka Geostationary Orbit)
Multilingual? Please help translate Flipping Physics videos!
Previous Video: The Force of Gravitational Attraction between the Earth and the Moon
Please support me on Patreon!
Thank you to Christopher Becke and Aarti Sangwan for being my Quality Control Team for this video.
Thank you to Youssef Nasr for transcribing the English subtitles of this video.
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