Difference between revisions of "Kepler's Third Law = Newton's Inverse Square Law"
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==Abstract== | ==Abstract== | ||
− | Acceleration is defined in as distance divided by time squared or Newton's acceleration a = r/(t. t) = k/(r.r) which means (r. r. r)/(t. t) = k which is Kepler's law.[[Category:Scientific Paper]] | + | Acceleration is defined in as distance divided by time squared or Newton's acceleration a = r/(t. t) = k/(r.r) which means (r. r. r)/(t. t) = k which is Kepler's law. |
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+ | [[Category:Scientific Paper|kepler 's law newton 's inverse square law]] | ||
[[Category:Gravity]] | [[Category:Gravity]] |
Revision as of 10:36, 1 January 2017
Scientific Paper | |
---|---|
Title | Kepler\'s Third Law = Newton\'s Inverse Square Law |
Read in full | Link to paper |
Author(s) | Joe Alexander Nahhas |
Keywords | Kepler, Newton |
Published | 1976 |
Journal | None |
No. of pages | 7 |
Read the full paper here
Abstract
Acceleration is defined in as distance divided by time squared or Newton's acceleration a = r/(t. t) = k/(r.r) which means (r. r. r)/(t. t) = k which is Kepler's law.