Difference between revisions of "On the Generalisation of Kepler's 3rd Law for the Vacuum Field of the Point-Mass"
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− | I derive herein a general form of Kepler?s 3rd Law for the general solution to Einstein?s vacuum field. I also obtain stable orbits for photons in all the configurations of the point-mass. Contrary to the accepted theory, Kepler?s 3rd Law is modified by General Relativity and leads to a finite angular velocity as the proper radius of the orbit goes down to zero, without the formation of a black hole. Finally, I generalise the expression for the potential function of the general solution for the point-mass in the weak field.[[Category:Scientific Paper]] | + | I derive herein a general form of Kepler?s 3rd Law for the general solution to Einstein?s vacuum field. I also obtain stable orbits for photons in all the configurations of the point-mass. Contrary to the accepted theory, Kepler?s 3rd Law is modified by General Relativity and leads to a finite angular velocity as the proper radius of the orbit goes down to zero, without the formation of a black hole. Finally, I generalise the expression for the potential function of the general solution for the point-mass in the weak field. |
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+ | [[Category:Scientific Paper|generalisation kepler 's rd law vacuum field point-mass]] | ||
[[Category:Relativity]] | [[Category:Relativity]] |
Revision as of 10:49, 1 January 2017
Scientific Paper | |
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Title | On the Generalisation of Kepler\'s 3rd Law for the Vacuum Field of the Point-Mass |
Author(s) | Stephen John Crothers |
Keywords | Kepler's 3rd Law, Vacuum Field, Point-Mass |
Published | 2005 |
Journal | Progress In Physics |
Volume | 2 |
Pages | 70-75 |
Abstract
I derive herein a general form of Kepler?s 3rd Law for the general solution to Einstein?s vacuum field. I also obtain stable orbits for photons in all the configurations of the point-mass. Contrary to the accepted theory, Kepler?s 3rd Law is modified by General Relativity and leads to a finite angular velocity as the proper radius of the orbit goes down to zero, without the formation of a black hole. Finally, I generalise the expression for the potential function of the general solution for the point-mass in the weak field.