Aether Friction in the Planetary Orbits: Difference between revisions
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Aether Friction in the Planetary Orbits |
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{{Infobox paper | |||
| title = Aether Friction in the Planetary Orbits | |||
| author = [[David Tombe]] | |||
| published = 2021 | |||
| url = https://www.researchgate.net/publication/350873624_Aether_Friction_in_the_Planetary_Orbits | |||
}} | |||
==Abstract== | |||
When a theory of electromagnetism promotes the idea that the medium for the propagation of light waves is an elastic solid comprised of electric particles, the question is always going to be asked as to why this medium would not generate friction in the planetary orbits, such as would cause the planets to spiral into the Sun. It would be impossible for a moving body to completely avoid any physical interaction with these electric particles, and so, in order to comply with Kepler’s Laws of Planetary Motion, this interaction must be the actual cause of the inertial forces, as opposed to being the cause of any dissipative friction. | When a theory of electromagnetism promotes the idea that the medium for the propagation of light waves is an elastic solid comprised of electric particles, the question is always going to be asked as to why this medium would not generate friction in the planetary orbits, such as would cause the planets to spiral into the Sun. It would be impossible for a moving body to completely avoid any physical interaction with these electric particles, and so, in order to comply with Kepler’s Laws of Planetary Motion, this interaction must be the actual cause of the inertial forces, as opposed to being the cause of any dissipative friction. | ||
[[Category:Scientific Paper|aether friction in the planetary orbits]] | |||
[[Category:Aether|aether friction in the planetary orbits]] | |||
Latest revision as of 07:06, 22 July 2026
| Scientific Paper | |
|---|---|
| Title | Aether Friction in the Planetary Orbits |
| Read in full | https://www.researchgate.net/publication/350873624_Aether_Friction_in_the_Planetary_Orbits |
| Author(s) | David Tombe |
| Published | 2021 |
Abstract
When a theory of electromagnetism promotes the idea that the medium for the propagation of light waves is an elastic solid comprised of electric particles, the question is always going to be asked as to why this medium would not generate friction in the planetary orbits, such as would cause the planets to spiral into the Sun. It would be impossible for a moving body to completely avoid any physical interaction with these electric particles, and so, in order to comply with Kepler’s Laws of Planetary Motion, this interaction must be the actual cause of the inertial forces, as opposed to being the cause of any dissipative friction.