Maxwell's Equations and Galilean Relativity: Difference between revisions
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{{Infobox paper | {{Infobox paper | ||
| title = Maxwell\'s Equations and Galilean Relativity | | title = Maxwell\'s Equations and Galilean Relativity | ||
| url = [http://www.gsjournal.net/Science-Journals/Journal%20Reprints-Mechanics%20/%20Electrodynamics/Download/3757 Link to paper] | |||
| author = [[David Tombe]] | | author = [[David Tombe]] | ||
| keywords = [[Maxwell's Equations]], [[Galilean Relativity]] | | keywords = [[Maxwell's Equations]], [[Galilean Relativity]] | ||
| Line 10: | Line 11: | ||
| pages = 839-841 | | pages = 839-841 | ||
}} | }} | ||
'''Read the full paper''' [http://www.gsjournal.net/Science-Journals/Journal%20Reprints-Mechanics%20/%20Electrodynamics/Download/3757 here] | |||
==Abstract== | ==Abstract== | ||
Revision as of 18:50, 18 July 2026
| Scientific Paper | |
|---|---|
| Title | Maxwell\'s Equations and Galilean Relativity |
| Read in full | Link to paper |
| Author(s) | David Tombe |
| Keywords | Maxwell's Equations, Galilean Relativity |
| Published | 1984 |
| Journal | The Toth-Maatian Review |
| Volume | 2 |
| Number | 4 |
| No. of pages | 3 |
| Pages | 839-841 |
Read the full paper here
Abstract
A short paper demonstrating how the motion dependent component in Faraday's law of electromagnetic induction can be obtained by taking the curl of the vxB component in the Lorentz force. It is then stated that the velocity term in vxB refers to the absolute velocity through a dense sea of electrons and positrons which, like the atmosphere, is entrained with the Earth's orbital motion by gravity.