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Isotropy in the Electromagnetic Field
 
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{{Infobox paper
| title = Isotropy in the Electromagnetic Field
| author = [[David Tombe]]
| published = 2019
| url = https://www.gsjournal.net/Science-Journals/Research%20Papers-Mechanics%20/%20Electrodynamics/Download/7770
}}
==Abstract==
In Part III of his 1861 paper “On Physical Lines of Force”, James Clerk Maxwell introduces the concept of displacement current in connection with the elasticity of the medium for the propagation of light. During the course of Part III, the luminiferous medium changes from an an-isotropic sea of molecular vortices into an isotropic dielectric solid. An attempt will be made to reconcile these two seemingly contradictory mediums.
In Part III of his 1861 paper “On Physical Lines of Force”, James Clerk Maxwell introduces the concept of displacement current in connection with the elasticity of the medium for the propagation of light. During the course of Part III, the luminiferous medium changes from an an-isotropic sea of molecular vortices into an isotropic dielectric solid. An attempt will be made to reconcile these two seemingly contradictory mediums.
[[Category:Scientific Paper|isotropy in the electromagnetic field]]
[[Category:Electrodynamics|isotropy in the electromagnetic field]]

Latest revision as of 07:06, 22 July 2026

Scientific Paper
TitleIsotropy in the Electromagnetic Field
Read in fullhttps://www.gsjournal.net/Science-Journals/Research%20Papers-Mechanics%20/%20Electrodynamics/Download/7770
Author(s)David Tombe
Published2019

Abstract

In Part III of his 1861 paper “On Physical Lines of Force”, James Clerk Maxwell introduces the concept of displacement current in connection with the elasticity of the medium for the propagation of light. During the course of Part III, the luminiferous medium changes from an an-isotropic sea of molecular vortices into an isotropic dielectric solid. An attempt will be made to reconcile these two seemingly contradictory mediums.