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{{Infobox paper
{{Infobox paper
| title = Maxwell\'s Electrodynamics Without Special Relativity Theory (Part II)
| title = Maxwell's Electrodynamics Without Special Relativity Theory (Part II)
| author = [[Victor N Barykin]]
| author = [[Victor N Barykin]]
| keywords = special relativity theory, electrodynamics, Maxwell, electromagnetic field, light speed
| published = 2003
| published = 2003
| journal = [[Galilean Electrodynamics]]
| journal = [[Galilean Electrodynamics]]
| volume = [[14]]
| volume = 14
| number = [[5]]
| number = 5
| pages = 97-100
| pages = 97-100
}}
}}
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==Abstract==
==Abstract==


This work finds a previously unknown dynamic mechanism for the transformation of the velocity that specifies the external inertia of an electromagnetic field into a proper frequency of the field.  It is shown that a particle of non-zero rest mass can be limited to a speed equal to light speed in vacuum.[[Category:Scientific Paper]]
This work finds a previously unknown dynamic mechanism for the transformation of the velocity that specifies the external inertia of an electromagnetic field into a proper frequency of the field.  It is shown that a particle of non-zero rest mass can be limited to a speed equal to light speed in vacuum.


[[Category:Relativity]]
[[Category:Scientific Paper|maxwell 's electrodynamics special relativity theory ii]]
 
[[Category:Relativity|maxwell 's electrodynamics special relativity theory ii]]

Latest revision as of 09:36, 21 July 2026

Scientific Paper
TitleMaxwell's Electrodynamics Without Special Relativity Theory (Part II)
Author(s)Victor N Barykin
Keywordsspecial relativity theory, electrodynamics, Maxwell, electromagnetic field, light speed
Published2003
JournalGalilean Electrodynamics
Volume14
Number5
Pages97-100

Abstract

This work finds a previously unknown dynamic mechanism for the transformation of the velocity that specifies the external inertia of an electromagnetic field into a proper frequency of the field. It is shown that a particle of non-zero rest mass can be limited to a speed equal to light speed in vacuum.