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==Abstract==
==Abstract==


Conservation of energy requires that the electromagnetic field be nonlinear. The nonlinear nature of the field causes it to exhibit properties now atrtributable to "matter." It follows that elementary particles may be considered to be electromagnetic field patterns. If particles are electromagnitic field patterns, then the forces affecting them are all electromagnetic. The forces discussed are the Lorentz force, gravity and the nuclear or stong force.[[Category:Scientific Paper]]
Conservation of energy requires that the electromagnetic field be nonlinear. The nonlinear nature of the field causes it to exhibit properties now atrtributable to "matter." It follows that elementary particles may be considered to be electromagnetic field patterns. If particles are electromagnitic field patterns, then the forces affecting them are all electromagnetic. The forces discussed are the Lorentz force, gravity and the nuclear or stong force.


[[Category:Gravity]]
[[Category:Scientific Paper|nonlinear electromagnetic field theory]]
 
[[Category:Gravity|nonlinear electromagnetic field theory]]

Latest revision as of 21:45, 1 January 2017

Scientific Paper
TitleNonlinear Electromagnetic Field Theory
Author(s)Frank Twiss
Keywordselectromagnetic field, matter, forces, gravity
Published1994
JournalGalilean Electrodynamics
Volume5
Number6
Pages103-107

Abstract

Conservation of energy requires that the electromagnetic field be nonlinear. The nonlinear nature of the field causes it to exhibit properties now atrtributable to "matter." It follows that elementary particles may be considered to be electromagnetic field patterns. If particles are electromagnitic field patterns, then the forces affecting them are all electromagnetic. The forces discussed are the Lorentz force, gravity and the nuclear or stong force.