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{{Infobox paper
{{Infobox paper
| title = The Analysis of Maxwell\'s Equations: Set 2
| title = The Analysis of Maxwell's Equations: Set 2
| author = [[D E McLennan]]
| author = [[D E McLennan]]
| keywords = [[Maxwell's equations]], [[work-energy theorem]], [[momentum]], [[kinetic energy]], [[spin]], [[fundamental charge density]]
| keywords = [[Maxwell's equations]], [[work-energy theorem]], [[momentum]], [[kinetic energy]], [[spin]], [[fundamental charge density]]

Revision as of 23:41, 19 July 2026

Scientific Paper
TitleThe Analysis of Maxwell's Equations: Set 2
Author(s)D E McLennan
KeywordsMaxwell's equations, work-energy theorem, momentum, kinetic energy, spin, fundamental charge density
Published1988
JournalPhysics Essays
Volume1
Number4
Pages285-289

Abstract

It is argued here that all the mass in the world is of electromagnetic origin and that this must be described by the short-range fields of Set 2 Maxwell's equations. In support of this argument, the work-energy theorem and the work-potential energy theorem from mechanics are applied to classical electrodynamics. The forms so derived aid in recognizing the particle properties momentum and kinetic energy in both ?force-field? and potential forms. One disconcerting conclusion is that both mass and charge densities must always travel at c; as a consequence, a rest particle must spin.