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==Abstract==
==Abstract==


We study the oscillation of a charged particle near a capacitor in four different models: Classical me-chanics, Weber's electrodynamics plus classical mechanics, relativistic mechanics, and Weber's electrodynamics plus the mechanics of Erwin Schr?dinger.  We show that only the third and fourth models yield physically reasonable results.[[Category:Scientific Paper]]
We study the oscillation of a charged particle near a capacitor in four different models: Classical me-chanics, Weber's electrodynamics plus classical mechanics, relativistic mechanics, and Weber's electrodynamics plus the mechanics of Erwin Schr?dinger.  We show that only the third and fourth models yield physically reasonable results.


[[Category:Relativity]]
[[Category:Scientific Paper|charged particle oscillating near capacitor]]
 
[[Category:Relativity|charged particle oscillating near capacitor]]

Latest revision as of 21:23, 1 January 2017

Scientific Paper
TitleCharged Particle Oscillating Near a Capacitor
Author(s)Andre K T Assis
KeywordsWeber's electrodynamics, Schr?dinger's mechanics, theory of relativity, potential dependent inertial mass
Published1999
JournalGalilean Electrodynamics
Volume10
Number6
Pages103-105

Abstract

We study the oscillation of a charged particle near a capacitor in four different models: Classical me-chanics, Weber's electrodynamics plus classical mechanics, relativistic mechanics, and Weber's electrodynamics plus the mechanics of Erwin Schr?dinger. We show that only the third and fourth models yield physically reasonable results.