Difference between revisions of "Electron in the Ground Energy State ? Part 2"

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==Abstract==
 
==Abstract==
  
Equilibrium of charge distributed throughout the electron ring interior is a result of electromagnetic self-forces that control the structure and internal motion of charge. The exact distribution of charge density inside the ring-shaped electron is described by equations and graphs. The dimensions of ground-state electrons are obtained from a physical spinning charged ring (SCR) model. The model yields the large radius and small radius of the electron ring. And the model also yields the actual non-anomalous magnetic moment of the electron. Thus, the SCR Model predicts that the diameter of a free electron is finite and physically related to electron properties such as its rest-mass, spin, magnetic moment, line spectra, and wavelength.[[Category:Scientific Paper]]
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Equilibrium of charge distributed throughout the electron ring interior is a result of electromagnetic self-forces that control the structure and internal motion of charge. The exact distribution of charge density inside the ring-shaped electron is described by equations and graphs. The dimensions of ground-state electrons are obtained from a physical spinning charged ring (SCR) model. The model yields the large radius and small radius of the electron ring. And the model also yields the actual non-anomalous magnetic moment of the electron. Thus, the SCR Model predicts that the diameter of a free electron is finite and physically related to electron properties such as its rest-mass, spin, magnetic moment, line spectra, and wavelength.
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[[Category:Scientific Paper|electron ground energy state]]

Latest revision as of 10:20, 1 January 2017

Scientific Paper
Title Electron in the Ground Energy State ? Part 2
Author(s) David L Bergman, Dennis P Allen
Keywords {{{keywords}}}
Published 2012
Journal Foundations of Science
Volume 15
Number 2
No. of pages 15

Abstract

Equilibrium of charge distributed throughout the electron ring interior is a result of electromagnetic self-forces that control the structure and internal motion of charge. The exact distribution of charge density inside the ring-shaped electron is described by equations and graphs. The dimensions of ground-state electrons are obtained from a physical spinning charged ring (SCR) model. The model yields the large radius and small radius of the electron ring. And the model also yields the actual non-anomalous magnetic moment of the electron. Thus, the SCR Model predicts that the diameter of a free electron is finite and physically related to electron properties such as its rest-mass, spin, magnetic moment, line spectra, and wavelength.