Electron Particle (Energy Wave Theory)
First published: 2016
Brief summary
Extends Wolff and LaFreniere's standing wave electron model, citing 2008 Lund University imaging of the electron in motion showing standing-wave characteristics with a wavelength radius of 10 wavelengths from the particle core, consistent with the model's mass calculation.
Article
Electron Particle (Energy Wave Theory) is a non-peer-reviewed theoretical website published by Energy Wave Theory in 2016. It extends Wolff and LaFreniere's standing wave electron model, citing 2008 Lund University imaging of the electron in motion showing standing-wave characteristics with a wavelength radius of 10 wavelengths from the particle core, consistent with the model's mass calculation.
Wavelength radius n=10 for the electron. It also considers cites 2008 Lund University experimental electron imaging as consistent with standing-wave structure predictions. The study includes energy/wavelength equations. This gives the cycle claim a specific numerical and evidential setting rather than presenting periodicity only as a visual impression.
The article reports the following result: In 2008, scientists at Lund University in Sweden captured the electron for the first time ever in motion, showing standing wave characteristics with an apparent 10-wavelength radius from the particle core, consistent with the Longitudinal Energy equation. The argument is strongest when its equations, assumptions and testable predictions are stated clearly and compared with established quantum and relativistic models.
For cycles researchers, the article brings together electron standing waves, energy wave theory, wavelength radius, particle structure. It is relevant to wave-based models of matter because it links physical interpretation to standing waves, phase, wavelength and relativistic or quantum behaviour.
Because it is a non-peer-reviewed theoretical website, the article is a strong starting point for discussion in the Wave Structure of Matter forum, although its conclusions should still be compared with later replications and updated datasets.
Source details and credits
- Source / publisher: Energy Wave Theory
- Source type: Non-peer-reviewed theoretical website
- URL type: WWW
- Credits: Energy Wave Theory
- URL: https://energywavetheory.com/electromagneticwaves/electron-particle/
