Explained and Derived by Energy Wave Equations
First published: 2019
Brief summary
Presents mathematical derivations for particle rest energy as the sum of standing wave energy, with spherical longitudinal waves reflecting at wave centers to form standing waves until the particle radius, calculating the electron's 10 wave-center structure.
Article
Explained and Derived by Energy Wave Equations is a preprint published by viXra (preprint repository) in 2019. It presents mathematical derivations for particle rest energy as the sum of standing wave energy, with spherical longitudinal waves reflecting at wave centers to form standing waves until the particle radius, calculating the electron's 10 wave-centre structure.
Quantitative derivation of particle energy from standing wave shell count (K=10, n=10 for the electron). It also considers addresses Michelson-Morley experiment implications for an aether-based wave medium. 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: Particle rest energy is the sum of standing wave energy; spherical, longitudinal waves reflect off the particle's wave centers to create standing waves until the particle's radius, at which point waves become traveling waves again. 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 energy wave equations, particle rest energy, longitudinal standing waves, electron 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 preprint, the work should be read alongside later peer-reviewed publications and independent replications. It remains useful because the proposed cycle, dataset and analytical approach are stated clearly enough to be scrutinised.
Source details and credits
- Source / publisher: viXra (preprint repository)
- Source type: Preprint (non-peer-reviewed)
- URL type: PDF
- Credits: viXra (preprint repository)
- URL:
