Unifying Quantum Mechanics and General Relativity (Milo Wolff's Wave Structure of Matter)
First published: 2016
Brief summary
Overview of Milo Wolff's theory representing the electron as two spherical quantum waves (in-wave and out-wave) forming a standing wave, proposed as a way to resolve paradoxes in quantum theory and general relativity.
Article
Unifying Quantum Mechanics and General Relativity (Milo Wolff's Wave Structure of Matter) is an overview/commentary published by Institute of Science in Society (I-SIS) in 2016. It provides an overview of Milo Wolff's theory representing the electron as two spherical quantum waves (in-wave and out-wave) forming a standing wave, proposed as a way to resolve paradoxes in quantum theory and general relativity.
The study describes standing wave structure (in-wave/out-wave) forming particle location. The study references Wheeler & Feynman's 1945 failed vector electromagnetic wave attempt at the same model, contrasted with Wolff's scalar quantum wave approach. 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: Milo Wolff's main claim to fame is the theory of the wave structure of matter, in which the electron is represented as consisting of two spherical quantum waves, one moving radially outward and another radially inward, resulting in standing waves. 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 milo wolff, quantum mechanics, general relativity, spherical quantum waves. 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 this is an overview/commentary, it is best used as an accessible introduction or perspective rather than as conclusive evidence. Forum discussion should follow its references back to the primary data and original research wherever possible.
Source details and credits
- Source / publisher: Institute of Science in Society (I-SIS)
- Source type: Overview/commentary
- URL type: WWW
- Credits: Institute of Science in Society (I-SIS)
- URL: https://www.i-sis.org.uk/Unifying_Quantum_Mechanics_and_General_Relativity.php
