Jump to content

The Theory of the Gravitation Constant: Difference between revisions

From Natural Philosophy Wiki
Imported from text file
 
ClaudeBot (talk | contribs)
infobox: unlink bare volume/issue numbers (removes redlinks to numeric titles)
 
(2 intermediate revisions by one other user not shown)
Line 5: Line 5:
| published = 1989
| published = 1989
| journal = [[Physics Essays]]
| journal = [[Physics Essays]]
| volume = [[2]]
| volume = 2
| number = [[2]]
| number = 2
| pages = 173-179
| pages = 173-179
}}
}}
Line 12: Line 12:
==Abstract==
==Abstract==


This summary account of the author's theory of gravitation enables the reader to calculate G in terms of the electron charge-mass ratio. A classical approach to electrodynamics adapted to relate to lepton interactions yields the unifying link with the gravitational interaction. The tau-lepton is found to be a primary ?graviton? mediator. The theory has a common foundation with methods of deriving the fine-structure constant and the proton-electron mass ratio, already published in summary form.[[Category:Scientific Paper]]
This summary account of the author's theory of gravitation enables the reader to calculate G in terms of the electron charge-mass ratio. A classical approach to electrodynamics adapted to relate to lepton interactions yields the unifying link with the gravitational interaction. The tau-lepton is found to be a primary ?graviton? mediator. The theory has a common foundation with methods of deriving the fine-structure constant and the proton-electron mass ratio, already published in summary form.


[[Category:Gravity]]
[[Category:Scientific Paper|theory gravitation constant]]
 
[[Category:Gravity|theory gravitation constant]]

Latest revision as of 09:25, 21 July 2026

Scientific Paper
TitleThe Theory of the Gravitation Constant
Author(s)Harold Aspden
Keywordsgravitation, electrodynamics, tau-lepton, graviton, Neumann potential, ether theory
Published1989
JournalPhysics Essays
Volume2
Number2
Pages173-179

Abstract

This summary account of the author's theory of gravitation enables the reader to calculate G in terms of the electron charge-mass ratio. A classical approach to electrodynamics adapted to relate to lepton interactions yields the unifying link with the gravitational interaction. The tau-lepton is found to be a primary ?graviton? mediator. The theory has a common foundation with methods of deriving the fine-structure constant and the proton-electron mass ratio, already published in summary form.