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{{Infobox paper
{{Infobox paper
| title = Basics of Motion Reflection Theory (MRT)
| title = Basics of Motion Reflection Theory (MRT)
| url = [https://web.archive.org/web/20200922170752/http://graviton.neva.ru/tod/bmrt.pdf Link to paper (Internet Archive)]
| author = [[Anatoly A Denisov]]
| author = [[Anatoly A Denisov]]
| keywords = [[Motion]], [[Reflection]], [[Electron]], [[Charge]], [[Lorentz]], [[Gravitational waves]]
| keywords = [[Motion]], [[Reflection]], [[Electron]], [[Charge]], [[Lorentz]], [[Gravitational waves]]
| published = 2006
| published = 2006
| journal = [[None]]
| num_pages = 37
| num_pages = 37
}}
}}
'''Read the full paper''' [https://web.archive.org/web/20200922170752/http://graviton.neva.ru/tod/bmrt.pdf here] ''(archived copy — the original link is no longer available)''


==Abstract==
==Abstract==

Latest revision as of 08:28, 20 July 2026

Scientific Paper
TitleBasics of Motion Reflection Theory (MRT)
Read in fullLink to paper (Internet Archive)
Author(s)Anatoly A Denisov
KeywordsMotion, Reflection, Electron, Charge, Lorentz, Gravitational waves
Published2006
No. of pages37

Read the full paper here (archived copy — the original link is no longer available)

Abstract

Here we set a rational theory of high velocity motion, which takes into consideration some effects, caused by its inadequate reflection by the environment and measurement instrumentation, the above-mentioned theory being entitled to replace the irrational and inadequate theory of relativity, which seems to be erroneous and contradictory to common sense.  In this work we:

  • Show the electric origins of mass, as well as of strong or weak coupling (interaction), and also of mass invariability in the process of motion.
  • Show the fallacy of relativistic energy and the inapplicability of the Lorentz transformation for the case of electrodynamics.
  • Give a description of a new electrostrictive field and its longtitudinal waves.
  • Show the impossibility of gravitational waves and the instantaneousness of gravitational data propagation.
  • Explain the nature of ball lightning, of the electron, of the neutrino, and define the mass of the latter.