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| keywords = [[Newtonian]], [[absolute space and time]], [[velocity]], [[Voigt-Doppler effect]], [[neomechanics]], [[relativity theories]]
| keywords = [[Newtonian]], [[absolute space and time]], [[velocity]], [[Voigt-Doppler effect]], [[neomechanics]], [[relativity theories]]
| published = 1997
| published = 1997
| journal = [[None]]
| pages = 257-263
| pages = 257-263
}}
}}
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==Abstract==
==Abstract==


The permanency of the celestial sphere is a result of a cosmological limit velocity for all bodies relative to absolute space. Neomechanics, prescribing momentus as [], where <em>v</em> is the absolute velocity, accounts for the cosmological limit velocity as <em>c</em>. Local laws of physics must then involve absolute velocities. The Monstein-Wesley experiment confirms neomechanics. Absolute accelerations imply absolute space. Newtonian mechanics requires absolute space.&nbsp;Relativity theories can only be approximately valid for slowly varying effects. The oneway energy velocity of light, having the velocity '''c '''with respect to absolute space, has the observed velocity '''c = c - v, '''where '''v''' is the absolute velocity of the observer, as confirmed by many experiments. The Voigt-Doppler effect yields the null Michelson-Morley result. Absolute time is established by induction from corrected synchronized clock rates.[[Category:Scientific Paper]]
The permanency of the celestial sphere is a result of a cosmological limit velocity for all bodies relative to absolute space. Neomechanics, prescribing momentus as [], where <em>v</em> is the absolute velocity, accounts for the cosmological limit velocity as <em>c</em>. Local laws of physics must then involve absolute velocities. The Monstein-Wesley experiment confirms neomechanics. Absolute accelerations imply absolute space. Newtonian mechanics requires absolute space.&nbsp;Relativity theories can only be approximately valid for slowly varying effects. The oneway energy velocity of light, having the velocity '''c '''with respect to absolute space, has the observed velocity '''c = c - v, '''where '''v''' is the absolute velocity of the observer, as confirmed by many experiments. The Voigt-Doppler effect yields the null Michelson-Morley result. Absolute time is established by induction from corrected synchronized clock rates.


[[Category:Relativity]]
[[Category:Scientific Paper|evidence newtonian absolute space time]]
 
[[Category:Relativity|evidence newtonian absolute space time]]

Latest revision as of 19:25, 18 July 2026

Scientific Paper
TitleEvidence for Newtonian Absolute Space and Time
Author(s)Paul Wesley
KeywordsNewtonian, absolute space and time, velocity, Voigt-Doppler effect, neomechanics, relativity theories
Published1997
Pages257-263

Abstract

The permanency of the celestial sphere is a result of a cosmological limit velocity for all bodies relative to absolute space. Neomechanics, prescribing momentus as [], where v is the absolute velocity, accounts for the cosmological limit velocity as c. Local laws of physics must then involve absolute velocities. The Monstein-Wesley experiment confirms neomechanics. Absolute accelerations imply absolute space. Newtonian mechanics requires absolute space. Relativity theories can only be approximately valid for slowly varying effects. The oneway energy velocity of light, having the velocity c with respect to absolute space, has the observed velocity c = c - v, where v is the absolute velocity of the observer, as confirmed by many experiments. The Voigt-Doppler effect yields the null Michelson-Morley result. Absolute time is established by induction from corrected synchronized clock rates.