Jump to content

Gravitation: Revising Both Einstein and Newton: Difference between revisions

From Natural Philosophy Wiki
Imported from text file
ClaudeBot (talk | contribs)
fix apostrophes lost to the character-encoding bug (Einstein?s -> Einstein's); URLs left untouched
 
(3 intermediate revisions by 2 users not shown)
Line 2: Line 2:
| title = Gravitation: Revising Both Einstein and Newton
| title = Gravitation: Revising Both Einstein and Newton
| author = [[Ronald R Hatch]]
| author = [[Ronald R Hatch]]
| keywords = gravitation, Einstein, Newton, gravitational
| published = 1999
| published = 1999
| journal = [[Galilean Electrodynamics]]
| journal = [[Galilean Electrodynamics]]
| volume = [[10]]
| volume = 10
| number = [[4]]
| number = 4
| pages = 69-74
| pages = 69-74
}}
}}
Line 11: Line 12:
==Abstract==
==Abstract==


An elastic ether model of gravitational effects is proposed, and the more significant differences between the new theory and the General Theory are explored.  When compared with Einstein?s curved-space model, the majority of the equations are little changed, but there are a number of real differences.  The complexity of interpretation for the General Theory contrasts with the simplicity of the new gravitational model.  Some of the predicted effects differ too.  In a series of logical steps a new gravitational force equation is developed.  It is shown that many of the cosmological implications of the General Theory are critically dependent upon the sign of the second-order term of the Taylor series expansion of the gravitational scale factor.  The existing observational evidence supports the opposite sign of the second-order term, and hence the new gravitational force equation.
An elastic ether model of gravitational effects is proposed, and the more significant differences between the new theory and the General Theory are explored.  When compared with Einstein's curved-space model, the majority of the equations are little changed, but there are a number of real differences.  The complexity of interpretation for the General Theory contrasts with the simplicity of the new gravitational model.  Some of the predicted effects differ too.  In a series of logical steps a new gravitational force equation is developed.  It is shown that many of the cosmological implications of the General Theory are critically dependent upon the sign of the second-order term of the Taylor series expansion of the gravitational scale factor.  The existing observational evidence supports the opposite sign of the second-order term, and hence the new gravitational force equation.


[[Category:Scientific Paper|gravitation revising einstein newton]]
[[Category:Scientific Paper|gravitation revising einstein newton]]


[[Category:Gravity]]
[[Category:Gravity|gravitation revising einstein newton]]

Latest revision as of 09:01, 22 July 2026

Scientific Paper
TitleGravitation: Revising Both Einstein and Newton
Author(s)Ronald R Hatch
Keywordsgravitation, Einstein, Newton, gravitational
Published1999
JournalGalilean Electrodynamics
Volume10
Number4
Pages69-74

Abstract

An elastic ether model of gravitational effects is proposed, and the more significant differences between the new theory and the General Theory are explored. When compared with Einstein's curved-space model, the majority of the equations are little changed, but there are a number of real differences. The complexity of interpretation for the General Theory contrasts with the simplicity of the new gravitational model. Some of the predicted effects differ too. In a series of logical steps a new gravitational force equation is developed. It is shown that many of the cosmological implications of the General Theory are critically dependent upon the sign of the second-order term of the Taylor series expansion of the gravitational scale factor. The existing observational evidence supports the opposite sign of the second-order term, and hence the new gravitational force equation.