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The Obscure Precession of Mercury's Perihelion: Difference between revisions

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==Abstract==
==Abstract==


The Sun's orbital motion around the Solar System barycentre contributes a small quadrupole moment to the gravitational binding energy of Mercury. This moment has until now gone undiscovered, but it actually generates 7arcsec/cy precession of Mercury's perihelion. Consequently, the residual 43arcsec/cy allocated previously to general relativity must in reality account for this new component and only 36arcsec/cy for general relativity. This means that the orbit of Mercury is grossly incompatible with the vacuum solution of GR.[[Category:Scientific Paper]]
The Sun's orbital motion around the Solar System barycentre contributes a small quadrupole moment to the gravitational binding energy of Mercury. This moment has until now gone undiscovered, but it actually generates 7arcsec/cy precession of Mercury's perihelion. Consequently, the residual 43arcsec/cy allocated previously to general relativity must in reality account for this new component and only 36arcsec/cy for general relativity. This means that the orbit of Mercury is grossly incompatible with the vacuum solution of GR.
 
[[Category:Scientific Paper|obscure precession mercury 's perihelion]]


[[Category:Gravity]]
[[Category:Gravity]]

Revision as of 14:21, 1 January 2017

Scientific Paper
TitleThe Obscure Precession of Mercury\'s Perihelion
Read in fullLink to paper
Author(s)Richard Wayte
Published2011
JournalVixra
No. of pages8

Read the full paper here

Abstract

The Sun's orbital motion around the Solar System barycentre contributes a small quadrupole moment to the gravitational binding energy of Mercury. This moment has until now gone undiscovered, but it actually generates 7arcsec/cy precession of Mercury's perihelion. Consequently, the residual 43arcsec/cy allocated previously to general relativity must in reality account for this new component and only 36arcsec/cy for general relativity. This means that the orbit of Mercury is grossly incompatible with the vacuum solution of GR.