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{{Infobox paper
{{Infobox paper
| title = Mach\'s Principle in a Mixed Newton-Einstein Context
| title = Mach's Principle in a Mixed Newton-Einstein Context
| author = [[Evert Jan Post]], [[Michael Berg]]
| author = [[Evert Jan Post]], [[Michael Berg]]
| keywords = [[Mach's Principle]], [[Newton]], [[Einstein]]
| keywords = [[Mach's Principle]], [[Newton]], [[Einstein]]
| published = 1999
| published = 1999
| journal = [[Galilean Electrodynamics]]
| journal = [[Galilean Electrodynamics]]
| volume = [[10]]
| volume = 10
| number = [[S2]]
| number = S2
| num_pages = 5
| num_pages = 5
| pages = 36-40
| pages = 36-40
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==Abstract==
==Abstract==


A closed physical space, in conjunction with scalar versus pseudo scalar distinctions, and an accordingly adapted Gauss theorem, reveal unexpected perspectives on Mach's principle, the mass-energy theorem, and a bonus insight into the nature of the solutions of the Einstein field equations of gravity.[[Category:Scientific Paper]]
A closed physical space, in conjunction with scalar versus pseudo scalar distinctions, and an accordingly adapted Gauss theorem, reveal unexpected perspectives on Mach's principle, the mass-energy theorem, and a bonus insight into the nature of the solutions of the Einstein field equations of gravity.


[[Category:Gravity]]
[[Category:Scientific Paper|mach 's principle mixed newton-einstein context]]
 
[[Category:Gravity|mach 's principle mixed newton-einstein context]]
 
[[Category:Mach's Principle]]

Latest revision as of 09:22, 21 July 2026

Scientific Paper
TitleMach's Principle in a Mixed Newton-Einstein Context
Author(s)Evert Jan Post, Michael Berg
KeywordsMach's Principle, Newton, Einstein
Published1999
JournalGalilean Electrodynamics
Volume10
NumberS2
No. of pages5
Pages36-40

Abstract

A closed physical space, in conjunction with scalar versus pseudo scalar distinctions, and an accordingly adapted Gauss theorem, reveal unexpected perspectives on Mach's principle, the mass-energy theorem, and a bonus insight into the nature of the solutions of the Einstein field equations of gravity.