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| title = Covariant Ether Theories: Part II
| title = Covariant Ether Theories: Part II
| author = [[Alexander L Kholmetskii]]
| author = [[Alexander L Kholmetskii]]
| keywords = Ether, special relativity theory, SRT
| published = 2004
| published = 2004
| journal = [[Galilean Electrodynamics]]
| journal = [[Galilean Electrodynamics]]
| volume = [[15]]
| volume = 15
| number = [[S1]]
| number = S1
| pages = 9-13
| pages = 9-13
}}
}}
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==Abstract==
==Abstract==


Some new theoretical and experimental approaches for unambiguous verification of special relativity theory (SRT) are discussed. A class of phenomena for which SRT and covariant ether theories (CET?s) give different predictions is identified. The physical meaning of these phenomena is discussed. It is concluded that, under modern development of experimental technique, a critical choice between SRT and CET?s can be made by means of M?ssbauer spectroscopy
Some new theoretical and experimental approaches for unambiguous verification of special relativity theory (SRT) are discussed. A class of phenomena for which SRT and covariant ether theories (CET's) give different predictions is identified. The physical meaning of these phenomena is discussed. It is concluded that, under modern development of experimental technique, a critical choice between SRT and CET's can be made by means of Mössbauer spectroscopy


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Latest revision as of 09:20, 22 July 2026

Scientific Paper
TitleCovariant Ether Theories: Part II
Author(s)Alexander L Kholmetskii
KeywordsEther, special relativity theory, SRT
Published2004
JournalGalilean Electrodynamics
Volume15
NumberS1
Pages9-13

Abstract

Some new theoretical and experimental approaches for unambiguous verification of special relativity theory (SRT) are discussed. A class of phenomena for which SRT and covariant ether theories (CET's) give different predictions is identified. The physical meaning of these phenomena is discussed. It is concluded that, under modern development of experimental technique, a critical choice between SRT and CET's can be made by means of Mössbauer spectroscopy