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{{Infobox paper
{{Infobox paper
| title = General Relativity?s Ambiguous Clocks
| title = General Relativity's Ambiguous Clocks
| author = [[Robert S Neiswander]]
| author = [[Robert S Neiswander]]
| keywords = General Relativity, clocks, Special Theory of Relativity, forces
| published = 1998
| published = 1998
| journal = [[Galilean Electrodynamics]]
| journal = [[Galilean Electrodynamics]]
| volume = [[9]]
| volume = 9
| number = [[1]]
| number = 1
| pages = 3-7
| pages = 3-7
}}
}}
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==Abstract==
==Abstract==


For dynamic systems devoid of forces, Einstein?s General Theory of Relativity reduces to his Restricted or Special Theory of Relativity. For less idealistic systems tolerating weak forces and mild rotation rates, the general theory reduces to a version closely akin to, but less restricted than, his Special Theory of Relativity. The analysis reveals that in this more realistic universe, <em>time cannot be closed around spatial circuits</em>.
For dynamic systems devoid of forces, Einstein's General Theory of Relativity reduces to his Restricted or Special Theory of Relativity. For less idealistic systems tolerating weak forces and mild rotation rates, the general theory reduces to a version closely akin to, but less restricted than, his Special Theory of Relativity. The analysis reveals that in this more realistic universe, <em>time cannot be closed around spatial circuits</em>.


[[Category:Scientific Paper|general relativity s ambiguous clocks]]
[[Category:Scientific Paper|general relativity s ambiguous clocks]]


[[Category:Relativity|general relativity s ambiguous clocks]]
[[Category:Relativity|general relativity s ambiguous clocks]]

Latest revision as of 09:27, 21 July 2026

Scientific Paper
TitleGeneral Relativity's Ambiguous Clocks
Author(s)Robert S Neiswander
KeywordsGeneral Relativity, clocks, Special Theory of Relativity, forces
Published1998
JournalGalilean Electrodynamics
Volume9
Number1
Pages3-7

Abstract

For dynamic systems devoid of forces, Einstein's General Theory of Relativity reduces to his Restricted or Special Theory of Relativity. For less idealistic systems tolerating weak forces and mild rotation rates, the general theory reduces to a version closely akin to, but less restricted than, his Special Theory of Relativity. The analysis reveals that in this more realistic universe, time cannot be closed around spatial circuits.