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{{Infobox paper
{{Infobox paper
| title = Relativity?s Space Contraction: Shortcuts through Hyperspace
| title = Relativity's Space Contraction: Shortcuts through Hyperspace
| author = [[Danson Jones]]
| author = [[Danson Jones]]
| keywords = [[special relativity]], [[Lorentz transformation]], [[space contraction]], [[light barrier]], [[cosmology]]
| keywords = [[special relativity]], [[Lorentz transformation]], [[space contraction]], [[light barrier]], [[cosmology]]
| published = 2007
| published = 2007
| journal = [[Galilean Electrodynamics]]
| journal = [[Galilean Electrodynamics]]
| volume = [[18]]
| volume = 18
| number = [[5]]
| number = 5
| pages = 92-95
| pages = 92-95
}}
}}
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==Abstract==
==Abstract==


It is shown that the distance between an astronaut and a distant planet that lies along the astronaut?s straight-line path is Lorentz contracted from the perspective of both the astronaut and an observer at rest on that distant planet. It is also shown that what these two observers perceive as simply a contraction of the space separating them is, in reality, a shortcut through hyperspace that enables the astronaut to circumvent the light barrier in the both frames of reference.
It is shown that the distance between an astronaut and a distant planet that lies along the astronaut's straight-line path is Lorentz contracted from the perspective of both the astronaut and an observer at rest on that distant planet. It is also shown that what these two observers perceive as simply a contraction of the space separating them is, in reality, a shortcut through hyperspace that enables the astronaut to circumvent the light barrier in the both frames of reference.


[[Category:Scientific Paper]]
[[Category:Scientific Paper|relativity s space contraction shortcuts hyperspace]]


[[Category:Relativity]]
[[Category:Relativity|relativity s space contraction shortcuts hyperspace]]

Latest revision as of 09:38, 21 July 2026

Scientific Paper
TitleRelativity's Space Contraction: Shortcuts through Hyperspace
Author(s)Danson Jones
Keywordsspecial relativity, Lorentz transformation, space contraction, light barrier, cosmology
Published2007
JournalGalilean Electrodynamics
Volume18
Number5
Pages92-95

Abstract

It is shown that the distance between an astronaut and a distant planet that lies along the astronaut's straight-line path is Lorentz contracted from the perspective of both the astronaut and an observer at rest on that distant planet. It is also shown that what these two observers perceive as simply a contraction of the space separating them is, in reality, a shortcut through hyperspace that enables the astronaut to circumvent the light barrier in the both frames of reference.