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Space, Time, and Their Transformations
引用本文:F.Selleri (Universita di Bari-Dipart. di Fisica,INFN-Sezione di Bari,Via Amendola 173,I-70126 Bari). Space, Time, and Their Transformations[J]. 系统工程与电子技术(英文版), 1995, 0(4)
作者姓名:F.Selleri (Universita di Bari-Dipart. di Fisica  INFN-Sezione di Bari  Via Amendola 173  I-70126 Bari)
作者单位:Universita di Bari-Dipart. di Fisica,INFN-Sezione di Bari,Via Amendola 173,I-70126 Bari
摘    要:1.IntRODUCTIONWesupPOsethata("stationary")inertialreferenceframeSOexistsinwhichMaxwell/sequationshold.AwellknownconsequenceoftheseequationsisthatthevelocityoflightinthevacuumiscinalldirectionsindependentlyoftheparticularsourcewhichgeneratedthelightsignalandthereforeinSOclocksmustbesynchronizedbyusingEinstein/sprocedure[l].Space--timevariablesxo,yo'z,'toarethusavailableinallpointsofSOandthevelocitiesofmovingbodies(andofotherinertialsystems)canbemeasured.Themostgeneralformofspace--timetr…


Space, Time, and Their Transformations
F.Selleri. Space, Time, and Their Transformations[J]. Journal of Systems Engineering and Electronics, 1995, 0(4)
Authors:F.Selleri
Abstract:We construct a set T of space-the transformations between inertial systems that are completely equivalent for explaining the experimental evidence, by starting from two empirically based assumptions: (1) The two-way velocity of light is c in all inertial systems and in all directions; (2) Time dilation effects take place with the usual relativistic factor. The Lorentz transformation is an element of T and any two elements of T differ only as to a convention regarding clock synchronization. The simplest choice is to transform time independently of space coordinates (absolute synchronization) and can be called "inerital transformation." When accelerations are considered the equivalence is broken and the inertial transformation emerges as closest to physical reality.
Keywords:Special relativity   Space and time.
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