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洛倫茲變換的探討
洛倫茲變換的探討
摘要:洛倫茲變換是1物理事件相對(duì)于兩個(gè)不同慣性系之間的時(shí)空坐標(biāo)變換方程,它以嚴(yán)謹(jǐn)?shù)臄?shù)學(xué)語(yǔ)言反映了狹義相對(duì)論新的時(shí)空觀,由此統(tǒng)1了物理學(xué)中的宏觀低速領(lǐng)域與微觀高速領(lǐng)域,并為現(xiàn)代物理學(xué)的發(fā)展提供了廣闊的空間,本文用定性的物理分析和定量的數(shù)學(xué)推導(dǎo)相結(jié)合,運(yùn)用現(xiàn)有的數(shù)學(xué)工具、手段和物理規(guī)律,來(lái)求得了包括特殊、1般和旋轉(zhuǎn)等情況下的各種洛倫茲變換形式。
關(guān)健詞:間隔;洛倫茲變換;閔可夫斯基空間;旋轉(zhuǎn)
The Discussion of Lorentz Transformations
Abstract: The Lorentz transformation is the space-time coordinate transformation equation of physical events with respect to two different inertia systems. It reflects new space-time conception of special relativity through the precise mathematical language, which unifies the macroscopic low speed and microscopic high speed domains of physics, and provides the broad space for the development of modern physics. This article obtains Lorentz transformations under different conditions, including special, general, rotational etc. Lorentz transformation correlating the qualitatively physical analysis with the quantitatively mathematical deduction, and utilizing modern mathematical instruments, methods and physical rules.
Keywords:Interval of events; Lorentz transformation; Minkowski world; Rotation
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