THE 4-DIMENSIONAL STATISTICAL PHYSICS IN A RELATIONAL PARADIGM

IF 0.2 3区 哲学 0 PHILOSOPHY
A. Krugly
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引用次数: 0

Abstract

The main model of the nonrelativistic statistical physics is the microstate at the moment of time. But in the relativistic case we cannot correctly define such microstate. We must consider a statistical physics of microstates in 4-dimensional volumes. The simple model of a finite set of point like elementary events is considered. The principle of least action means that the macroscopic process chooses the variant with maximum probability. Each elementary event has a low probability. Then the variant of process is most probable if it consists of the minimum of elementary events. An integral of a scalar curvature over a 4-dimensional volume is the number of elementary events. A mass of a particle is the number of elementary events in the unit of time. The electromagnetic terms in the action are the number of connections of elementary events.
关系范式中的四维统计物理
非相对论统计物理的主要模型是时刻的微观状态。但在相对论的情况下,我们不能正确地定义这种微观状态。我们必须考虑四维体积中微观状态的统计物理。考虑一类有限类点初等事件集的简单模型。最小作用原理是指宏观过程选择概率最大的变量。每个基本事件的概率都很低。如果过程的变体包含最小的基本事件,那么它就是最可能的。标量曲率在四维体积上的积分是基本事件的数目。粒子的质量是单位时间内基本事件的数量。作用中的电磁项是基本事件的连接数。
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来源期刊
REVIEW OF METAPHYSICS
REVIEW OF METAPHYSICS PHILOSOPHY-
CiteScore
0.50
自引率
33.30%
发文量
3
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