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Symmetries and invariances in classical physics

机译:经典物理学中的对称性和不变性

摘要

Symmetry, intended as invariance with respect to a transformation (more precisely, with respect to a transformation group), has acquired more and more importance in modern physics. This Chapter explores in 8 Sections the meaning, application and interpretation of symmetry in classical physics. This is done both in general, and with attention to specific topics. The general topics include illustration of the distinctions between symmetries of objects and of laws, and between symmetry principles and symmetry arguments (such as Curie's principle), and reviewing the meaning and various types of symmetry that may be found in classical physics, along with different interpretative strategies that may be adopted. Specific topics discussed include the historical path by which group theory entered classical physics, transformation theory in classical mechanics, the relativity principle in Einstein's Special Theory of Relativity, general covariance in his General Theory of Relativity, and Noether's theorems. In bringing these diverse materials together in a single Chapter, we display the pervasive and powerful influence of symmetry in classical physics, and offer a possible framework for the further philosophical investigation of this topic.
机译:对称性是相对于变换(更确切地说是相对于变换组)的不变性,在现代物理学中越来越重要。本章分八节探讨对称性在古典物理学中的含义,应用和解释。总体而言,并且要注意特定主题。通用主题包括:说明物体和法则的对称性之间的区别,以及对称性原理和对称性论点(例如居里原理)之间的区别,并回顾古典物理学中可能发现的对称性的含义和各种类型,以及不同之处。可以采用的解释性策略。讨论的具体主题包括:群论进入古典物理学的历史路径,古典力学中的转换理论,爱因斯坦狭义相对论中的相对论原理,其广义相对论中的一般协方差以及Noether定理。在将这些不同的材料放到一章中时,我们展示了对称在古典物理学中的普遍和强大的影响力,并为对该主题的进一步哲学研究提供了可能的框架。

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  • 年度 2005
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  • 正文语种 {"code":"en","name":"English","id":9}
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