首页> 外文期刊>Algebras, groups and geometries >PRINCIPLE(S) OF CAUSALITY AS DE FACTO FUNDAMENTAL IN MATHEMATICAL PHYSICS, INCLUDING FOR CHANCE CAUSALITY APPLIED IN QUANTUM MECHANICS
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PRINCIPLE(S) OF CAUSALITY AS DE FACTO FUNDAMENTAL IN MATHEMATICAL PHYSICS, INCLUDING FOR CHANCE CAUSALITY APPLIED IN QUANTUM MECHANICS

机译:因果关系的原则原则是数学物理学的根本基础,包括在量子力学中应用的偶然因果关系

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According to the causality theory presented in the differential ontology and epistemology of Johansen (2008), concepts of randomness and probability are (ⅰ) built on fundamental types of causality, and (ⅱ) represent themselves particular, elaborated types of causality. Hence, it is argued that Einstein vas basically correct in insisting on preserving the causality principle against the Copenhagen interpretation of quantum mechanics which he considered to be an incomplete theory. Adequate philosophical interpretations of quantum mechanics and of further developments into hadronic mechanics require concise differentiations and combinations of various types of causality, including chance causality. This is argued to be in agreement with some crucial results from the mathematical physics of David Bohm as well as of Ruggero Maria Santilli in relation to upgraded discussions of the Einstein-Podolsky-Rosen paradox.
机译:根据Johansen(2008)的差异本体论和认识论中提出的因果关系,随机性和概率的概念(Ⅰ)构建在基本类型的因果关系上,(Ⅱ)代表自己特定的,精心制定的因果关系。 因此,据称,爱因斯坦VAS基本上是正确的,坚持保留对哥本哈根对量子力学的解释的因果原理,他被认为是一个不完整的理论。 对量子力学的充分哲学解释和屈地力学的进一步发展需要简明不同类型的因果关系的陈述和组合,包括机会因果关系。 据称,与大卫博恩的数学物理学以及Ruggero Maria Santilli有关升级爱因斯坦-Podolsky-Rosen悖论的讨论。

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