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Reciprocity Relation between the Mass Constituents of the Universe and Hardy’s Quantum Entanglement Probability 被引量:2

Reciprocity Relation between the Mass Constituents of the Universe and Hardy’s Quantum Entanglement Probability
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摘要 In this short contribution, a reciprocity relation between mass constituents of the universe was explained governed by Hardy’s maximum entanglement probability of φ5 = 0.09017. While well explainable through a set-theoretical argumentation, the relation may also be a consequence of a coupling factor attributed to the normed dimensions of the universe. Also, very simple expressions for the mass amounts were obtained, when replacing the Golden Mean φ by the Archimedes’ constant π. A brief statement was devoted to the similarity between the E-Infinity Theory of El Naschie and the Information Relativity Theory of Suleiman. In addition, superconductivity was also linked with Hardy’s entanglement probability. In this short contribution, a reciprocity relation between mass constituents of the universe was explained governed by Hardy’s maximum entanglement probability of φ5 = 0.09017. While well explainable through a set-theoretical argumentation, the relation may also be a consequence of a coupling factor attributed to the normed dimensions of the universe. Also, very simple expressions for the mass amounts were obtained, when replacing the Golden Mean φ by the Archimedes’ constant π. A brief statement was devoted to the similarity between the E-Infinity Theory of El Naschie and the Information Relativity Theory of Suleiman. In addition, superconductivity was also linked with Hardy’s entanglement probability.
出处 《World Journal of Condensed Matter Physics》 2018年第2期30-35,共6页 凝固态物理国际期刊(英文)
关键词 UNIVERSE MASS Constituents Golden Mean Archimedes’ Constant RECIPROCITY RELATION E-INFINITY THEORY Information Relativity THEORY Entanglement Superconductivity Universe Mass Constituents Golden Mean Archimedes’ Constant Reciprocity Relation E-Infinity Theory Information Relativity Theory Entanglement Superconductivity
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