用罗伯特-珍妮特核元素周期表组装和分类元素

J. Roberts
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引用次数: 1

摘要

通过将元素周期表与使用标准模型和群U (1) x S U (2) x S U(3)的数学建立的量子力学表相结合,使用robert - janet表推导出了元素的框架和令人惊讶的连贯分析。在之前的文章中已经确定了两个表之间的一对一映射,本文试图通过呈现高度稳定的中子和质子数量——核壳模型中的神奇数字——作为框架本身的结果,来巩固这样一个框架,使其包括核合成。本文还试图说明凝聚态物质(元素周期表)中单个元素的电子结构与聚变(核合成)过程中等离子体中中子和质子的结构之间的相似之处,以及它可能扩展到标准模型及以后。相变加上适当的边界条件导致所有元素最终都变成金属的假设。
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The Assembly and Classification of the Elements Using the Roberts-Janet Nuclear Periodic Table
A framework and surprisingly coherent analysis of the elements is presented using the Roberts-Janet table derived by inverting the Periodic Table coupled with the Quantum Mechanical Table established using the mathematics of the Standard Model and groups U (1) x S U (2) x S U (3). Having already identified in previous articles a one to one mapping between the two tables, this article seeks to consolidate such a framework to include nucleosynthesis by presenting the appearance of the highly stable numbers of neutrons and protons – magic numbers within the Nuclear Shell Model – as a consequence of the framework itself. The article also seeks to illustrate similarities between the electron structure of individual elements in condensed matter (Periodic Table) and the structure of neutrons and protons in plasma during fusion (Nucleosynthesis) and its possible extension to the Standard Model and beyond. Phase changes together with suitable boundary conditions lead to the hypothesis that all elements ultimately become metallic.
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