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The nucleus of an atom and the periodicity of the elements

机译:原子核和元素的周期性

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摘要

A study of solid matter and the application of the principle of order leads to models for the octahedral structure of the nuclei of all atoms. Amodel of a proton-neutron unit as a truncated tetrahedron yields interesting agreement with the eight-group periodicity of the elements. A diagram shows how the truncated tetrahedra can be fabricated from paper and these can be built up into an octahedral shape for all known elements. Other diagrams show how the "Russian doll" or "onion layers" can represent the 2, 8, 8,18, 18 and 32 neutron-proton layers of the known elements. 48 elements are postulated for the Period 7, hence the actinides are not related to the rare-earth elements of Period 6. This is confirmed by experiment. The neutron-proton unit is made up of 20 μ-mesons and this agrees with the high energy physics observations of protons, neutrons and mesons. 5 μ-mesons make a K-meson, which is another particle frequently detected in high energy physics experiments.
机译:对固体的研究和顺序原理的应用导致了所有原子核八面体结构的模型。质子-中子单元的模型为截短的四面体,与元素的八族周期性产生有趣的一致性。一张图显示了截断的四面体是如何用纸制成的,并且对于所有已知元素,可以将它们构造成八面体形状。其他图显示了“俄罗斯娃娃”或“洋葱层”如何表示已知元素的2、8、8、18、18和32个中子-质子层。假定在时期7中有48种元素,因此the系元素与时期6中的稀土元素无关。这已通过实验得到证实。中子-质子单元由20μ介子组成,这与质子,中子和介子的高能物理观测结果一致。 5μ介子形成K介子,这是高能物理实验中经常检测到的另一个粒子。

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