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Ordinal Explanation of the Periodic System of Chemical Elements

机译:化学元素周期系统的序数解释

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摘要

Textbooks often claim that quantum mechanics explained the periodic system: namely, the actual configuration of electronic orbits that is responsible for the elementu27s chemical properties can be described as the one that minimizes the total energy, and the energy of each configuration can be computed by using quantum mechanics.However, a careful analysis of this explanation reveals that, in addition to the basic equations of quantum mechanics, we need some heuristic rules that do not directly follow from quantum physics. One reason why additional heuristics are necessary is that the corresponding numerical equations are extremely difficult to solve, and as we move to atoms with larger and larger atomic numbers Z, they become even more difficult. Moreover, as Z grows, we must take relativistic effects into consideration, and this means going from partial differential equations to even more mathematically difficult operator equations.In this paper, we show that if instead of the (often impossible) numerical optimization, we consider the (available) ordinal information, we can then explain the observed periodic system.
机译:教科书经常声称,量子力学解释了周期系统:即,负责元素化学性质的电子轨道的实际结构可以描述为使总能量最小的结构,并且可以计算每种结构的能量但是,仔细分析此解释后发现,除了量子力学的基本方程式之外,我们还需要一些启发式规则,这些规则不能直接遵循量子物理学。之所以需要额外的启发法,是因为相应的数字方程式极难求解,而且当我们转向原子序数Z越来越大的原子时,它们变得更加困难。此外,随着Z的增长,我们必须考虑相对论效应,这意味着从偏微分方程变为数学上更困难的算子方程。在本文中,我们表明,如果考虑代替(通常是不可能的)数值优化,我们会考虑(可用的)顺序信息,然后我们可以解释观察到的周期系统。

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