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Covalent Bonds Creation between Gas and Liquid Phase Change: Compatibility with Covalent and Even-Odd Rules Based on a “Specific Periodic Table for Liquids”

机译:气相和液相变化之间的共价键创建:与基于“液体的特定周期表”的共价规则和奇数规则兼容

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摘要

A decrease in temperature will eventually turn a gas into liquid and then into a solid. Each of these phase change shows a higher degree in cohesion of molecules. While it is usually admitted that molecules in solids form additional connections, the cohesion of molecules in liquids is usually explained by changes in kinetics of molecules. Given that the density of a solid is nearly the same than that of a liquid, the present paper assumes a different stand and considers that connections between molecules must be similar in liquids and in solids. The difference between gas, in which molecules are entirely loose, and liquid, is therefore the presence of an additional connection between gaseous molecules. This paper describes how and where these connections are built with the help of a few rules and a “specific periodic table for liquids”. The coherence of this approach is reinforced by its capacity to explain phase change of forty well-known molecules containing inorganic and organic elements.
机译:将气体的降低最终将气体变成液体,然后变成固体。这些相变中的每一个显示出分子的内聚力较高。虽然通常承认固体中的分子形成额外的连接,但通常通过分子动力学的变化来解释液体中分子的内聚力。鉴于固体的密度几乎与液体的密度几乎相同,本文呈现不同的支架,并认为分子之间的连接必须在液体和固体中相似。因此,其中分子完全松动的气体之间的差异是气态分子之间存在额外的连接。本文介绍了在几种规则的帮助下建立了这些连接的方式以及位置,以及“液体的特定周期表”。通过其解释含有无机和有机元素的四十个公知分子的相变的能力,加强这种方法的相干性。

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