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Thermodynamic Properties and Strength of Bonds in Some Organic and Bioorganic Compounds

机译:一些有机和生物组化合物中的热力学性质和粘合强度

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Aim: The analysis of the gaseous and condensed thermodynamic function of all atoms of Mendeleev’s Periodic table was carried out and seventy nine equations of such type as Δg,f,sΨo = i ± f N, in which Δg,f,sΨo is thermodynamic function, N is the numberof atom electrons and i and f are stoichiometric coefficients, have been formulated. Method: The obtained equations can be used for the next calculation of bond strength in heteroatomic compounds. Observations: The strength of C-H and C-C bonds (enthalpy) in alkanes, of C-C, C-H,C-O, C=O and O-H bonds in carbohydrates for condensed phases were calculated first time by using Widows-Excel-function ?Search of the decision by a gradient descent method?. Conclusion: The reduced magnitudes of the force of all bonds in condensed phase, compared to gas state,designated as the strength of the bond (Sb) of carbohydrates are necessary to explain the presence of significant hydrogen bonds, dipole-dipole- and dispersive interactions in biochemical molecules.
机译:目的:进行Mendeleev&#8217的所有原子的气态和浓缩热力学功能的分析,并进行了周期表的七十九方程,如Δ g,f,sΨ o = i±f n,其中Δ g,f,sΨ o是热力学函数,n是原子电子和i和f是化学计量系数的数字。方法:所获得的等式可用于杂原子化合物中的结合强度的下一计算。观察结果:首次通过使用Wiwows-Excel-Functions来计算CC,Ch,Co,C = O和OH碳水化合物中的烷烃中的烷烃中CH和CC键(焓)的强度,并通过使用Wiwow-Excel-Function来搜索决定梯度下降方法?结论:与碳水化合物的键(Sb)强度相比,冷凝相中所有键的力的力的缩小量减少,以解释显着的氢键,偶极子 - 偶极和分散相互作用在生化分子中。

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