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Standard deviations of chemical reaction rates and validity ranges of the statistical theory

机译:统计理论的化学反应速率和有效性范围的标准偏差

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摘要

Validity ranges of the statistical theory of chemical reactions are discussed, On the basis of the quantum mechanical scattering theory, the rate of the chemical reaction of the complex-formation mode is formulated. The interaction matrix elements between resonance states and scattering continua are regarded as stochastic variables. The expectation value of the reaction rate is shown to coincide with the prediction of the conventional statistical theory if the condition of overlapping resonance is fulfilled. The standard deviation is found to be inversely proportional to the number of resonance states involved in the width of the collision energy. High density of vibrational energy levels of the collision complex serves to suppress the standard deviation and to make the statistical theory accurate. The condition for the conventional statistical theory to hit the correct value with probabilities more than 99% is obtained as a relation between the number of vibrational modes and the depth of the potential energy well of the collision complex.& para;& para;
机译:在量子机械散射理论的基础上讨论了化学反应统计理论的有效范围,配制了复合形成模式的化学反应速率。共振状态和散射连续散之间的交互矩阵元素被认为是随机变量。如果满足重叠共振的条件,则显示反应速率的预期值与传统统计理论的预测一致。发现标准偏差与碰撞能量宽度所涉及的共振状态的数量成反比。碰撞复合物的振动能量水平的高密度用于抑制标准偏差并使统计理论准确。常规统计理论的条件以概率击中的概率超过99%,作为振动模式的数量与碰撞复合物的潜在能量井的深度之间的关系。¶¶

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