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Geometrical Description of Chemical Equilibrium and Le Chatelier’s Principle: Two-Component Systems

机译:化学均衡和Le Chatelier原理的几何描述:双组件系统

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Chemical equilibrium is one of the most important concepts in chemistry. The changes in properties of the chemical system at equilibrium induced by variations in pressure, volume, temperature, and concentration are always included in classroom teaching and discussions. This work introduces a novel, geometrical approach to understanding the chemical system at equilibrium with the example of a simple two-component system and shows how the equilibrium changes under the influence of external perturbations. The paper discusses how thermodynamic factors (contained in the equilibrium constant K ) and the conservation of mass principle govern the equilibrium state. The equilibrium and its changes are described using the geometrical representation in concentration space. The goal of this work is to help students better understand the basis behind the well-known Le Chatelier’s principle and equilibrium in general.
机译:化学均衡是化学中最重要的概念之一。 通过压力,体积,温度和浓度的变化诱导的平衡性质的性能变化始终包括在课堂教学和讨论中。 这项工作介绍了一种新颖的几何方法,以了解均衡的化学体系与简单的双组分系统的例子,并展示了在外部扰动的影响下的平衡变化。 本文讨论了热力学因素如何(包含在平衡常数k)和质量原则的守恒中的衡量标准。 使用浓度空间中的几何表示来描述平衡及其变化。 这项工作的目标是帮助学生更好地了解众所周知的Le Chatelier原则和均衡的基础。

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