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所在平台: Coursera |
课程主页: https://www.coursera.org/learn/ideal-gases
课程评论:没有评论
课程名称:理想气体 概述:理想气体是统计热力学课程的第三部分,通过探讨在分子间作用力不重要时系统的行为来进行学习。该课程评估平移、旋转、振动和电子运动的相应分区函数,重点讨论单原子、双原子和多原子气体的性质。课程还涉及非反应和反应理想气体混合物,因其在工业上的应用广泛。同时,引入计算方法来计算平衡属性,并讨论理想气体性质的实际来源。此外,课程指出,除了正常的低密度气体外,金属中的光子和电子也可以视为理想气体。 课程大纲: 1. 简单理想气体性质关系 - 描述:本模块探讨在分子间作用力不重要的系统,评估平移、旋转、振动和电子运动的分区函数。重点讨论单原子、双原子和多原子气体的性质,并探索文献中相关性质的来源和经验估算方法。 2. 混合气体 - 描述:本模块讨论非反应和反应的理想气体混合物及其工业应用,介绍计算平衡属性的方法。 3. 光子和电子气体 - 描述:本模块探讨除了正常低密度气体外,光子和金属中的电子如何视为理想气体。
Name:Simple Ideal Gas Property Relations
Description:Module 1 starts an exploration of systems for which intermolecular forces are not important. This is done by evaluating the appropriate partition functions for translational, rotational, vibrational and/or electronic motion. In this module we explore pure ideal gases including monatomic, diatomic and polyatomic species. We also explore literature sources of properties and empirical estimation methods.
Name:Mixtures
Description:In Module 2 we discuss both non-reacting and reacting ideal gas mixtures as both have many industrial applications. Computational methods for calculating equilibrium properties are introduced.
Name:Photon and Electron Gases
Description:Interestingly, in addition to normal low density gases, photons and electrons in metals can be described as though they are ideal gases and so we discuss them.
Course 3 of Statistical Thermodynamics, Ideal Gases, explores the behavior of systems when intermolecular forces are not important. This done by evaluating the appropriate partition functions for translational, rotational, vibrational and/or electronic motion. We start with pure ideal gases including monatomic, diatomic and polyatomic species. We then discuss both non-reacting and reacting ideal gas mixtures as both have many industrial applications. Computational methods for calculating equilibrium properties are introduced. We also discuss practical sources of ideal gas properties. Interestingly, in addition to normal low density gases, photons and electrons in metals can be described as though they are ideal gases and so we discuss them.