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所在平台: Coursera |
课程主页: https://www.coursera.org/learn/macroscopic-microscopic-thermodynamics
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课程名称:宏观与微观热力学基础 课程概述:本课程第一部分从公理的角度探讨宏观和微观热力学的基本概念。在这一视角下,温度、热力学压力和化学势的含义格外清晰易懂。此外,基本关系的发展及其各种转化为理解物性关系和所需的集合概念提供了明确的路径,从而帮助我们理解原子和分子结构特性与宏观性质之间的关系。接着,我们将通过统计的视角探索原子和分子结构与宏观性质之间的关系,并明确这一方法的公理性。这将引导我们发展出描述分子量子态分布的分区函数,它是作为独立的宏观热力学属性的函数。 课程大纲: - 模块名称:课程介绍 描述:在此模块中,我们从公理的角度探讨宏观热力学的基础。在这一视角下,温度、热力学压力和化学势的含义非常清晰易懂。此外,基本关系的发展及其各种转化为物性关系提供了明确的路径。 - 模块名称:宏观热力学 描述:随后,我们将从统计的角度探索原子和分子结构与宏观性质之间的关系。通过公理性的方法,这一过程变得明晰。这将引导我们发展出分区函数,描述分子量子态的分布,作为独立的宏观热力学属性的函数。 - 模块名称:微观热力学 描述:在这里,我们从公理的角度探讨微观热力学。引入集合的概念以理解原子和分子结构特性与宏观性质之间的关系。这将引导我们发展出分区函数,将分子量子态的分布与独立的宏观热力学属性相关联。
Name:Program Introduction
Description:In this module we explore the basics of macroscopic thermodynamics from a postulatory point of view. In this view, the meaning of temperature, thermodynamic pressure and chemical potential are especially clear and easy to understand. In addition, the development of the Fundamental Relation and its various transformations leads to a clear path to property relations.
Name:Macroscopic Thermodynamics
Description: We then explore the relationship between atomic and molecu-lar structure and macroscopic properties by taking a statistical point of view. Using apostulatory approach, the method for doing this is made clear. This leads to the devel-opment of the partition function which describes the distribution of molecular quantumstates as a function of the independent, macroscopic thermodynamic properties.
Name:Microscopic Thermodynamics
Description:Here we explore microscopic thermodynamics from a postulatory point of view. We introduce the concept of ensembles as needed to understand the relationship between atomic and molecular structural properties and macroscopic properties. This leads to the partition function which relsates the distribution of molecular quantum states as a function of the independent, macroscopic thermodynamic properties.
Course 1 first explores the basics of both macroscopic and microscopic thermodynamics from a postulatory point of view. In this view, the meaning of temperature, thermodynamic pressure and chemical potential are especially clear and easy to understand. In addition , the development of the Fundamental Relation and its various transformations leads to a clear path to property relations and to the concept of ensembles needed to understand the relationship between atomic and molecular structural properties and macroscopic properties. We then explore the relationship between atomic and molecular structure and macroscopic properties by taking a statistical point of view. Using a postulatory approach, the method for doing this is made clear. This leads to the development of the partition function which describes the distribution of molecular quantum states as a function of the independent, macroscopic thermodynamic properties.