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Thermal physics in the introductory physics course: Why and how to teach it from a unified atomic perspective

机译:入门物理学课程中的热物理学:为什么以及如何从统一原子角度讲授热物理学

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Heat and thermodynamics are traditionally taught in the introductory physics course from a predominantly macroscopic point of view. However, it is advantageous to adopt a more modem approach that systematically builds on students' knowledge of the atomic structure of matter and of elementary mechanics. By focusing on the essential physics without requiring more than elementary classical mechanics, this approach can be made sufficiently simple to be readily teachable during five or six weeks of an ordinary calculus-based introductory physics course. This approach can be highly unified, using atomic considerations to infer the properties of macroscopic systems while also enabling thermodynamic analyses independent of specific atomic models. Furthermore, this integrated point of view provides a deeper physical understanding of basic concepts (such as internal energy, heat, entropy, and absolute temperature) and of important phenomena (such as equilibrium, fluctuations, and irreversibility). (C) 1999 American Association of Physics Teachers. [References: 6]
机译:传统上,热学和热力学是从宏观的角度在物理入门课程中教授的。但是,采用一种更现代的方法是有利的,该方法可以系统地建立在学生对物质的原子结构和基本力学的知识上。通过只关注基本物理学而不需要基本的经典力学,这种方法就可以变得足够简单,从而可以在基于微积分的普通入门物理课程的五到六周内轻松教授。该方法可以高度统一,使用原子考虑因素来推断宏观系统的属性,同时还可以进行独立于特定原子模型的热力学分析。此外,这种综合的观点对基本概念(例如内部能量,热量,熵和绝对温度)和重要现象(例如平衡,波动和不可逆性)提供了更深刻的物理理解。 (C)1999年美国物理教师协会。 [参考:6]

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