Introduction To The Thermodynamics Of Materials, Sixth Edition David R. Gaskell
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A Review of Introduction To The Thermodynamics Of Materials, Sixth Edition by David R. Gaskell and David E. Laughlin
Introduction To The Thermodynamics Of Materials is a classic textbook that covers the fundamental principles and applications of thermodynamics in materials science and engineering. The sixth edition, published in 2017, is updated to reflect the broadening field of materials science and engineering and the advances in thermodynamic methods and tools.
The book is divided into three major sections: Thermodynamic Principles, Phase Equilibria, and Reactions and Transformations of Phases. The first section introduces the basic concepts and definitions of thermodynamics, such as energy, entropy, equilibrium, and state functions. It also covers the first and second laws of thermodynamics, the statistical interpretation of entropy, and the fundamental equations and their relationships. The second section deals with phase equilibrium in one-component and multi-component systems, the behavior of gases and solutions, and the Gibbs free energy composition and phase diagrams of binary systems. The third section focuses on reactions and transformations of phases, such as reactions involving gases, pure condensed phases, and components in condensed solution, electrochemistry, and thermodynamics of phase transformations.
The book features more than 50 new end-of-chapter problems and more than 50 new figures to illustrate the concepts and applications of thermodynamics. It also includes a nomenclature section and answers to selected problems. The book is suitable for undergraduate and graduate students in materials science and engineering, as well as for practicing engineers and researchers who want to refresh their knowledge or learn new aspects of thermodynamics.
Introduction To The Thermodynamics Of Materials is a comprehensive and authoritative textbook that provides a solid foundation for understanding and applying thermodynamics in materials science and engineering. It is written by two eminent professors who have extensive experience in teaching and research in this field. The book is highly recommended for anyone who wants to learn more about the thermodynamics of materials.
The book is organized in a logical and pedagogical manner, starting from the basic concepts and principles of thermodynamics and progressing to more advanced topics and applications. Each chapter begins with an introduction and a list of learning objectives, followed by a clear and concise presentation of the theory and examples. The examples are carefully chosen to illustrate the practical relevance and importance of thermodynamics in materials science and engineering. The book also provides numerous tables and figures that summarize the key equations and data for easy reference. At the end of each chapter, there are several exercises that test the understanding and application of the concepts and methods covered in the chapter. The exercises range from simple calculations and derivations to more challenging problems that require critical thinking and creativity. The book also offers online resources, such as additional problems, solutions, and slides, to enhance the learning experience. a474f39169