Introduction to Thermodynamics

“Introduction to Thermodynamics” by K. Sherwin is a comprehensive resource published by Springer Netherlands on April 30, 1993. This softcover reprint of the original first edition spans 320 pages and is presented in English. The book serves as an introduction to thermodynamics tailored for students enrolled in degree and HND courses in engineering, addressing the evolving educational landscape that emphasizes self-learning alongside traditional classroom instruction.
Readers will find that the text is concise and focused, minimizing mathematical complexity while providing clear definitions and summaries at the end of each chapter. The book emphasizes problem-solving through modeling various situations, featuring worked examples and end-of-chapter problems with outline solutions. Topics such as mechanics and physics are integral to the content, reflecting the foundational principles of thermodynamics that remain relevant despite ongoing debates in the field.
Official synopsis Publisher
As the title implies, this book provides an introduction to thermodynamics for students on degree and HND courses in engineering. These courses are placing increased emphasis on business, design, management, and manufacture. As a consequence, the direct class-time for thermodynamics is being reduced and students are encouraged to self learn. This book has been written with this in mind. The text is brief and to the point, with a minimum of mathematical content. Each chapter defines a list of aims and concludes with a short summary. The summary provides an overview of the key words, phrases and equations introduced within the chapter. It is recognized that students see thermodynamics as a problem-solving activity and this is reflected by the emphasis on the modelling of situations. As a guide to problem solving, worked examples are included throughout the book. In addition, students are encouraged to work through the problems at the end of each chapter, for which outline solutions are provided. There is a certain timelessness about thermodynamics because the funda mentals do not change. However, there is currently some debate over which sign convention should apply to work entering, or leaving, a thermodynamic system. I have retained the traditional convention of work out of a system being positive. This fits in with the concept of a heat engine as a device that takes in heat and, as a result, produces positive work.
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