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Graphical Thermodynamics and Ideal Gas Power Cycles Ideal Gas Thermodynamics in Brief

Graphical Thermodynamics and Ideal Gas Power Cycles Ideal Gas Thermodynamics in Brief

by Mufid I. Helal
English | 2017 | ISBN: 1606505068 | 303 Pages | True PDF | 2.72 MB

The aim of this book is to improve the teaching, understanding and self-learning of thermodynamics through a two part approach: (i) offering a concise model of gas thermodynamics; and (ii) offering graphical approach to solving ideal gas thermodynamics. The book abbreviates the basic topics of ideal gas thermodynamics, including both the first and second laws of thermodynamics, as well as all ideal gas laws for closed systems. This abbreviation affects the derivations of the equations, but not the complexity of the equations so that the reader’s job of solving problems will be made easier. At the same time, the book also offers new powerful solution methods, along with relevant discussions and derivations which will improve teaching, understanding and self-learning of thermodynamics.

In this book, an almost new approach to modern thermodynamics has been applied. One or more useful qualitative discussion statements have been extracted from each equation. These and other important statements were numbered and their titles were situated in an index titled “Helal and Others’ statements, definitions and rules.” This ensures very quick obtaining of the required statements, rules, defi nitions, equations, and their theoretical base that will ease readers, qualitative discussions and calculations. Almost all ideal gas closed system thermodynamic topics are either discussed in depth or deeply abbreviated. The topics discussed in depth are either new original ones or valuable classical ones that increase the ability for better understanding but are overlooked or deeply abbreviated in modern thermodynamic books. In both cases, they are signifi cantly improved.

The deeply abbreviated topics are rigorously discussed in depth in the majority of modern thermodynamic books. To dissipate any misunderstanding, the equations and statements that can be misunderstood are followed by explanatory sentences.

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