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    1. Naturvetenskap och teknik
    2. Matematik och naturvetenskap
    3. Fysik

    Mere Thermodynamics

    AvDon S. Lemons

    Inbunden, Engelska, 2009

    535 kr

    Tillfälligt slut

    Fler format och utgåvor

    Häftad

    430 kr

    Beskrivning

    Presenting classical thermodynamics as a concise and discrete whole, Mere Thermodynamics is a perfect tool for teaching a notoriously difficult subject. Accomplished teacher Don S. Lemons introduces the physical theory's concepts and methods and uses them to solve problems from a broad range of physics. He illustrates, at a gentle pace, not only the fundamentals of the subject but also advanced topics such as the relationship between the second law of thermodynamics and entropy. He highlights the intellectual structure and history of the discipline and explores the logical consequences of each of the famous three laws. Lemons explains and develops the first two laws and their corollaries, the methods and applications of thermodynamics, and the third law, as well as non-fluid variables, equilibrium and stability, and two-phase systems. The book features end-of-chapter practice problems, an appendix of worked problems, a glossary of terms, and an annotated bibliography.

    Produktinformation

    • Utgivningsdatum:2009-02-02
    • Mått:140 x 216 x 20 mm
    • Vikt:363 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:224
    • Förlag:Johns Hopkins University Press
    • ISBN:9780801890147

    Utforska kategorier

    • Fysik inom Naturvetenskap och teknik

    Mer om författaren

    Don S. Lemons is a professor of physics at Bethel College and the author of Introduction to Stochastic Processes in Physics, also published by Johns Hopkins.

    Recensioner i media

    Mere Thermodynamics is a good learning tool for students, and it's an interesting and thought-provoking book for educators and professionals. American Journal of Physics This book is a little gem. Lemons has a lightness of touch that belies the weight of thought he has given to this subject and how to present it in a non trivial way to a beginner. No awkward corner is avoided or ignored, and the whole piece is touched by enthusiasm, clarity, a central awareness of its relevance to the real world. -- Peter Sammut Physics Education Lucidly written and enjoyable to read... An interesting and informative supplement to other textbooks. Times Higher Education Supplement

    Innehållsförteckning

    • Preface1. Definitions1.1. Thermodynamics1.2. System1.3. Boundary, Environment, and Interactions1.4. States and State Variables1.5. Equations of State1.6. Work1.7. HeatProblems2. Equilibrium2.1. Equilibrium2.2. Zeroth Law of Thermodynamics2.3. Empirical Temperature2.4. Traditional Temperature Scales2.5. Equilibrium ProcessesProblems3. Heat3.1. Quantifying Heat3.2. Calorimetry3.3. What is Heat?Problems4. The First Law4.1. Count Rumford4.2. Joule's Experiments4.3. The First Law of Thermodynamics4.4. Thermodynamic Cycles4.5. Cycle AdjustmentProblems5. The Second Law5.1. Sadi Carnot5.2. Statements of the Second Law5.3. Equivalence and Inequivalence5.4. Reversible Heat Engines5.5. Refrigerators and Heat PumpsProblems6. The First and Second Laws6.1. Rudolph Clausius6.2. Thermodynamic Temperature6.3. Clausius's TheoremProblems7. Entropy7.1. The Meaning of Reversibility7.2. Entropy7.3. Entropy Generation in Irreversible Processes7.4. The Entropy Generator7.5. Entropy Corollaries7.6. Thermodynamic Arrow of TimeProblems8. Fluid Variables8.1. What Is a Fluid?8.2. Reversible Work8.3. Fundamental Constraint8.4. Enthalpy8.5. Helmholtz and Gibbs Free Energies8.6. Partial Derivative Rules8.4. Thermodynamic Coeffi cients8.8. Heat CapacitiesProblems9. Simple Fluid Systems9.1. The Ideal Gas9.2. Room-Temperature Elastic Solid9.3. Cavity RadiationProblems10. Nonfluid Systems10.1. Nonfluid Variables10.2. The Theoretician's Rubber Band10.3. Paramagnetism10.4. Surfaces10.5. Chemical Potential10.6. Multivariate SystemsProblems11. Equilibrium and Stability11.1. Mechanical and Thermal Systems11.2. Principle of Maximum Entropy11.3. Other Stability Criteria11.4. Intrinsic Stability of a FluidProblems12. Two-Phase Systems12.1. Phase Diagrams12.2. Van der Waals Equation of State12.3. Two-Phase Transition12.4. Maxwell Construction12.5. Clausius-Clapeyron Equation12.6. Critical PointProblems13. The Third Law13.1. The Principle of Thomsen and Berthelot13.2. Entropy Change13.3. Unattainability13.4. Absolute EntropyProblemsAppendixesA. Physical Constants and Standard DefinitionsB. Catalog of 21 Simple CyclesC. Glossary of TermsD. Selected Worked ProblemsE. Answers to ProblemsAnnotated BibliographyIndex