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111206s1972 nyua ob 001 0 eng d |
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|a OCLCE
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|a 894790875
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|a 9781483158730
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|z 0080168914
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|z 9780080168913
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|a (OCoLC)767689409
|z (OCoLC)894790875
|z (OCoLC)899000677
|z (OCoLC)948756643
|z (OCoLC)974617829
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|a dlr
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|a QC311.5
|b .M68 1972
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|a SCI
|x 065000
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|a UG 1000
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|a UG 1200
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|a Morrill, Bernard.
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|a An introduction to equilibrium thermodynamics.
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|a New York :
|b Pergamon Press,
|c [1972]
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|a 1 online resource (xi, 353 pages) :
|b illustrations
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
|b cr
|2 rdacarrier
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|a Pergamon unified engineering series ;
|v 14
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|a Includes bibliographical references.
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|3 Use copy
|f Restrictions unspecified
|2 star
|5 MiAaHDL
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|a Electronic reproduction.
|b [Place of publication not identified] :
|c HathiTrust Digital Library,
|d 2011.
|5 MiAaHDL
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|a Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002.
|u http://purl.oclc.org/DLF/benchrepro0212
|5 MiAaHDL
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|a digitized
|c 2011
|h HathiTrust Digital Library
|l committed to preserve
|2 pda
|5 MiAaHDL
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|a Print version record.
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|a Front Cover; An Introduction to Equilibrium Thermodynamics; Copyright Page; Table of Contents; Preface; Chapter 1. First Law of Thermodynamics; 1 -1 Thermodynamics; 1-2 Temperature; 1-3 Equilibrium Concepts; 1-4 Systems; 1 -5 Perfect Gas as a Thermometer; 1-6 Work; 1-7 Heat; 1-8 Heat Capacity; 1 -9 First Law of Thermodynamics; 1-10 Energy of a Perfect Gas (Translational Degrees of Freedom); 1-11 Thermodynamic Properties; 1-12 Specific Heat at Constant Volume ; 1-13 Specific Heat at Constant Pressure; 1-14 Reversible Process; 1-15 Carnot Cycle; 1-16 Non-mechanical Work; Problems; References.
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|a Chapter 2. The Statistical Inference of Thermodynamics2-1 Systems and Ensembles; 2-2 Probability; 2-3 Uncertainty of the Statistics; 2-4 Entropy and Equilibrium; 2-5 The Probability Distribution; 2-6 Alternate Method of Formulating the Probability Distribution; 2-7 The Partition Function; 2-8 The Third Law of Thermodynamics; 2-9 Grand Partition Function; Problems; References; Chapter 3. Ideal Gas System: Maxwell-Boltzmann, Fermi-Dirac, Bose-Einstein; 3-1 Schr�odinger Wave Equation; 3-2 Wave Equation for Ideal Monatomic Gas; 3-3 Subsystems; 3-4 Degeneracy; 3-5 The Ideal Monatomic Gas.
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|a 3-6 Maxwell-Boltzmann Distributions3-7 Fermi-Dirac and Bose-Einstein Gases; 3-8 The Ideal MB Gas as the Limit of F D and BE Statistics; 3-9 Black Body Radiation (An Example of a Photon Gas); 3-10 Electron Gas in Metals (Perfect Electron Gas); Problems; References; Chapter 4. Ideal Diatomic Gas and Perfect Crystal; 4-1 Model of Ideal Diatomic Gas; 4-2 Translational Partition Function; 4-3 Rotational Partition Function; 4-4 Vibrational Partition Function -- Harmonic Oscillator; 4-5 Electronic Partition Function; 4-6 Summary of Diatomic Gas; 4-7 Perfect Crystal; Problems; References.
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|a Chapter 5. Second Law of Thermodynamics5-1 A Macroscopic Look at Entropy; 5-2 Second Law of Thermodynamics; 5-3 Entropy in a Reversible System; 5-4 Entropy in an Irreversible System; 5-5 Clausius' Inequality; Problems; References; Chapter 6. Thermodynamic Functions; 6-1 Transformation of Thermodynamic Variables; 6-2 Legendre Transformation; 6-3 Enthalpy; 6-4 Helmholtz Function; 6-5 Gibbs Function; 6-6 Relationship Between Helmholtz and Massieu Functions; 6-7 Legendre Transformation of Entropic Form of the Fundamental Equation; 6-8 Maxwell Relations; 6-9 Example Proble-Osmosis.
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|a 6-10 Extensive and Intensive Thermodynamic State Parameters6-11 Jacobian Transformations; 6-12 Integration of dU; Problems; References; Chapter 7. Flow Systems; 7-1 Steady State System; 7-2 Pure Substances; 7-3 Tabulated Properties; 7-4 Some Specific Flow Processes; 7-5 General Flow Process; Problems; References; Chapter 8. Thermal Energy Converters; 8-1 Closed and Open System Analysis; 8-2 Closed System Analysis; 8-3 Rankine Cycle; Problems; References; Chapter 9. Non-reactive Mixtures of Ideal Gases; 9-1 Mass Fractions and Mole Fractions; 9-2 Gibbs-Dalton Law; 9-3 Partial Volume Concepts.
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|a An Introduction to Equilibrium Thermodynamics discusses classical thermodynamics and irreversible thermodynamics. It introduces the laws of thermodynamics and the connection between statistical concepts and observable macroscopic properties of a thermodynamic system. Chapter 1 discusses the first law of thermodynamics while Chapters 2 through 4 deal with statistical concepts. The succeeding chapters describe the link between entropy and the reversible heat process concept of entropy; the second law of thermodynamics; Legendre transformations and Jacobian algebra. Finally, Chapter 10 provides a.
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|a Thermodynamic equilibrium.
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|a �Equilibre thermodynamique.
|0 (CaQQLa)201-0129238
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|a SCIENCE
|x Mechanics
|x Thermodynamics.
|2 bisacsh
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|a Thermodynamic equilibrium
|2 fast
|0 (OCoLC)fst01149827
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|a Gleichgewicht
|2 gnd
|0 (DE-588)4121372-5
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|a Thermodynamik
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|a Thermodynamica.
|2 gtt
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|a Evenwichten.
|2 gtt
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|a Thermodynamique.
|2 ram
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|i Print version:
|a Morrill, Bernard.
|t Introduction to equilibrium thermodynamics.
|d New York : Pergamon Press [1972]
|w (DLC) 73173824
|w (OCoLC)533300
|
830 |
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0 |
|a Pergamon unified engineering series ;
|v 14.
|
856 |
4 |
0 |
|u https://sciencedirect.uam.elogim.com/science/book/9780080168913
|z Texto completo
|