Advanced Engineering Thermodynamics 3rd Edition by Adrian Bejan – Ebook PDF Instant Download/Delivery: 9780471677635, 0471677639
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Product details:
ISBN 10: 0471677639
ISBN 13: 9780471677635
Author: Adrian Bejan
Table of contents:
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The First Law of Thermodynamics
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Elements of Thermodynamics Terminology
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The First Law for Closed Systems
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Work Transfer
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Heat Transfer
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Energy Change
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The First Law for Open Systems
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Historical Background
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The Structured Presentation of the First Law
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References
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Problems
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The Second Law of Thermodynamics
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The Second Law for Closed Systems
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The Second Law for Open Systems
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The Local Thermodynamic Equilibrium Model
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The Entropy Maximum and Energy Minimum Principles
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Carathéodory’s Two Axioms
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A Heat Transfer Man’s Two Axioms
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Historical Background
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References
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Problems
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Entropy Generation, or Exergy Destruction
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Lost Available Work
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Cycles
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Nonflow Processes
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Steady-Flow Processes
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Mechanisms of Entropy Generation or Exergy Destruction
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Entropy-Generation Minimization
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References
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Problems
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Single-Phase Systems
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Simple System
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Equilibrium Conditions
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The Fundamental Relation
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Legendre Transforms
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Relations between Thermodynamic Properties
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Partial Molal Properties
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Ideal Gas Mixtures
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Real Gas Mixtures
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References
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Problems
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Exergy Analysis
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Nonflow Systems
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Flow Systems
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Generalized Exergy Analysis
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Air-Conditioning Applications
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Other Aspects of Exergy Analysis
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References
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Problems
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Multiphase Systems
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The Energy Minimum Principle in U, H, F, and G Representations
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The Internal Stability of a Simple System
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The Continuity of the Vapor and Liquid States
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Phase Diagrams
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Corresponding States
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References
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Problems
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Chemically Reactive Systems
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Equilibrium
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Irreversible Reactions
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Steady-Flow Combustion
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The Chemical Exergy of Fuels
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Constant-Volume Combustion
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References
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Problems
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Power Generation
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Maximum Power Subject to Size Constraint
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Maximum Power from Hot Stream
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External Irreversibilities
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Internal Irreversibilities
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Advanced Steam-Turbine Power Plants
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Advanced Gas-Turbine Power Plants
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Combined Steam-Turbine and Gas-Turbine Power Plants
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References
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Problems
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Solar Power
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Thermodynamic Properties of Thermal Radiation
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Reversible Processes
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Irreversible Processes
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The Ideal Conversion of Enclosed Blackbody Radiation
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Maximization of Power Output per Unit Collector Area
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Convectively Cooled Collectors
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Extraterrestrial Solar Power Plant
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Nonisothermal Collectors, Time-Varying Conditions, and Solar-Driven Refrigerators
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Global Circulation and Climate
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References
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Problems
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Refrigeration
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Joule-Thomson Expansion
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Work-Producing Expansion
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Brayton Cycle
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Optimal Intermediate Cooling
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Liquefaction
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Refrigerator Models with Heat Transfer Irreversibilities
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Magnetic Refrigeration
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References
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Problems
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Entropy-Generation Minimization
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Trade-off between Competing Irreversibilities
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Balanced Counterflow Heat Exchangers
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Heat Exchangers with Negligible Pressure-Drop Irreversibility
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Storage Systems
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Power Maximization or Entropy-Generation Minimization
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