Thermodynamics An Engineering Approach 7th Edition by Yunus A Cengel, Michael A Boles – Ebook PDF Instant Download/Delivery: 0077366743, 9780077366742
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ISBN 10: 0077366743
ISBN 13: 9780077366742
Author: Yunus A Cengel, Michael A Boles
Thermodynamics An Engineering Approach 7th Table of contents:
Chapter 1: Introduction and Basic Concepts
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Thermodynamics: An Overview
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Energy, Heat, and Work
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The Four Laws of Thermodynamics
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Temperature and Pressure
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Thermodynamic Systems and Properties
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State, Path, and Process
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The Zeroth Law of Thermodynamics
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The Concept of Energy
Chapter 2: Energy Transfer by Heat
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Heat Transfer Mechanisms
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Temperature and Thermal Energy
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Modes of Heat Transfer: Conduction, Convection, and Radiation
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Heat Transfer Equations
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Heat Capacity and Sensible Heat
Chapter 3: The First Law of Thermodynamics
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Energy Conservation
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The First Law of Thermodynamics: Internal Energy and Enthalpy
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The First Law Applied to Closed Systems
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Work and Heat in Thermodynamic Processes
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Applications of the First Law: Cycles and Processes
Chapter 4: The Second Law of Thermodynamics
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The Concept of Entropy
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Reversible and Irreversible Processes
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The Second Law and Entropy Changes
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The Carnot Cycle
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Thermodynamic Temperature Scale
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The Clausius and Kelvin-Planck Statements
Chapter 5: Entropy and Its Applications
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Entropy and the Second Law
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Entropy Changes in Ideal Gases
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Entropy Generation and the Irreversibility of Processes
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Entropy and Exergy
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Entropy in Thermodynamic Cycles
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Applications in Real-World Systems
Chapter 6: Exergy Analysis
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The Concept of Exergy
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Exergy and Its Importance in Engineering Systems
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The First and Second Laws Applied to Exergy
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Exergy Destruction and Efficiency
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Applications of Exergy Analysis in Systems
Chapter 7: Thermodynamic Properties of Fluids
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Properties of Pure Substances
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Phases of Matter: Solid, Liquid, and Gas
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Property Diagrams: P-V, T-S, and H-S Diagrams
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Tables and Charts for Thermodynamic Properties
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Equations of State: Ideal and Real Gases
Chapter 8: Energy Analysis of Closed Systems
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The First Law Applied to Closed Systems
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Specific Heat, Work, and Heat in Thermodynamic Processes
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Internal Energy and Enthalpy Changes
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Applications: Heating and Cooling, Thermodynamic Cycles
Chapter 9: Energy Analysis of Control Volumes
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Control Volume and Its Applications
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Mass, Energy, and Entropy Balance in Control Volumes
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Steady-Flow Processes and Devices
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Nozzles, Diffusers, Turbines, and Compressors
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Applications of Energy Balance in Engineering Systems
Chapter 10: Power and Refrigeration Cycles
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The Carnot Cycle and Its Efficiency
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Ideal Rankine Cycle: Steam Power Generation
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Ideal Brayton Cycle: Gas Turbines and Jet Engines
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Refrigeration and Heat Pumps
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Coefficient of Performance and Efficiency
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Real vs. Ideal Cycles and Their Implications
Chapter 11: Gas Power Cycles
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The Ideal and Actual Brayton Cycle
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Regenerative Cycles and Reheat Cycles
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Combined Cycles and Their Applications
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Performance of Gas Power Cycles
Chapter 12: Vapor and Gas Power Systems
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The Rankine Cycle: Ideal and Actual
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Superheating, Regeneration, and Reheat
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Combined Rankine and Brayton Cycles
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Real Power Plant Cycles
Chapter 13: Refrigeration and Heat Pump Systems
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The Refrigeration Cycle: Principles and Applications
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Reverse Rankine Cycle: Heat Pumps
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Coefficient of Performance (COP) of Refrigeration and Heat Pumps
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Vapor Compression Refrigeration Cycle
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Environmental Impact and Refrigerants
Chapter 14: Gas Mixtures and Psychrometrics
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Properties of Gas Mixtures
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Dalton’s Law and Ideal Gas Mixture
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Psychrometrics: Properties of Air and Water Vapor Mixtures
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The Psychrometric Chart
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Applications of Psychrometrics in Air-Conditioning and HVAC Systems
Chapter 15: Chemical Reactions and Combustion
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Energy and Chemical Reactions
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The First Law of Thermodynamics for Chemical Reactions
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Enthalpy of Formation and Heat of Reaction
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Combustion Reactions: Fuels and Energy Release
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Air-Fuel Mixtures and Theoretical Combustion
Chapter 16: Thermodynamic Relations
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Maxwell Relations
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Thermodynamic Potentials: Helmholtz and Gibbs Free Energy
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Gibbs Free Energy and Equilibrium
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The Clausius-Clapeyron Equation
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Applications of Thermodynamic Relations
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Tags: Yunus A Cengel, Michael A Boles, Thermodynamics, Engineering



