Chemical engineering thermodynamics pdf free download
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Chemical reaction equilibria: one reactionġ7.
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Some special implications and applications of the First and Second Lawsġ6. Third Law and molecular basis of the Second and Third Lawsġ5. Osmosis, osmotic pressure, osmotic equilibrium, and reverse osmosisġ4. Applications to liquid-liquid equilibria and liquid-liquid extractionġ3. Gas-liquid equilibria (GLE) and applications to gas absorption or desorptionġ2. Vapor-liquid equilibria (VLE) with applications to distillationġ1. Thermodynamic fugacity, thermodynamic activity, and other thermodynamic functions (U, H, S, A, G, μi) of ideal and nonideal solutionsġ0. Introduction of Helmholtz free energy, Gibbs free energy, chemical potential, and applications to phase equilibria, heat transfer and mass transferĩ. The Second Law, absolute temperature, entropy definition and calculation, and entropy inequalityĨ. Applications of the mass and energy balances and the equations of state to several classes of thermodynamic problemsħ. Equations of state for one-component and multicomponent systemsĦ. Internal energy, the First Law, heat, conservation of total energyĥ. Phases, interfaces, dispersions, and the first three principles of thermodynamicsĤ. Problems and concepts at the interface of mechanics and thermodynamicsģ. Many detailed examples and study questions will encourage independent learning and will enforce the application of fundamental concepts.'Jochen Lauterbach, University of South Carolina Customer reviews Not yet reviewedĢ. Its modern examples go beyond traditional thermodynamics and provide students with insight into twenty-first-century macroscopic and microscopic phenomena. 'This book offers a refreshing pedagogical approach to thermodynamics and is very valuable for chemical and mechanical engineers alike. Practical applications covered include distillation, gas absorption, liquid-liquid extraction, reaction equilibria, energy efficiency, process efficiency, osmosis, surface thermodynamics, and pressure and temperature variations in gravity.Practical, up-to-date examples linking theory to real-world applications improve students' understanding of the core principles of thermodynamics.Covers gases, liquids, solids, liquid crystals and dispersions, providing students with a broad range of experience, and showcasing the general applicability of the subject.
#CHEMICAL ENGINEERING THERMODYNAMICS PDF FREE DOWNLOAD MANUAL#
This is a carefully organized, highly pedagogical treatment, including over 500 open-ended study questions for discussion, over 150 varied homework problems, clear and objective standards for measuring student progress, and a password-protected solution manual for instructors. A broad range of real-world applications relate key topics to contemporary issues, such as energy efficiency, environmental engineering and climate change, and further reinforce students' understanding of the core material. Logical and lucid explanations introduce core thermodynamic concepts in the context of their measurement and experimental origin, giving students a thorough understanding of how theoretical concepts apply to practical situations. Master the principles of thermodynamics with this comprehensive undergraduate textbook, carefully developed to provide students of chemical engineering and chemistry with a deep and intuitive understanding of the practical applications of these fundamental ideas and principles. THE FUNDAMENTAL PROPERTY RELATION DERIVATIVE RELATIONS Example 5.1 Pressure dependence of H Example 5.2 Entropy change with respect to T a t constant P Example 5.Description Product filter button Description
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UNIT II GENERALIZED ANALYSIS OF FLUID PROPERTIES CHAPTER 5 CLASSICAL THERMODYNAMICSGENERALIZATION TO ANY FLUID 5. RANiUNE MODIFlCATlONS Enample 4.3 RanRine with reheat Exansple 4.4 Regenerative Rankine cyck REFRIGERATION Example 4.5 Refigeration by vapor-compression cycle LIQUEFACTION Example 4.6 Liquefacction of m t k by the t i d e process INTERNAL COMBUSTION ENGINES Emqk 4.7 Air-standard Bmyton cycle t k d efiiency Exiunple 4.8 Thermal eficimuy of he Ofto engine Example 4.9 Thermal efkiency of a Diesel engine FLUIDFLOW PROBLEM-SOLVINGSTRATEGlES PRACTICE PROBLEMS HOMEWORK PROBLEMS
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THE CARNOT CYCLE THE RANTUNE CYCLE Euunple 4.1 R a n h e cyck Example 4.2 PUMPSANDCOMPRESSORS STRATEGIES FOR APPLYING THE JWTROPY BALANCEĪDDITIONAL STEADY-STATE EXAMPLES Exanrple 3.2l Heat pump analysis Example 3.12 Entropy in a heat exchanger 3.16 UNSTEADY-STATE OPEN SYSTEMS (Optional) EuzmpIe 3.13 Entropy c h g e in a leaky tank EuMtple 3.14 An ideal gas leaking through o turbine (unsteady-state) 3.17 THE ENTROPY BALANCE IN BRlEF 3.18 SUMMARY 3.19 PRACTICE PROBLEMS 3.20 HOMEWORK PROBLEMSĬHAPTER 4 TELEBMODYNAMICS OF PROCESSES 4.1 4.2 B I N E CALCULATIONS Eramgk 3-10 M i n e emiency MULTISTAGE TURBINES