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Chemical equilibria / / Michel Soustelle
Chemical equilibria / / Michel Soustelle
Autore Soustelle Michel
Pubbl/distr/stampa Hoboken, NJ : , : Wiley, , 2015
Descrizione fisica 1 online resource (179 p.)
Disciplina 541.392
Collana Chemical engineering series : chemical thermodynamics set
Soggetto topico Thermodynamics - Mathematical models
Chemical equilibrium - Mathematical models
Phase transformations (Statistical physics)
ISBN 1-119-17856-8
1-119-17854-1
1-119-17855-X
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Table of Contents; Title; Copyright; Preface; Notations and Symbols; 1: Physico-Chemical Transformations and Equilibria; 1.1. Characteristic parameters of physico-chemical transformations; 1.2. Entropy production during the course of a transformation in a closed system; 1.3. Affinity of a transformation; 1.4. De Donder's inequality - direction of the transformations and equilibrium conditions; 1.5. Heats of transformation; 1.6. Set of points representing the equilibrium states of a transformation; 1.7. Closed systems accommodating multiple reactions
1.8. Direction of evolution and equilibrium conditions in an open system1.9. Azeotropic transformations; 2: Properties of States of Physico-Chemical Equilibrium; 2.1. Laws of displacement of an equilibrium; 2.2. Properties of all the equilibria in a system; 2.3. Phase laws; 2.4. Indifferent states; 2.5. Thermodynamically-equivalent systems; 2.6. Stability of equilibria; 3: Molecular Chemical Equilibria; 3.1. Law of mass action - equilibrium constants; 3.2. Graphical representations of equilibria - pole diagrams; 3.3. Representation of the evolution of an equilibrium with the temperature
3.4. Binary diagrams for chemical equilibrium3.5. Ternary diagrams of chemical equilibria; 3.6. Quaternary diagrams of chemical equilibria; 4: Determination of the Values Associated with Reactions - Equilibrium Calculations; 4.1. Reminders of a few thermodynamic relations; 4.2. Enthalpies of reaction - thermochemistry; 4.3. Reaction entropies; 4.4. Specific heat capacities; 4.5. Experimental determination of the equilibrium constants; 4.6. Calculation of the equilibrium constants on the basis of other thermodynamic data
4.7. Determination of the equilibrium constants on the basis of spectral data and statistical thermodynamics4.8. Thermodynamic tables and databanks; 4.9. Estimation of thermodynamic data; 4.10. Thermodynamic calculations for complex systems; APPENDICES; Appendix 1: Recap on the Reference States of Solutions; A1.1. Concentration and molar fraction; A1.2. Chemical potentials and activity coefficients; A1.3. Characterization of the imperfection of a real solution by the excess Gibbs energy; Appendix 2: Recap of statistical thermodynamics; A2.1. The three branches of statistics
A2.2. Partition functions of a molecule objectA2.3. Canonical partition function; A2.4. Canonical partition functions and thermodynamic functions; A2.5. Equilibrium constants and molecular partition functions; Bibliography; Index; End User License Agreement
Record Nr. UNINA-9910131529403321
Soustelle Michel  
Hoboken, NJ : , : Wiley, , 2015
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Chemical equilibria / / Michel Soustelle
Chemical equilibria / / Michel Soustelle
Autore Soustelle Michel
Pubbl/distr/stampa Hoboken, NJ : , : Wiley, , 2015
Descrizione fisica 1 online resource (179 p.)
Disciplina 541.392
Collana Chemical engineering series : chemical thermodynamics set
Soggetto topico Thermodynamics - Mathematical models
Chemical equilibrium - Mathematical models
Phase transformations (Statistical physics)
ISBN 1-119-17856-8
1-119-17854-1
1-119-17855-X
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Table of Contents; Title; Copyright; Preface; Notations and Symbols; 1: Physico-Chemical Transformations and Equilibria; 1.1. Characteristic parameters of physico-chemical transformations; 1.2. Entropy production during the course of a transformation in a closed system; 1.3. Affinity of a transformation; 1.4. De Donder's inequality - direction of the transformations and equilibrium conditions; 1.5. Heats of transformation; 1.6. Set of points representing the equilibrium states of a transformation; 1.7. Closed systems accommodating multiple reactions
1.8. Direction of evolution and equilibrium conditions in an open system1.9. Azeotropic transformations; 2: Properties of States of Physico-Chemical Equilibrium; 2.1. Laws of displacement of an equilibrium; 2.2. Properties of all the equilibria in a system; 2.3. Phase laws; 2.4. Indifferent states; 2.5. Thermodynamically-equivalent systems; 2.6. Stability of equilibria; 3: Molecular Chemical Equilibria; 3.1. Law of mass action - equilibrium constants; 3.2. Graphical representations of equilibria - pole diagrams; 3.3. Representation of the evolution of an equilibrium with the temperature
3.4. Binary diagrams for chemical equilibrium3.5. Ternary diagrams of chemical equilibria; 3.6. Quaternary diagrams of chemical equilibria; 4: Determination of the Values Associated with Reactions - Equilibrium Calculations; 4.1. Reminders of a few thermodynamic relations; 4.2. Enthalpies of reaction - thermochemistry; 4.3. Reaction entropies; 4.4. Specific heat capacities; 4.5. Experimental determination of the equilibrium constants; 4.6. Calculation of the equilibrium constants on the basis of other thermodynamic data
4.7. Determination of the equilibrium constants on the basis of spectral data and statistical thermodynamics4.8. Thermodynamic tables and databanks; 4.9. Estimation of thermodynamic data; 4.10. Thermodynamic calculations for complex systems; APPENDICES; Appendix 1: Recap on the Reference States of Solutions; A1.1. Concentration and molar fraction; A1.2. Chemical potentials and activity coefficients; A1.3. Characterization of the imperfection of a real solution by the excess Gibbs energy; Appendix 2: Recap of statistical thermodynamics; A2.1. The three branches of statistics
A2.2. Partition functions of a molecule objectA2.3. Canonical partition function; A2.4. Canonical partition functions and thermodynamic functions; A2.5. Equilibrium constants and molecular partition functions; Bibliography; Index; End User License Agreement
Record Nr. UNINA-9910809214603321
Soustelle Michel  
Hoboken, NJ : , : Wiley, , 2015
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Computational thermo-fluid dynamics [[electronic resource] ] : in materials science and engineering / / Petr A. Nikrityuk
Computational thermo-fluid dynamics [[electronic resource] ] : in materials science and engineering / / Petr A. Nikrityuk
Autore Nikrityuk Petr A
Edizione [2nd ed.]
Pubbl/distr/stampa Weinheim, Germany, : Wiley-VCH Verlag, c2011
Descrizione fisica 1 online resource (371 p.)
Disciplina 333.79
620.11
Soggetto topico Materials - Thermal properties - Mathematical models
Thermodynamics - Mathematical models
Fluid dynamics - Mathematical models
Heat - Transmission - Mathematical models
Mass transfer - Mathematical models
ISBN 3-527-63608-0
1-280-66276-X
9786613639691
3-527-63607-2
3-527-63609-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Computational Thermo-Fluid Dynamics; Contents; Preface; Acknowledgments; 1 Introduction; 1.1 Heat and Fluid Flows in Materials Science and Engineering; 1.2 Overview of the Present Work; 2 Mathematical Description of Physical Phenomena in Thermofluid Dynamics; 2.1 Conservation Equations for Continuum Media; 2.1.1 Conservation of Mass; 2.1.2 Conservation of Momentum; 2.1.3 Energy Conservation Equation; 2.1.4 Conservation of Chemical Species; 2.1.5 Boussinesq Approximation; 2.1.6 Unified Form of Conservation Equations; 2.1.7 Nondimensional Form of Conservation Equations; 2.1.8 Short Summary
2.2 Boundary and Initial Conditions2.2.1 Heat Transfer; 2.2.2 Solutal Transfer; 2.2.3 Fluid Dynamics; 2.3 Conservation Equations in Electromagnetics; 2.3.1 Maxwell Equations; 2.3.2 Induction and Poisson Equations; 2.3.3 An Example of a Low Magnetic Reynolds Number Approximation: Rotating Magnetic Field; 3 Discretization Approaches and Numerical Methods; 3.1 The Finite Difference Method; 3.1.1 Introduction; 3.1.2 Approximation Schemes; 3.1.3 Example of Conservative Property of FDM; 3.1.4 Discretization Schemes of Unsteady Equations; 3.1.5 Example of Unsteady Diffusion Equation
3.2 The Finite Volume Method3.2.1 Basic Concept; 3.2.2 Interpolation Schemes; 3.2.3 Linearized Form of Discretized Conservation Equation; 3.2.4 Treatment of Source Terms; 3.2.5 Boundary Conditions; 3.2.6 Comparative Study of Schemes for One-Dimensional Convection/Diffusion Problem; 3.3 Solution of Linear Equation Systems; 3.3.1 Direct Methods; 3.3.2 Iterative Methods; 3.3.3 Residuals and Convergence; 3.3.4 Multigrid Method; 3.3.5 Illustration of Iterative Methods; 4 Calculations of Flows with Heat and Mass Transfer; 4.1 Solution of Incompressible Navier-Stokes Equations
4.2 Pressure and Velocity Coupling: SIMPLE Family4.2.1 SIMPLE; 4.2.2 SIMPLER; 4.2.3 SIMPLE with Collocated Variables Arrangement; 4.3 Illustrations of Schemes for Flow with Heat Transfer; 4.4 Complex Geometry Problems on Fixed Cartesian Grids; 4.4.1 Immersed Boundary Methods; 4.4.2 Cartesian Grid Methods; 4.4.3 Immersed Surface Reconstruction; 4.4.4 Illustration of Continuous-Forcing IBM; 5 Convection-Diffusion Phase-Change Problems; 5.1 Some Aspects of Solidification Thermodynamics; 5.1.1 One-Component Melts; 5.1.2 Binary Alloys; 5.1.3 Interface and Equilibrium
5.2 Modeling of Macroscale Phase-Change Phenomena5.2.1 Heat Transfer in Phase-Change Systems: Fixed and Moving Grids; 5.2.2 Mathematical Models of a Binary Alloy Solidification; 5.2.3 Closure Relations for the Volume Fraction of Liquid; 5.3 Turbulent Solidification; 5.3.1 Review of Unsteady RANS Modeling of a Solidification; 5.3.2 Conditions for the DNS of Convection-Driven Solidification; 5.4 Microscale Phase-Change Phenomena; 5.4.1 Basic Modeling Concepts; 5.4.2 Modified Cellular Automaton Model; 5.4.3 Virtual Interface Tracking Model; 5.5 Modeling of Crystal Growth
5.5.1 Modeling Approaches
Record Nr. UNINA-9910141338503321
Nikrityuk Petr A  
Weinheim, Germany, : Wiley-VCH Verlag, c2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Computational thermo-fluid dynamics : in materials science and engineering / / Petr A. Nikrityuk
Computational thermo-fluid dynamics : in materials science and engineering / / Petr A. Nikrityuk
Autore Nikrityuk Petr A
Edizione [2nd ed.]
Pubbl/distr/stampa Weinheim, Germany, : Wiley-VCH Verlag, c2011
Descrizione fisica 1 online resource (371 p.)
Disciplina 333.79
620.11
Soggetto topico Materials - Thermal properties - Mathematical models
Thermodynamics - Mathematical models
Fluid dynamics - Mathematical models
Heat - Transmission - Mathematical models
Mass transfer - Mathematical models
ISBN 9786613639691
9783527636082
3527636080
9781280662768
128066276X
9783527636075
3527636072
9783527636099
3527636099
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Computational Thermo-Fluid Dynamics; Contents; Preface; Acknowledgments; 1 Introduction; 1.1 Heat and Fluid Flows in Materials Science and Engineering; 1.2 Overview of the Present Work; 2 Mathematical Description of Physical Phenomena in Thermofluid Dynamics; 2.1 Conservation Equations for Continuum Media; 2.1.1 Conservation of Mass; 2.1.2 Conservation of Momentum; 2.1.3 Energy Conservation Equation; 2.1.4 Conservation of Chemical Species; 2.1.5 Boussinesq Approximation; 2.1.6 Unified Form of Conservation Equations; 2.1.7 Nondimensional Form of Conservation Equations; 2.1.8 Short Summary
2.2 Boundary and Initial Conditions2.2.1 Heat Transfer; 2.2.2 Solutal Transfer; 2.2.3 Fluid Dynamics; 2.3 Conservation Equations in Electromagnetics; 2.3.1 Maxwell Equations; 2.3.2 Induction and Poisson Equations; 2.3.3 An Example of a Low Magnetic Reynolds Number Approximation: Rotating Magnetic Field; 3 Discretization Approaches and Numerical Methods; 3.1 The Finite Difference Method; 3.1.1 Introduction; 3.1.2 Approximation Schemes; 3.1.3 Example of Conservative Property of FDM; 3.1.4 Discretization Schemes of Unsteady Equations; 3.1.5 Example of Unsteady Diffusion Equation
3.2 The Finite Volume Method3.2.1 Basic Concept; 3.2.2 Interpolation Schemes; 3.2.3 Linearized Form of Discretized Conservation Equation; 3.2.4 Treatment of Source Terms; 3.2.5 Boundary Conditions; 3.2.6 Comparative Study of Schemes for One-Dimensional Convection/Diffusion Problem; 3.3 Solution of Linear Equation Systems; 3.3.1 Direct Methods; 3.3.2 Iterative Methods; 3.3.3 Residuals and Convergence; 3.3.4 Multigrid Method; 3.3.5 Illustration of Iterative Methods; 4 Calculations of Flows with Heat and Mass Transfer; 4.1 Solution of Incompressible Navier-Stokes Equations
4.2 Pressure and Velocity Coupling: SIMPLE Family4.2.1 SIMPLE; 4.2.2 SIMPLER; 4.2.3 SIMPLE with Collocated Variables Arrangement; 4.3 Illustrations of Schemes for Flow with Heat Transfer; 4.4 Complex Geometry Problems on Fixed Cartesian Grids; 4.4.1 Immersed Boundary Methods; 4.4.2 Cartesian Grid Methods; 4.4.3 Immersed Surface Reconstruction; 4.4.4 Illustration of Continuous-Forcing IBM; 5 Convection-Diffusion Phase-Change Problems; 5.1 Some Aspects of Solidification Thermodynamics; 5.1.1 One-Component Melts; 5.1.2 Binary Alloys; 5.1.3 Interface and Equilibrium
5.2 Modeling of Macroscale Phase-Change Phenomena5.2.1 Heat Transfer in Phase-Change Systems: Fixed and Moving Grids; 5.2.2 Mathematical Models of a Binary Alloy Solidification; 5.2.3 Closure Relations for the Volume Fraction of Liquid; 5.3 Turbulent Solidification; 5.3.1 Review of Unsteady RANS Modeling of a Solidification; 5.3.2 Conditions for the DNS of Convection-Driven Solidification; 5.4 Microscale Phase-Change Phenomena; 5.4.1 Basic Modeling Concepts; 5.4.2 Modified Cellular Automaton Model; 5.4.3 Virtual Interface Tracking Model; 5.5 Modeling of Crystal Growth
5.5.1 Modeling Approaches
Record Nr. UNINA-9910810441703321
Nikrityuk Petr A  
Weinheim, Germany, : Wiley-VCH Verlag, c2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Conformal graph directed Markov systems on Carnot groups / / Vasilionis Chousionis, Jeremy Tyson, Mariusz Urbanski
Conformal graph directed Markov systems on Carnot groups / / Vasilionis Chousionis, Jeremy Tyson, Mariusz Urbanski
Autore Chousionis Vasilionis <1980->
Pubbl/distr/stampa Providence, Rhode Island : , : American Mathematical Society, , [2020]
Descrizione fisica 1 online resource (170 pages)
Disciplina 621.4021
Collana Memoirs of the American Mathematical Society
Soggetto topico Thermodynamics - Mathematical models
Markov processes
Conformal mapping
Nilpotent Lie groups
Hausdorff measures
Soggetto genere / forma Electronic books.
ISBN 1-4704-6245-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910480439503321
Chousionis Vasilionis <1980->  
Providence, Rhode Island : , : American Mathematical Society, , [2020]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Conformal graph directed Markov systems on Carnot groups / / Vasilionis Chousionis, Jeremy Tyson, Mariusz Urbanski
Conformal graph directed Markov systems on Carnot groups / / Vasilionis Chousionis, Jeremy Tyson, Mariusz Urbanski
Autore Chousionis Vasilionis <1980->
Pubbl/distr/stampa Providence, Rhode Island : , : American Mathematical Society, , [2020]
Descrizione fisica 1 online resource (170 pages)
Disciplina 621.4021
Collana Memoirs of the American Mathematical Society
Soggetto topico Thermodynamics - Mathematical models
Markov processes
Conformal mapping
Nilpotent Lie groups
Hausdorff measures
ISBN 1-4704-6245-1
Classificazione 30L1053C1737C4011J7028A7837B1037C3037D3537F3547H10
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Carnot groups -- Carnot groups of Iwasawa type and conformal mappings -- Metric and geometric properties of conformal maps -- Conformal graph directed Markov systems -- Examples of GDMS in Carnot groups -- Countable alphabet symbolic dynamics : foundations of the thermodynamic formalism -- Hausdorff dimension of limit sets -- Conformal measures and regularity of domains -- Examples revisited -- Finer properties of limit sets : Hausdorff, packing and invariant measures -- Equivalent separation conditions for finite GDMS.
Record Nr. UNINA-9910794335503321
Chousionis Vasilionis <1980->  
Providence, Rhode Island : , : American Mathematical Society, , [2020]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Conformal graph directed Markov systems on Carnot groups / / Vasilionis Chousionis, Jeremy Tyson, Mariusz Urbanski
Conformal graph directed Markov systems on Carnot groups / / Vasilionis Chousionis, Jeremy Tyson, Mariusz Urbanski
Autore Chousionis Vasilionis <1980->
Pubbl/distr/stampa Providence, Rhode Island : , : American Mathematical Society, , [2020]
Descrizione fisica 1 online resource (170 pages)
Disciplina 621.4021
Collana Memoirs of the American Mathematical Society
Soggetto topico Thermodynamics - Mathematical models
Markov processes
Conformal mapping
Nilpotent Lie groups
Hausdorff measures
ISBN 1-4704-6245-1
Classificazione 30L1053C1737C4011J7028A7837B1037C3037D3537F3547H10
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Carnot groups -- Carnot groups of Iwasawa type and conformal mappings -- Metric and geometric properties of conformal maps -- Conformal graph directed Markov systems -- Examples of GDMS in Carnot groups -- Countable alphabet symbolic dynamics : foundations of the thermodynamic formalism -- Hausdorff dimension of limit sets -- Conformal measures and regularity of domains -- Examples revisited -- Finer properties of limit sets : Hausdorff, packing and invariant measures -- Equivalent separation conditions for finite GDMS.
Record Nr. UNINA-9910812622103321
Chousionis Vasilionis <1980->  
Providence, Rhode Island : , : American Mathematical Society, , [2020]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Fondements énergétiques de la Mécanique / / Jean Cousteix and Jacques Mauss
Fondements énergétiques de la Mécanique / / Jean Cousteix and Jacques Mauss
Autore Cousteix Jean
Pubbl/distr/stampa Toulouse : , : Cepadues Editions, , [2018]
Descrizione fisica 1 online resource (136 pages)
Disciplina 621.4021
Soggetto topico Thermodynamics - Mathematical models
Soggetto genere / forma Electronic books.
ISBN 2-36493-692-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione fre
Record Nr. UNINA-9910467553603321
Cousteix Jean  
Toulouse : , : Cepadues Editions, , [2018]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Fondements énergétiques de la Mécanique / / Jean Cousteix and Jacques Mauss
Fondements énergétiques de la Mécanique / / Jean Cousteix and Jacques Mauss
Autore Cousteix Jean
Pubbl/distr/stampa Toulouse : , : Cepadues Editions, , [2018]
Descrizione fisica 1 online resource (136 pages)
Disciplina 621.4021
Soggetto topico Thermodynamics - Mathematical models
ISBN 2-36493-692-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione fre
Record Nr. UNINA-9910793307403321
Cousteix Jean  
Toulouse : , : Cepadues Editions, , [2018]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Fondements énergétiques de la Mécanique / / Jean Cousteix and Jacques Mauss
Fondements énergétiques de la Mécanique / / Jean Cousteix and Jacques Mauss
Autore Cousteix Jean
Pubbl/distr/stampa Toulouse : , : Cepadues Editions, , [2018]
Descrizione fisica 1 online resource (136 pages)
Disciplina 621.4021
Soggetto topico Thermodynamics - Mathematical models
ISBN 2-36493-692-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione fre
Record Nr. UNINA-9910819509703321
Cousteix Jean  
Toulouse : , : Cepadues Editions, , [2018]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui