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Thermodynamic models for chemical engineering
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Thermodynamic models for chemical engineering/ Jean-Noel Jaubert, Romain Privat.
Author:
Jaubert, Jean-Noel.
other author:
Privat, Romain.
Published:
London, UK :ISTE Press ; : 2020.,
Description:
1 online resource.
Subject:
Chemical engineering - Mathematical models. -
Online resource:
https://www.sciencedirect.com/science/book/9781785482090
ISBN:
9780081022801 (electronic bk.)
Thermodynamic models for chemical engineering
Jaubert, Jean-Noel.
Thermodynamic models for chemical engineering
[electronic resource] /Jean-Noel Jaubert, Romain Privat. - London, UK :ISTE Press ;2020. - 1 online resource.
Part 1 Activity Coefficient Models 1. Correlations for the estimation of thermodynamic properties of pure substances in the liquid, perfect gas, or vapor-liquid states 2. Estimation of thermodynamic properties of pure substances using equation of state: Overview of available models and calculation procedures 3. Low-pressure vapor-liquid and liquid-liquid equilibria of binary systems: Activity-coefficient models 4. Estimation of the themodynamic properties of mixtures from an equation of state: An overview of models and calculation procedures 5. General Summary: decision tree to select a themodynamic model in order to simulate or design a chemical process.
ISBN: 9780081022801 (electronic bk.)
Nat. Bib. No.: GBB9I9247bnbSubjects--Topical Terms:
906067
Chemical engineering
--Mathematical models.Index Terms--Genre/Form:
554714
Electronic books.
LC Class. No.: TP155.2.M35
Dewey Class. No.: 660.2969
Thermodynamic models for chemical engineering
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Part 1 Activity Coefficient Models 1. Correlations for the estimation of thermodynamic properties of pure substances in the liquid, perfect gas, or vapor-liquid states 2. Estimation of thermodynamic properties of pure substances using equation of state: Overview of available models and calculation procedures 3. Low-pressure vapor-liquid and liquid-liquid equilibria of binary systems: Activity-coefficient models 4. Estimation of the themodynamic properties of mixtures from an equation of state: An overview of models and calculation procedures 5. General Summary: decision tree to select a themodynamic model in order to simulate or design a chemical process.
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https://www.sciencedirect.com/science/book/9781785482090
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