Chemical Thermodynamics:

Prediction and Correlation of physical properties:
Compressibility factor, Vapor density 2.1.1, Three-parameters Pitzer acentric factor 2.1.2

van der Waals equation of state: 2.1.3
Liquid density 2.1.4.Vapor pressure: 2.1.5
Enthalpy of vaporization 2.1.6
Ideal gas heat capacity, Heat of formation 2.1.8
Gibbs energy of formation 2.1.9, Liquid heat capacity 2.1.10
Saturated volume of liquid
Viscosity of gas at low pressure, Viscosity of gas at high pressure 2.1.12
Viscosity of liquid 2.1.13
Thermal conductivity of gases 2.1.14, Joule-Thompson effect 2.1.15

 

Residual Functions: Enthalpy deviation 2.2.1, Entropy deviation 2.2.2

 

General Energy Balances: Internal energy, enthalpy, entropy, and volume
Thermodynamic processes: 2.3.1, Adiabatic process 2.3.2, Polytropic process 2.3.3, Isothermal process 2.3.4, Isobaric (contant pressure) operation 2.3.5, Isometric/isochoric (constant volume) operation 2.3.6, Process Evaluation - Steam Turbine 2.3.7, Pumping of liquids 2.3.8, Refrigeration 2.3.9

 

Partial molar properties - Gibbs excess energy 2.4.1, partial molar volume 2.4.2, Activity coefficients 2.4.4

 

Redlich Kwong Equation, Fugacity Coefficient 2.5.1, Derived Properties - Real Processes PVT Relationship 2.5.2, 2.5.4, Compressibility as a function 2.5.3

 

Chemical equilibrium, Fugacity Coefficients, 2.5.5, 2.5.6, Heat Capacity as a function of temperature 2.6.1, 2.6.2, 2.6.3, Reasonable Conversion 2.6.5

 

Figures and Tables