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270174 VO Chemical Thermodynamics of Nonelectrolyte Mixtures (2018W)

4.00 ECTS (3.00 SWS), SPL 27 - Chemie

Registration/Deregistration

Details

max. 48 participants
Language: German, English

Lecturers

Classes (iCal) - next class is marked with N

Wednesday 03.10. 12:00 - 13:00 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP (Kickoff Class)
Tuesday 09.10. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 16.10. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 23.10. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 30.10. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 06.11. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 13.11. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 27.11. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 04.12. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 11.12. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 08.01. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 15.01. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 22.01. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP
Tuesday 29.01. 12:00 - 14:30 Kleiner Hörsaal 3 Chemie Boltzmanngasse 1 HP

Information

Aims, contents and method of the course

Contents of Course: possible topics in the field of fluid systems, pure and mixed (liquids, vapors and gases).
Introduction to chemical thermodynamics on a postulatory basis.
The fundamental property relation in the energy presentation & in the entropy presentation.
Additional primary thermodynamic functions and alternative forms of the fundamental property relation.
Selected basic equations for constant-composition fluids.
Systems of variable composition:
Partial molar properties;
Fugacity and fugacity coefficient: quantities of central importance;
General Gibbs-Duhem equation;
Property changes on mixing:
Excess functions;
Relative activities;
Activity coefficients.
Phase equilibria:
Vapor-Liquid Equilibria (VLE): Raoult’s law vs. Henry’s law;
Liquid-Liquid Equilibria (LLE).
Selected applications (real-fluid behavior):
Residual properties vs. configurational properties;
Virial equation of state;
What you always wanted to know about the van der Waals equation, but were afraid to ask;
Recent developments.

Assessment and permitted materials

Minimum requirements and assessment criteria

Examination topics

Reading list


Association in the course directory

MC-2, MC-3, PC-3, D.3, D.4

Last modified: Mo 07.09.2020 15:41