Study programme 2019-2020 | Français | ||
Thermodynamics | |||
Programme component of Bachelor's in Chemistry à la Faculty of Science |
Students are asked to consult the ECTS course descriptions for each learning activity (AA) to know what assessment methods are planned for the end of Q3 |
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Code | Type | Head of UE | Department’s contact details | Teacher(s) |
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US-B2-SCCHIM-012-M | Compulsory UE | DAMMAN Pascal | S885 - Laboratoire Interfaces et Fluides Complexes |
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Language of instruction | Language of assessment | HT(*) | HTPE(*) | HTPS(*) | HR(*) | HD(*) | Credits | Weighting | Term |
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| Français | 30 | 60 | 0 | 0 | 0 | 7 | 7.00 | 1st term |
AA Code | Teaching Activity (AA) | HT(*) | HTPE(*) | HTPS(*) | HR(*) | HD(*) | Term | Weighting |
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S-CHIM-014 | Thermodynamics | 15 | 0 | 0 | 0 | 0 | Q1 | |
S-CHIM-814 | Chemical Thermodynamics | 15 | 0 | 0 | 0 | 0 | Q1 | |
S-CHIM-914 | Exercises in Thermodynamics | 0 | 30 | 0 | 0 | 0 | Q1 | |
S-CHIM-884 | Practicals in Thermodynamics | 0 | 30 | 0 | 0 | 0 | Q1 |
Programme component |
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Objectives of Programme's Learning Outcomes
Learning Outcomes of UE
Understanding the behavior of matter by a macroscopic approach. Apply the basic principles of thermodynamics to systems with multiple chemical species. Deeply understand the vapor-liquid equilibria in the ideal case. Understand the equilibrium phase diagrams for two-phase systems in which one phase is a pure component and the other a mixture. Model the simplest possible systems with a non-ideality. Apply the basic principles in a multiple component system with a chemical reaction between the components.
Content of UE
Part 1.Introduction (temperature, heat, kinetic theory of gases, equation of state) Principle (energy conservation, expansion of gases, process adiabatiaques) Second principle (Carnot engine, entropy, heat) thermodynamic potentials (Euler equation , Gibbs-Duhem relationship, development criteria) gas Liquefaction (Free Expansion Joule-Gay Lussac, Joule-Thomson effect) Balance and stability (stability criteria, phase diagram, phase transition)Part 2.Description of a multiple component systemIdeal vapor-liquid equilibriumWith a pure phase equilibriaThermodynamics and chemical reactionsnon-ideal systemsGeneral knowledge of information and communications technology.
Prior Experience
General Chemistry, General Physics, mathematics
Type of Assessment for UE in Q1
Q1 UE Assessment Comments
Not applicable
Type of Assessment for UE in Q3
Q3 UE Assessment Comments
Not applicable
Type of Resit Assessment for UE in Q1 (BAB1)
Q1 UE Resit Assessment Comments (BAB1)
Not applicable
Type of Teaching Activity/Activities
AA | Type of Teaching Activity/Activities |
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S-CHIM-014 |
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S-CHIM-814 |
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S-CHIM-914 |
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S-CHIM-884 |
Mode of delivery
AA | Mode of delivery |
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S-CHIM-014 |
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S-CHIM-814 |
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S-CHIM-914 |
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S-CHIM-884 |
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Required Reading
AA | |
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S-CHIM-014 | |
S-CHIM-814 | |
S-CHIM-914 | |
S-CHIM-884 |
Required Learning Resources/Tools
AA | Required Learning Resources/Tools |
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S-CHIM-014 | Not applicable |
S-CHIM-814 | Not applicable |
S-CHIM-914 | Not applicable |
S-CHIM-884 | Not applicable |
Recommended Reading
AA | |
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S-CHIM-014 | |
S-CHIM-814 | |
S-CHIM-914 | |
S-CHIM-884 |
Recommended Learning Resources/Tools
AA | Recommended Learning Resources/Tools |
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S-CHIM-014 | Sans objet |
S-CHIM-814 | Physical Chemistry, Atkins and de Paula, Oxfor University Press |
S-CHIM-914 | Not applicable |
S-CHIM-884 | Not applicable |
Other Recommended Reading
AA | Other Recommended Reading |
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S-CHIM-014 | Not applicable |
S-CHIM-814 | Not applicable |
S-CHIM-914 | Not applicable |
S-CHIM-884 | Not applicable |