Course title | Molecular physics of fluids |
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Course code | KFY/CM202 |
Organizational form of instruction | Lecture + Lesson |
Level of course | Doctoral |
Year of study | not specified |
Semester | Winter and summer |
Number of ECTS credits | 0 |
Language of instruction | English |
Status of course | Compulsory-optional |
Form of instruction | Face-to-face |
Work placements | This is not an internship |
Recommended optional programme components | None |
Lecturer(s) |
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Course content |
The course is intended particularly for students whose thesis will deal with thermodynamic behavior of fluids. It extends student?s knowledge of statistical physics to classical systems of interacting particles: - Intermolecular interactions; Models of simple and molecular fluids. - Real gas: Virial expansion and virial coefficients. - Theory of liquids: Basic concepts, distribution functions, BBGY hierarchy, integral equations, perturbation theories. Molecular-based equations of state. - Mixtures of non-electrolytes. - Electrolyte solutions: Primitive models, Debye-Hueckel theory. - Liquids at interface.
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Learning activities and teaching methods |
unspecified |
Learning outcomes |
The course is intended particularly for students whose thesis will deal with thermodynamic behavior of fluids. It extends student?s knowledge of statistical physics to classical systems of interacting particles: - Intermolecular interactions; Models of simple and molecular fluids. - Real gas: Virial expansion and virial coefficients. - Theory of liquids: Basic concepts, distribution functions, BBGY hierarchy, integral equations, perturbation theories. Molecular-based equations of state. - Mixtures of non-electrolytes. - Electrolyte solutions: Primitive models, Debye-Hueckel theory. - Liquids at interface.
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Prerequisites |
unspecified
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Assessment methods and criteria |
unspecified
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Recommended literature |
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Study plans that include the course |
Faculty | Study plan (Version) | Category of Branch/Specialization | Recommended semester |
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