Syllabus for Thermodynamics
A revised version of the syllabus is available.
- 5 credits
- Course code: 1FA517
- Education cycle: First cycle
Main field(s) of study and in-depth level:
- Grading system: Fail (U), Pass (3), Pass with credit (4), Pass with distinction (5)
- Established: 2007-03-15
- Established by: The Faculty Board of Science and Technology
- Revised: 2017-04-03
- Revised by: The Faculty Board of Science and Technology
- Applies from: Autumn 2017
Geometry and calculus I, Mechanics KF or Mechanics II.
- Responsible department: Department of Physics and Astronomy
Decisions and guidelines
Knowledge on partial derivatives is needed, equivalent Geometry and analysis II that may be taken at the same time.
After completing the course the student should be able to
- describe and apply the physical concepts work, heat, inner energy, temperature, thermodynamic observables and entropy, .
- describe thermodynamic systems and states and apply the laws of thermodynamics,
- use experimental methods to investigate thermodynamic relations,
- do calculations on phase transitions,
- analyse heat processes theoretically and determine their degree of efficiency,
- perform calculations on heat conduction and heat radiation in various geometries.
Thermodynamic variables and equations of state. Basics concepts like heat, temperature, inner energy and enthalpy. Classical kinetic theory of gases, temperature, velocity and Maxwell's velocity distribution. The ideal gas law and other simple equations of state for gases and other physical systems. The laws of thermodynamics. Macroscopic definition of and Boltzmann's equation for entropy. Thermodynamics potentials. Maxwell's and other thermodynamic relations. Phase transitions.
Heat processes with technical applications such as heat engines and heat pumps.
Heat conduction in different geometries. Radiation including the usage of Stefan-Boltzmann and Wien laws.
Lectures, tutoring, experimental projects in the laboratory. Laboratory exercises in project form.
Written exam (3 credits). . Laboratory exercises with an oral presentation during a seminar (2 credits). Oral examination for higher grades.
- Latest syllabus (applies from Autumn 2023)
- Previous syllabus (applies from Autumn 2021)
- Previous syllabus (applies from Autumn 2020)
- Previous syllabus (applies from Spring 2020)
- Previous syllabus (applies from Autumn 2019)
- Previous syllabus (applies from Autumn 2017)
- Previous syllabus (applies from Spring 2014)
- Previous syllabus (applies from Spring 2012)
- Previous syllabus (applies from Spring 2008)
- Previous syllabus (applies from Autumn 2007)
Applies from: Autumn 2017
Some titles may be available electronically through the University library.
Finn, C. B. P.
2. ed.: London: Chapman & Hall, 1993
Çengel, Yunus A.;
Boles, Michael A.
Thermodynamics : an engineering approach
Eighth edition in SI units.: New York, NY: McGraw-Hill Education, 2015