Lecturer(s)
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Hošková Prokšová Jitka, RNDr. Ph.D.
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Course content
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Introduction to the study of the subject, classification conditions. Basic principles of equilibrium and non-equilibrium thermodynamics. Principles of molecular physics and kinetic theory of substances, changes of quantities in the ideal and real gases. Entropy, thermodynamic potentials. Phase transition. Low temperature physics. Transport phenomena in gases and liquids. Atmospheric thermodynamics and elementary meteorology. Final repetition, summary of findings.
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Learning activities and teaching methods
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Lecture
- Preparation for comprehensive test (10-40)
- 20 hours per semester
- Contact hours
- 52 hours per semester
- Preparation for an examination (30-60)
- 50 hours per semester
- Preparation for formative assessments (2-20)
- 4 hours per semester
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prerequisite |
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Knowledge |
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The knowledge of secondary school thermodynamics is assumed. The students should be able to employ operations and methods of mathematical physics. |
Skills |
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The student applies and solves high school thermodynamics problems. The student masters the operations and methods of mathematical physics. |
Competences |
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N/A |
N/A |
learning outcomes |
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Knowledge |
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The students will understand the basic principles of equilibrium and non-equilibrium thermodynamics, they will get oriented in molecular physics, theory of transport phenomena, and other areas connected with the subject matter. |
Skills |
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The student demonstrates knowledge and applies methods of equilibrium and non-equilibrium thermodynamics, demonstrates orientation in molecular physics, in the theory of transport phenomena and in other areas related to the discussed topic |
Competences |
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N/A |
N/A |
teaching methods |
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Knowledge |
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Lecture |
Skills |
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Practicum |
Competences |
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Interactive lecture |
assessment methods |
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Knowledge |
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Oral exam |
Skills |
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Test |
Competences |
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Combined exam |
Recommended literature
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Kobylka, Dušan. Technická termodynamika s řešenými příklady. Praha. 2016.
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Kondepudi, Dilip; Prigogine, Ilya. Modern thermodynamics : from heat engines to dissipative structures. Chichester : John Wiley & Sons, 1998. ISBN 0-471-97393-9.
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Obdržálek, Jan; Vaněk, Alois. Termodynamika a molekulová fyzika. Vyd. 2., opr. a dopl. Ústí nad Labem : Pedagogická fakulta Univerzity J. E. Purkyně, 2000. ISBN 80-7044-283-2.
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Svoboda, Emanuel. Molekulová fyzika. 1. vyd. Praha : Academia, 1992. ISBN 80-200-0025-9.
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