Lecturer(s)
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Nosková Lucie, Mgr. Ph.D.
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Course content
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PHASE EQUILIBRIA Determination of partition coefficient. Phase diagram of three-part system. PHYSICAL CHEMISTRY OF SURFACES Adsorption on activated carbon. THERMODYNAMIC PROPERTIES IF HOMOGENEOUS MIXTURES Determination of the additional volume. REACTION KINETICS Determination of reaction order. ELECTROCHEMISTRY Measurement of the electrical conductivity.
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Learning activities and teaching methods
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Collaborative instruction, Laboratory work, Skills demonstration, Individual study, Students' self-study
- Contact hours
- 36 hours per semester
- Practical training (number of hours)
- 36 hours per semester
- Preparation for laboratory testing; outcome analysis (1-8)
- 6 hours per semester
- Preparation for formative assessments (2-20)
- 2 hours per semester
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prerequisite |
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Knowledge |
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to characterize the principles of safe work in a chemical laboratory |
to explain the basic concepts of physical chemistry |
Skills |
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perform basic laboratory operations |
work independently according to working instructions |
to draw up a laboratory protocol |
learning outcomes |
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Knowledge |
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describe procedures for obtaining experimental data |
to define the basic concepts of physical chemistry |
Skills |
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to apply theoretical knowledge from physical chemistry to practical tasks in the laboratory |
analyze measured data |
use PC to process experimental data |
formulate and summarize the conclusions of experimental work |
teaching methods |
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Knowledge |
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Laboratory work |
Skills demonstration |
Collaborative instruction |
Self-study of literature |
Individual study |
assessment methods |
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Skills demonstration during practicum |
Continuous assessment |
Recommended literature
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CÍDLOVÁ H. Laboratorní cvičení z fyzikální chemie. Brno: MU, 2003. ISBN 80-210-3300-2.
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Šobr, Josef. Návody pro laboratorní cvičení z fyzikální chemie. 5. přepracované vyd. Praha : Vydavatelství VŠCHT, 1998. ISBN 80-7080-289-8.
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