LF:BOZF0221 Physical Optic Measurement I - Course Information
BOZF0221 Physical Optic Measurement I
Faculty of Medicinespring 2026
- Extent and Intensity
- 0/3/0. 2 credit(s). Type of Completion: z (credit).
In-person direct teaching - Teacher(s)
- Mgr. Dušan Hemzal, Ph.D. (seminar tutor)
Mgr. Mojmír Meduňa, Ph.D. (seminar tutor)
RNDr. Alois Nebojsa (seminar tutor)
Mgr. Jiří Novák, Ph.D. (seminar tutor) - Guaranteed by
- Mgr. Mojmír Meduňa, Ph.D.
Department of Condensed Matter Physics – Physics Section – Faculty of Science
Contact Person: Lenka Herníková
Supplier department: Department of Condensed Matter Physics – Physics Section – Faculty of Science - Timetable of Seminar Groups
- BOZF0221/Sk_1: Tue 17. 2. 15:00–17:50 Fp2,04012, Tue 24. 2. 15:00–17:50 Fp2,04012, Tue 3. 3. 15:00–17:50 Fp2,04012, Tue 10. 3. 15:00–17:50 Fp2,04012, Tue 17. 3. 15:00–17:50 Fp2,04012, Tue 24. 3. 15:00–17:50 Fp2,04012, Tue 31. 3. 15:00–17:50 Fp2,04012, Tue 7. 4. 15:00–17:50 Fp2,04012, Tue 14. 4. 15:00–17:50 Fp2,04012, Tue 21. 4. 15:00–17:50 Fp2,04012, Tue 28. 4. 15:00–17:50 Fp2,04012, Tue 5. 5. 15:00–17:50 Fp2,04012, Tue 12. 5. 15:00–17:50 Fp2,04012, Tue 19. 5. 15:00–17:50 Fp2,04012, Tue 26. 5. 15:00–17:50 Fp2,04012, J. Novák
BOZF0221/Sk_2: Wed 18. 2. 14:00–16:50 Fp2,04012, Wed 25. 2. 14:00–16:50 Fp2,04012, Wed 4. 3. 14:00–16:50 Fp2,04012, Wed 11. 3. 14:00–16:50 Fp2,04012, Wed 18. 3. 14:00–16:50 Fp2,04012, Wed 25. 3. 14:00–16:50 Fp2,04012, Wed 1. 4. 14:00–16:50 Fp2,04012, Wed 8. 4. 14:00–16:50 Fp2,04012, Wed 15. 4. 14:00–16:50 Fp2,04012, Wed 22. 4. 14:00–16:50 Fp2,04012, Wed 29. 4. 14:00–16:50 Fp2,04012, Wed 6. 5. 14:00–16:50 Fp2,04012, Wed 20. 5. 14:00–16:50 Fp2,04012, Wed 27. 5. 14:00–16:50 Fp2,04012, A. Nebojsa
BOZF0221/Sk_3: Thu 19. 2. 15:00–17:50 Fp2,04012, Thu 26. 2. 15:00–17:50 Fp2,04012, Thu 5. 3. 15:00–17:50 Fp2,04012, Thu 12. 3. 15:00–17:50 Fp2,04012, Thu 19. 3. 15:00–17:50 Fp2,04012, Thu 26. 3. 15:00–17:50 Fp2,04012, Thu 2. 4. 15:00–17:50 Fp2,04012, Thu 9. 4. 15:00–17:50 Fp2,04012, Thu 16. 4. 15:00–17:50 Fp2,04012, Thu 23. 4. 15:00–17:50 Fp2,04012, Thu 30. 4. 15:00–17:50 Fp2,04012, Thu 7. 5. 15:00–17:50 Fp2,04012, Thu 14. 5. 15:00–17:50 Fp2,04012, Thu 21. 5. 15:00–17:50 Fp2,04012, Thu 28. 5. 15:00–17:50 Fp2,04012, M. Meduňa
BOZF0221/Sk_4_erasmus: No timetable has been entered into IS. D. Hemzal, group for erasmus students - Prerequisites
- BOMA0121c Mathematics I-p
BOMA0121c - Course Enrolment Limitations
- The course is only offered to the students of the study fields the course is directly associated with.
- fields of study / plans the course is directly associated with
- Optics and Optometry (programme LF, B-OPOP)
- Optics and Optometry (programme LF, B-SZ) (2)
- Abstract
- Optics and optometry at MU Faculty of medicine. The main goal of the course is to deepen and stabilise the insight of the students into the physical phenomena underlying the optical problems to be encountered in their profession. After actualisation of the basics of the security of work in a laboratory the students are in this advanced course acquainted with new phenomena rising from the wave nature of light - interference and diffraction -, detection of light and function of spectrometers. The imaging is extended to the case of thick lenses including determination of their parameters. At the end of the semester a collective demonstration of vacuum vapour deposition takes place. Upon passing out the course a set of phenomena which students are personally experienced with is significantly enhanced improving thus the potential of the students to correctly identify them in the practice and thus to correctly corrolary on their characteristics.
- Learning outcomes
- After actualisation of the basics of the security of work in a laboratory the students are in this advanced course acquainted with new phenomena rising from the wave nature of light - interference and diffraction -, detection of light and function of spectrometers.
- Key topics
- Processing of the measurement results. Measurement on the resistors. Measurements of vergence. Measurement of the polarisation action of a polaroid and verification of Malus's law for real polaroids. Measurement of microscope parameters. Determination of index of refraction using minimal deviation method. Polarisation plane bending in a solution and its dependence on the solution concentration. Measurement on the dielectric surface reflected light. Focal distance measurement of a thin lens. Refractometric measurement of the index of refraction. Transmission of light through plan-parallel plate and triangular prism.
- Study resources and literature
- Approaches, practices, and methods used in teaching
- laboratory exercises, group projects, class discussion
- Method of verifying learning outcomes and course completion requirements
- practice, credit
- Language of instruction
- Czech
- Further Comments
- Study Materials
The course is taught annually. - Listed among pre-requisites of other courses
- Teacher's information
- http://www.physics.muni.cz/ufkl/Vyuka/index.shtml
- Enrolment Statistics (recent)
- Permalink: https://is.muni.cz/course/med/spring2026/BOZF0221