Lecturer(s)
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Růžička Ondřej, Ing. Ph.D.
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Course content
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1. - 2. Atom - structure, ionizing radiation - types, formation, properties. 3. - 4. Radiology - instrumentation and principles of individual disciplines - radiodiagnostics, nuclear medicine, radiotherapy. 5. Principles of radiation protection, legislation. Stochastic and deterministic effects of radiation. 6. Quantities and units used in radiation protection. Exposure limits. 7. Reasonably achievable levels of radiation protection, how to achieve and demonstrate them. 8. Basic classification of sources of ionising radiation from the point of view of radiation protection. 9. Medical exposure from a radiation protection point of view. Categorisation of ionising radiation workers. 10. Controlled area, monitoring. 11. Ensuring emergency preparedness, internal emergency plan, classification of emergencies.
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Learning activities and teaching methods
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Lecture
- Contact hours
- 11 hours per semester
- Preparation for comprehensive test (10-40)
- 15 hours per semester
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prerequisite |
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Knowledge |
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are not required |
Skills |
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are not required |
Competences |
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N/A |
learning outcomes |
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Knowledge |
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characterises the biological effects of ionising radiation on humans, explains actions and interventions to protect against its effects |
Skills |
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he/she distinguishes between different types of ionising radiation |
Competences |
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N/A |
teaching methods |
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Knowledge |
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Lecture |
Interactive lecture |
Skills |
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Interactive lecture |
Lecture |
Competences |
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Interactive lecture |
assessment methods |
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Knowledge |
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Test |
Skills |
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Test |
Competences |
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Test |
Recommended literature
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Atomový zákon - zákon č. 263/2016 Sb. .
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Vyhláška o radiační ochraně a zabezpečení radionuklidového zdroje - vyhl. č. 422/2016 Sb. .
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Klener, V. Principy a praxe radiační ochrany. Praha: SÚJB, 2000.
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Singer, J., Heřmanská, J. Principy radiační ochrany. České Budějovice:ZSF JU, 2005.
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