Lecturer(s)
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Layerová Eva, Mgr.
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Neckář Pavel, doc. Ing. Ph.D.
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Course content
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1st lecture Introduction to physics. Kinematics and dynamics of the material point 2nd lecture Movement sliding, rotating, oscillating, waves 3rd lecture Work and energy 4th lecture Ideal gas, state equation 5th lecture Phase changes, phase diagram 6th lecture Basic theories of thermodynamics 7th lecture Gravitational field, electric field, magnetic field 8th lecture Basic concepts and laws of geometric optics, optical instruments 9. lecture Interference, bend, polarization of light 10. lecture Quantum physics 11. lecture Physics of electron packaging 12th lecture Fundamentals of nuclear physics, elementary particles, basic
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Learning activities and teaching methods
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- Contact hours
- 26 hours per semester
- Preparation for formative assessments (2-20)
- 10 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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to apply basic physical formulas |
explain basic physical concepts and laws |
modify basic physical formulas |
use mathematical-physical tables and other sources |
Skills |
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to apply basic physical and mathematics computational formulas |
to edit physical formulas |
express from physical formula |
to do mathematical adjustments |
dertivate and to use derivates |
Competences |
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N/A |
learning outcomes |
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Knowledge |
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explain concepts and laws of the Mechanics |
explain concepts and laws of the Molecular physics |
explain concepts and laws of the Elektricity and Magnetism |
explain concepts and laws from Optics |
explain concepts and laws of the Quantum and Nuclear physics |
Skills |
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to explain physical laws and their application in praxis |
to explain physical laws and their connecting with Science |
to apply of basic approaches and ways of solving physical problems |
to apply foundations of higher mathematics in the Sciences |
Competences |
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N/A |
teaching methods |
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Knowledge |
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Interactive lecture |
Seminar |
Skills |
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Interactive lecture |
Seminar |
Competences |
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Interactive lecture |
Seminar |
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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BEISER, Arthur. Úvod do moderní fyziky: Vysokošk. učebnice. Praha: Academia, 1975.
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FEYNMAN, Richard Phillips. Feynmanovy přednášky z fyziky s řešenými příklady. Havlíčkův Brod: Fragment, 2000. ISBN 978-80-7200-405-8.
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Halliday, David; Resnick, Robert,; Walker, Jearl,; Dub, Petr. Fyzika. 2., přeprac. vyd. Brno : VUTIUM, 2013. ISBN 978-80-214-4123-1.
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