Lecturer(s)
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Course content
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1st exercise Physical quantities and units, unit transfers and dimensional analysis. Processing of measurement results, basics of error theory. 2nd exercise Classical mechanics. Newton's laws and conservation laws in examples and practic 3rd Exercise Fluid mechanics, measurement and surface tension calculations. 4. Exercise Electrostatics, electric field, electrical potential and voltage. Electrical dipole, dielectric polarization, electric current, electric current in liquids and gases. Ohm's law in the examples. 5th exercises Magnetic field origin, magnetic moment of moving charge, momentum of momentum and magnetic moment, magnetic properties of matter, electromagnetic field. 6. Exercise Geometric optics, optical displays, optical instruments. Electromagnetic waves-wave polarization, light reflection and refraction, wave interference, diffraction, refractive index and its measurement.
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Learning activities and teaching methods
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- Contact hours
- 26 hours per semester
- Preparation for comprehensive test (10-40)
- 25 hours per semester
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prerequisite |
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Knowledge |
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to apply and modify physical formulas |
explain physical concepts and laws |
use mathematical-physical tables and other sources |
to propose different variants and solutions to the same physical problém |
Skills |
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to apply physical computational formulas |
to edit physical formulas |
express from physical formula |
Competences |
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N/A |
learning outcomes |
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Knowledge |
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use theoretical knowledge to solve problems of the Mechanics |
use theoretical knowledge to solve problems of the Molecular physics |
use theoretical knowledge to solve problems of the Elektricity and Magnetism |
use theoretical knowledge to solve problems from Optics |
Skills |
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to propose experiments and evidence of physical laws |
to do observations and experiments and to evaluate their results |
to apply of basic approaches and ways of solving physical problems |
Competences |
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N/A |
teaching methods |
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Knowledge |
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Seminar |
Skills |
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Seminar |
Competences |
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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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