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Main menu for Browse IS/STAG
Courses found, count: 1
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Abbreviation unit / Course abbreviation |
Title |
Variant |
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KEF
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SZZB1
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Physics
Show course
Physics
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2020/2021
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Course info
KEF / SZZB1
:
Course description
Department/Unit / Abbreviation
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KEF
/
SZZB1
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Academic Year
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2020/2021
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Academic Year
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2020/2021
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Title
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Physics
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Form of course completion
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State Final Exam
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Form of course completion
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State Final Exam
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Accredited / Credits
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Yes,
0
Cred.
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Type of completion
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Oral
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Type of completion
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Oral
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Time requirements
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Course credit prior to examination
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No
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Course credit prior to examination
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No
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Automatic acceptance of credit before examination
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No
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Included in study average
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YES
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Language of instruction
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Czech
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Occ/max
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Automatic acceptance of credit before examination
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No
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Summer semester
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0 / -
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0 / -
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0 / -
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Included in study average
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YES
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Winter semester
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0 / -
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0 / -
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0 / -
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Repeated registration
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NO
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Repeated registration
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NO
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Timetable
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Yes
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Semester taught
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Winter + Summer
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Semester taught
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Winter + Summer
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Minimum (B + C) students
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not determined
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Optional course |
No
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Optional course
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No
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Language of instruction
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Czech
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Internship duration
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0
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No. of hours of on-premise lessons |
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Evaluation scale |
A|B|C|D|E|F |
Periodicity |
každý rok
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Periodicita upřesnění |
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Fundamental theoretical course |
No
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Fundamental course |
Yes
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Fundamental theoretical course |
No
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Evaluation scale |
A|B|C|D|E|F |
Substituted course
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None
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Preclusive courses
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N/A
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Prerequisite courses
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N/A
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Informally recommended courses
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N/A
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Courses depending on this Course
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N/A
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Histogram of students' grades over the years:
Graphic PNG
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XLS
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Course objectives:
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Final exam for verification and evaluation of the level of knowledge.
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Requirements on student
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Knowledge of physics field and inegration of therms:
Kinematics and dynamics of a mass point, Newton equations of motion, work, energy and law of conservation of mechanical energy, mechanics of the system of mass points, mechanics of the solid, generalized gravitation
Mechanics of fluids, free undamped and damped harmonic oscillations, forced harmonic oscillations, standing waves
Basic findings of molecular physics, state of the system, probability of equilibrium state, equilibrium state, reversible and irreversible states, internal energy of the system, processes in an ideal gas, equation of state, specific and molar heat capacities
Basic findings of kinetic theory of gases, basic equation for the pressure of a gas, relation between temperature and kinetic energy of the system, Maxwell law of distribution of speeds of molecules in the gas, distribution functions, Maxwell-Boltzmann statistics, laws of thermodynamics, definition of entropy, basics of kinetic theory of liquids and solids
Electrostatic field in vacuum and dielectrics, electrostatic induction, potential of electrostatic field, uncharged conductor in an electrostatic field, capacity of conductors, capacitors
Electrodynamics, stationary electrical field, equation of continuity of electrical current, Kirchhoff laws and their usage in solving of electrical networks, steady electrical current in metallic conductors, semiconductors, electrolytes, gases and vacuum
Stationary magnetic field, Biot-Savart-Laplace law, Lorentz force, forces acting on a charged particle and a conductor with electrical current in a magnetic field
Non-stationary electromagnetic field, Faraday law of electromagnetic induction, intrinsic and mutual induction, alternating electrical currents, solving of circuits with ideal circuit elements, electromagnetic oscillations and waves
Maxwell theory of non-stationary electromagnetic field, application of theory on special types of fields (electrostatic, magnetostatic, stationary, quasistationary and non-stationary field), field of oscillating dipole and electromagnetic waves, propagation of waves in non-restricted media: zero-loss, non-zero-loss and electrically anisotropic media, waves on the interface and Kirchhoff theory of diffraction, laws of conservation of electromagnetic field
Laws of geometrical optics, geometrical imaging, reflection and refraction of light and their uses, basic types of optical systems, optical instruments
Physical essence, origin and propagation of optical radiation, wave equation, plane and spherical traveling wave, properties and classification of optical media, dispersion, absorption and scattering of light, description and properties of polarized light
Propagation of light in anisotropic medium, classification of anisotropic materials and their usage, interference and coherence of light, realization and utilization of double-beam and multi-beam interference, diffraction of light, methods of description of light diffraction, Fresnel and Fraunhofer theory of diffraction, wave theory of imaging, principle of optical holography, corpuscle-wave duality of light and matter, lasers, basic nonlinear optical phenomena
Quantum ideas in physics, mathematical calculus of non-relativistic quantum mechanics (wave functions, operators of physical quantities, Schrödinger equation), quantum theory of systems with many particles
Approximation methods of quantum mechanics, relativistic quantum mechanics, particular application of quantum mechanics, general formulation of quantum mechanics
Electromagnetic radiation, atomic shell, models of atoms, quantization of electron orbits, atoms with more electrons, radiation phenomena in the atomic shell, corpuscle-wave dualism, Bohr model of hydrogen
Atomic nucleus, composition, models, radioactive decay, nuclear processes, energetics, elementary particles
Theory of relativity, Lorentz transformation, introduction to general theory of relativity
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Content
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The topics are available at the web page of the faculty.
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Activities
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Fields of study
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Guarantors and lecturers
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Literature
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Prerequisites - other information about course preconditions |
Compliance with the conditions of study. Achieving the required amount of credits in A, B and C courses categories |
Competences acquired |
- |
Teaching methods |
-
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Assessment methods |
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