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Course, academic year 2017/2018
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Physics IV (Electricity and Magnetism) - NUFZ004
Title: Fyzika IV (elektřina a magnetismus)
Guaranteed by: Department of Physics Education (32-KDF)
Faculty: Faculty of Mathematics and Physics
Actual: from 2015 to 2021
Semester: summer
E-Credits: 8
Hours per week, examination: summer s.:4/2, C+Ex [HT]
Capacity: unlimited
Min. number of students: unlimited
4EU+: no
Virtual mobility / capacity: no
State of the course: not taught
Language: Czech
Teaching methods: full-time
Teaching methods: full-time
Guarantor: prof. RNDr. Vladimír Šíma, CSc.
prof. RNDr. Jiří Englich, DrSc.
Annotation -
Last update: T_KDF (21.05.2004)
Physics IV (Electricity and Magnetism)
Aim of the course -
Last update: KFNTJE/MFF.CUNI.CZ (14.04.2008)

Physics IV (Electricity and Magnetism)adapted for future teachers on the second level of the primary school.

Literature - Czech
Last update: T_KDF (23.05.2003)

Halliday D., Resnick R., Walker J.: Fyzika. český překlad VUTIM Brno a Prometheus Praha, 2001 Horák Z., Krupka F.: Fyzika, Praha, SNTL, 1981 Sedlák B., Štoll I.: Elektřina a magnetismus, Academia Praha, vyd. Karolinum 1993 Petržílka V., Šafrata St.: Elektřina a magnetismus, NČSAV, 1956 Gerthsen Ch., Kneser H., Vogel H.: Physik, Springer - Verlag 1989 Bakule R., a kol.: Příklady z elektřiny a magnetismu, skriptum MFF UK

Syllabus -
Last update: T_KDF (10.05.2005)

1. Electrostatics

Electric charge, Coulomb's law, electric field, Gauss's law, electric potential, field of an electric dipole, work in an electric field, electrostatic field of conductors, Coulomb's theorem, capacitance, capacitor, energy of conductors in electrostatic field, elst. field energy, power on conductors in an elst. field, a dipole in an elst. field.

2. Electric current

Types of electric conduction mechanism, electric current, equation of continuityfor electric current, Ohm's law, Joule's law, electromotive force, Kirchhoff's rules.

3. Magnetic field in vacuum

Magnetic field due to a steady current, Ampére's law, Biot-Savart law, work in a magnetic field, eletromagnetic induction (Faraday's law) in a quasi-stationary approx., induced electromotive force, Lenz's law, inductance, transformer, maghetic field energy.

4. Time dependent current and voltage in a quasi-stationary approx.

Ohm's law and Kirchhoff's rules, non-steady state circuits, steady state AC circuits, use of complex symbolics, resonant circuit.

5. Electric and magnetic field in matter

Dielectrics, electric field in dielectrics, Gauss's law in dielectric, electric field at an interface of dielectrics, magnetics, magnetic field in magnetics, Ampér's law in magnetics, magnetic circuit, energy of an elektric and magnetic field in matter, statement of Maxwell's equations.

 
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