15. 11. 2019  19:49 Leopold
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Sylabus předmětu D-TEP - Theory of Electromagnetic Field (FEEIT - 2018/2019 - post-graduate studies)

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University: Slovak University of Technology in Bratislava
Faculty: Faculty of Electrical Engineering and Information Technology
Course unit title: Theory of Electromagnetic Field
Course unit code: D-TEP
Mode of completion and Number of ECTS credits: Exam-PhD (12 credits)
Name of lecturer: doc. Ing. Vladimír Jančárik, PhD. (examiner) - slovak, english
doc. Ing. Elemír Ušák, PhD. (person responsible for course)
Learning outcomes of the course unit:
The deep and detail understanding of physical principles of electroimagnetic field theory
based on Maxwell equations (ME) and their creative application at solution of real tasks in research and praxis. To cope with analytical and numerical methods of the ME solution for a given boundary conditions with the results describing the interactions of the various types of matter or defined elecromechanical systems with the source electromagnetic field. The application of the acquired knowledge in the real problem solution in the field of aplied magnetism, metalic and dielectric planar or optical fiber waveguides and so on.

Prerequisites and co-requisites: none
Course contents:
ME for vacuum and for the matter space with linear, nonlinear, dispersive and anisotropic properties. Analytical solution of the ME using wave equations for the field vectors and using the electrodynamical potentials. Description and analysis of the electromagnetic waves propagation in waveguides - in rectangular metalic waveguide, in dielectric planar or fiber waveguide. Classification, description and analysis of the numerical methods for the solution of the boundary problems in electromagnetic field. The method of finite difference in time-domain (FDTD), finite element method (FEM). Speciac cases of the knowledge applications in the field of applied magnetism and fiber optics.

Recommended or required reading:
Haňka, L.: Teórie elektromegnetického pole. SNTL, Praha, 2002, 450 s.
Kvasnica, J.: Teórie elektromagnetického pole, Académia Praha, 1985, 450 s.
Marcuse, D: Light Transmission Optics, Van Norstrand reinhold Co., 1972, 565 pp.
Rosloniec,Stanislav: Fundamental Numerical Methods for Electricalal Engineering, Springer -Verlag, Berlin-Heidelberg, 2008, 298 pp.
Simonyi, K.:Thgeoretische Elektrotechnik, VEB Deutscher Verlag der Wissenschaften, Berlin 1968, 520 s.
Stratton, J. A.: Teórie elektromagnetického pole, SNTL, Praha, 1961, 520 s.
Tralli, N.: Classical Electromagnetic Theory, McGraw Hill Book Company, 1963 310 pp.

Planned learning activities and teaching methods: 1. Regular consultations based on the topics from recommended literarture sources
2. Elaboration of the written reports on assign topics
Assesment methods and criteria: Methods and cryteria of the evaluation are defined by the valid dokument "FEI STU Study Rules"
Language of instruction: Slovak, English
Work placement(s): There is no compulsory work placement in the course unit.

Last modification made by RNDr. Marian Puškár on 02/07/2019.

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