Lecturer(s)
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Dostál Jiří, prof. PhDr. PaedDr. Ph.D.
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Mrázek Michal, Mgr. Ph.D.
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Course content
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Theoretical electrical engineering - classification. Maxwell's theory of electromagnetic field. Basics of theory of circuits (electric, magnetic and dielectric circuits). Quasi-stationary conditions: temporary phenomena in RL, RC circuits; theoretical basics on linear circuits of harmonic alternate current in steady state. This subject is followed by Electrical engineering II. Exam is then taken in both subjects.
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Learning activities and teaching methods
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Lecture, Work with Text (with Book, Textbook), Projection (static, dynamic)
- Attendace
- 26 hours per semester
- Preparation for the Exam
- 20 hours per semester
- Semestral Work
- 10 hours per semester
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Learning outcomes
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The aim is to create basic theoretical structures for the study of electrical engineering and related disciplines. Theoretic electrical engineering. Maxwell theory of electromagnetic field, electric, magnetic and dielectric circuits, etc.
Students will deepen and extend knowledge in the field of electrical engineering electrical machinery, apparatus and electricity.
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Prerequisites
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not specified
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Assessment methods and criteria
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Written exam
test
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Recommended literature
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Adámek, M. a Matýsek, M. (2006). Úvod do elektrotechniky. Zlín : UTB. 159 s.
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Blahovec, A. (1999). Elektrotechnika III. (příklady a úlohy). Praha : Informatorium. 292 s.
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Blahovec, A. (1999). Elektrotechnika II.. Praha : Informatorium. 156 s.
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Blahovec, A. (1999). Elektrotechnika I.. Praha : Informatorium. 191 s.
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Brančík, L. (2004). Elektrotechnika 1.. Brno : VUT. 135 s.
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Dostál, J. (2008). Elektrotechnika I. (studijní opora). Olomouc : UP.
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Dvořáková, I. (2001). Teoretická elektrotechnika : cvičení. Olomouc : VUP.
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Kotlan, J. (1995). Základy teoretické elektrotechniky. Plzeň : ZČU. 258 s.
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Schieblová, J. a kol. (1997). Teoretická elektrotechnika 1.. Brno : VUT. 127 s.
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Smejkal, a kol. (1991). Elektrotechnika. Brno : VUT.
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Stratton, J.A. (1975). Teorie elektromagnetického pole. SNTL Praha.
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