
150 5 2nd sem. Annual Summer 1 sem. Compulsory BA
Description
2.3 150 5 2nd sem. Annual Summer 1 sem. Compulsory BA 1 Course Contact hours Self- Forms of teaching Planned Language type study (forms of learning) group size Lecture 2 SCH 102 h Sem. lessons with 40 German Exercise 1 SCH self-study material 40 German Practical / Seminar 1 SCH 16 German Supervised self-study 24 h 40 German 2 Learning outcomes / competences Students understand the law of induction and know the concept of inductance and capacitance. In addition to characteristics of alternating quantities, they understand complex alternating current calculation as well as phasor representation and can apply these to the calculation of circuits. They know the basic idea of frequency analysis, can analyse the frequency dependence of circuits and know the representation as locus curve and Bode diagram. They know symmetrical three -phase systems and can calculate with them. 3 Contents Lecture/Exercise • Law of induction, inductance, capacitance • Differential equations for RC and RL circuits • Characteristics of alternating quantities in the time domain • Complex alternating current calculation (phasor diagrams) • Frequency dependence of networks (transfer functions) • Frequency analysis, spectrum • Locus curve, Bode diagram • Basic filter circuits and oscillating circuits • Application of simulation tools • Symmetrical three-phase systems Practical course • Magnetic induction • Networks at variable frequency, oscillating circuits • Transformer 4 Participation requirements None 5 Form of assessment Written examination 6 Condition for the award of credit points Passed module examination and issued test for the practical course 7 Application of the module (in the following study programmes): ELM, WIM 8 Module coordinator Prof. Dr.-Ing. Sven Battermann 9 Other information - Module catalogue for the B.Eng. in Electrical Engineering (work-integrated) of the Faculty of Minden Campus Page 21 from 47 Programming in C ELM-2- PIC No. Workload Credit Points Study semester Frequency Sem. Duration Type Q level
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