Electrical Engineering Course code: T40051 | 6 ECTS credits

Basic information
Level of Studies: Undergraduate applied studies
Year of Study: 1
Semester: 1
Requirements:
Goal: Enabling students to understand basic physical laws and processes that appear in electrical and magnetic field, to gain knowledge of working principles of linear electical circuits components, as well as to solve simple electrical circuits.
Outcome: Sudents will be able to indentify and explain basic electomagnetic field processes and solve simple electrical circuits.
Contents of the course
Theoretical instruction:
  1. Electostatic field lines and units;
  2. Electrical potential and voltage
  3. Conductors and dielectrics in electric field; capacitors
  4. Simple DC circuits,
  5. Kirchof's laws, Joule's law
  6. Magnetic field lines and units, magnetic force
  7. Electromagnetic induction and flux
  8. Materials in magnetic field
  9. Components of AC circuits
  10. Resonance and power in AC circuits,
Practical instruction (Problem solving sessions/Lab work/Practical training):
  1. Coulomb's law
  2. Principle of superposition
  3. Capacitors and capacity
  4. Ohm's law
  5. Solving the DC circuits
  6. Biot-Savart's law
  7. Faraday's law
  8. Paramagnetics, diamagnetics and feromagnetics
  9. Capacitors and inductors
  10. Solving the AC circuits
Textbooks and References
  1. A. Đorđević: Osnovi elektrotehnike 1 – Elektrostatika, Akademska misao, Beograd, 2016.
  2. A. Đorđević: Osnovi elektrotehnike 2 – Stalne struje, Akademska misao, Beograd, 2016
  3. A. Đorđević: Osnovi elektrotehnike 1 – Elektromagnetizam, Akademska misao, Beograd, 2016.
  4. A. Đorđević: Osnovi elektrotehnike 2 – Kola promenljivih struja, Akademska misao, Beograd, 2016
Number of active classes (weekly)
Lectures: 4
Practical classes: 2
Other types of classes: 0
Grading (maximum number of points: 100)
Pre-exam obligations
Points
activities during lectures
0
activities on practial excersises
0
seminary work
0
colloquium
40
Final exam
Points
Written exam
60
Oral exam
0