Faculty of Technical Sciences

Subject: Materials in electrical engineering (17.H110)

Native organizations units: Department of Power, Electronic and Telecommunication Engineering
General information:
 
Category Theoretical-methodological
Scientific or art field Electronics
ECTS 5

Acquiring basic knowledge in the field of contemporary materials used in electrical engineering as well as measuring techniques for determining their electrical, optical and magnetic properties.

- ability to determine specific resistivity of semiconductors by four point method - ability to determine type of the semiconductor and its other properties using the Hall method -ability of practical application of Hall methods in electrical engineering (Hall’s sensor, current measuring on PCB)

Basic properties and classification of materials in electrical engineering. Crystal structures. Imperfections inside crystals. Energy gap, carrier concentration, the type of admixtures, transport phenomena. Engineering of the energy gap. Semiconductors (main representatives: Si, Ge, GaAs). The application of semiconductors according to the size and nature of the energy gap. Characterization methods of semiconductors (four point method, the Hall method). Techniques of crystal growth and application of the thin film. Conductors: (basic properties, representatives, thermoelectric effect). Dielectrics (basic properties, relative dielectrical constant). Materials for electronic housing. Optical properties of crystals (absorption and emission processes of light, displays). Magnetic properties of crystals (diamagnetism, paramagnetism, ferromagnetism). Soft and hard magnetic materials. Magnetic devices and applications (magnetic recording, magnetic-optical effect, nuclear magnetic resonance). Properties of superconductors. Application of superconductors (Josephson circuit, high-temperature superconductors)

Lectures; Auditory Practice; Laboratory Practice; Consultations

Authors Title Year Publisher Language
H. L. Kwok Electronic materials 1997 PWS Publishing Company English
Solymar, L., Walsh, D. Electrical Properties of Materials 1998 Oxford University Press, Oxford English
Hummel, R.E. Electronic Properties of Materials 2001 Springer, New York English
Livingston, J.D. Electronic Properties of Engineering Materials 1999 John Wiley and Sons, New York English
Course activity Pre-examination Obligations Number of points
Written part of the exam - tasks and theory No Yes 70.00
Test Yes Yes 10.00
Test Yes Yes 10.00
Exercise attendance Yes Yes 5.00
Lecture attendance Yes Yes 5.00

Assoc. Prof. Radić Jelena

Associate Professor

Lectures

Teaching Associate Tešović Dragana

Teaching Associate

Practical classes

Blaž Nelu

Professional Associate-Laboratory

Laboratory classes organizing - Laboratory personnel

Faculty of Technical Sciences

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© 2024. Faculty of Technical Sciences.