Type of studies | Title |
---|---|
Doctoral Academic Studies | Environmental Engineering (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Information Systems Engineering (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Power, Electronic and Telecommunication Engineering (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Mechatronics (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Mechanical Engineering (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Disaster Risk Management and Fire Safety (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Traffic Engineering (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Biomedical Engineering (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Engineering Animation (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Computing and Control Engineering (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Industrial Engineering / Engineering Management (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Civil Engineering (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Geodesy and Geoinformatics (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Occupational Safety Engineering (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Graphic Engineering and Design (Year: 1, Semester: Winter) |
Doctoral Academic Studies | Mathematics in Engineering (Year: 1, Semester: Winter) |
Category | Scientific-professional |
Scientific or art field | Physics |
ECTS | 5 |
To acquire the knowledge of physics which is applied in modern engineering.
The students will have acquired the knowledge which enables them to develop models for solving problems in practical professional work as well as evolvement in science and research work in the corresponding areas.
Student can choose in consultation with programme supervisor, one of the suggested modules: 1. Lasers, their applications in engineering, 2. Quantum tunnelling effect and applications, 3. Quantum dots, wires and tubes, Applications in nanotechnologies, 4. New materials, amorphous materials, spin glass, 5. Natural and artificial polymers and their application in nanotechnologies, 6. Numerical method of statistics physics, random number generator. Monte Carlo simulation.
Lectures. (The student can choose in consultation with co-mentor, one or more modules depending on module scope). Consultations. Lectures are organized in combined form. The presentation of the theoretical part is followed by the corresponding examples. In addition to lectures there are regular consultations. Through research and study work the student will, on the bases of scientific journals and other relevant literature that has been studied independently, develop further understanding of the material covered in lectures. Working with the course teacher the student develops the ability to independently work on a scientific paper.
Authors | Title | Year | Publisher | Language |
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2008 | English | |||
2010 | English | |||
2004 | English | |||
2008 | English | |||
2009 | English | |||
2011 | English | |||
2009 | English | |||
2004 | English | |||
2005 | English | |||
2000 | English | |||
2008 | English | |||
2010 | English | |||
2011 | English | |||
2018 | English | |||
2010 | English | |||
2010 | English |
Course activity | Pre-examination | Obligations | Number of points |
---|---|---|---|
Term paper | Yes | Yes | 50.00 |
Oral part of the exam | No | Yes | 50.00 |
Full Professor
Full Professor
Full Professor
Full Professor
Assistant Professor
Associate Professor
Associate Professor
Full Professor
Full Professor
Full Professor
Full Professor
Assistant Professor
Associate Professor
Associate Professor
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Address: Trg Dositeja Obradovića 6, 21102 Novi Sad
© 2024. Faculty of Technical Sciences.