Studying at the University of Verona

Here you can find information on the organisational aspects of the Programme, lecture timetables, learning activities and useful contact details for your time at the University, from enrolment to graduation.

The Study Plan includes all modules, teaching and learning activities that each student will need to undertake during their time at the University.
Please select your Study Plan based on your enrollment year.

3° Year  activated in the A.Y. 2019/2020

ModulesCreditsTAFSSD
5
B
CHIM/07 ,MED/44 ,MED/50
5
B
IUS/07 ,MED/42 ,MED/50 ,M-PSI/06
Multidisciplinary seminaries
4
F
-
Final exam
7
E
-
activated in the A.Y. 2019/2020
ModulesCreditsTAFSSD
5
B
CHIM/07 ,MED/44 ,MED/50
5
B
IUS/07 ,MED/42 ,MED/50 ,M-PSI/06
Multidisciplinary seminaries
4
F
-
Final exam
7
E
-

Legend | Type of training activity (TTA)

TAF (Type of Educational Activity) All courses and activities are classified into different types of educational activities, indicated by a letter.




S Placements in companies, public or private institutions and professional associations

Teaching code

4S000463

Teacher

Renzo Azaro

Credits

2

Language

Italian

Scientific Disciplinary Sector (SSD)

ING-IND/09 - ENERGY SYSTEMS AND POWER GENERATION

Period

TPALL 2° ANNO 2° SEMESTRE dal Feb 1, 2019 al May 31, 2019.

To show the organization of the course that includes this module, follow this link:  Course organization

Learning outcomes

The course provides the students with the basic knowledge on electromagnetic fields and their practical applications in electrical systems, in telecommunication systems and in materials processing, focusing on potential risks for workers and for general public.

Program

BASICS ON ELECTROMANGNETIC FIELDS
The electric charges. The electric field. The electric currents. The magnetic field. Introduction to Maxwell equations and to their meaning. The electromagnetic field. Energetic properties of electromagnetic fields.
APPLICATION OF ELECTROMAGNETIC FIELDS IN ELECTRICAL SISTEMS
Lumped electrical components. Resistors, capacitors, inductors and their properties. Electrical networks and their properties. Steady state and dynamic state of components and networks. Periodic waveforms, alternating waveforms and harmonic waveforms. Components and networks behavior in harmonic regime. Basics on the network analysis methodologies.
ELECTROMAGNETIC FIELD APPLICATIONS IN TELECOMMUNICATION SYSTEMS, IN MEDICAL SYSTEMS AND IN MATERIALS PROCESSING
Basics on the different typologies of antennas, their working and applications in telecommunication systems. Electromagnetic fields generated by telecommunication systems antennas. Systems for the generation and use of electromagnetic fields in medical and in material processing applications. Electromagnetic fields generated by the electric power transport systems.
RISKS ASSOCIATED WITH THE USE OF ELECTROMAGNETIC ENERGY
Risks associated with the use of electromagnetic fields in electrical systems. Risks associated with the use of electromagnetic fields in telecommunication systems, in medical systems and in material processing methodologies. Prevention techniques.
ELECTROMAGNETIC FIELDS MEASUREMENTS
Electric field measurements. Magnetic field measurements. Radiated field measurements. Polarized and isotropic field probe. Wideband and narrowband measurement techniques.
EXPERIMENTAL EXPERIENCES
Experimental exercises on the electromagnetic field measurements with wideband and narrowband techniques. Example of environmental electromagnetic impact evaluation of a mobile phone system.

REFERENCE BOOKS
Course notes, didactic material provided during the course.


Examination Methods

Written test with multiple choice quizzes, open questions and simple numerical exercises. The test can be integrated with oral questions.

Students with disabilities or specific learning disorders (SLD), who intend to request the adaptation of the exam, must follow the instructions given HERE