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Semester (Sem)
1First Semester
2Second Semester
AAnnual course
Educational activities
BIdentifying activities
Course completely offered in italian
Course completely offered in english
--Not available
Innovative teaching
The credits shown next to this symbol indicate the part of the course CFUs provided with Innovative teaching.
These CFUs include:
  • Subject taught jointly with companies or organizations
  • Blended Learning & Flipped Classroom
  • Massive Open Online Courses (MOOC)
  • Soft Skills
Course Details
Academic Year 2015/2016
School School of Industrial and Information Engineering
Name (Bachelor of Science degree)(ord. 270) - MI (349) Electrical Engineering
Track R1L - elt
Programme Year 2

Course Details
ID Code 086666
Course Type Mono-Disciplinary Course
Credits (CFU / ECTS) 10.0
Semester First Semester
Course Description Fundamental electrical quantities. Voltage, current, power: definitions, units, measurement and instrumentation: voltmeter, ammeter, wattmeter. Electrical components. Resistors, inductors, capacitors, voltage and current sources. Constitutive equations. Power, work and energy. Two-terminals networks and elementary method of analysis. Kirchhoff's laws. Series and parallel connections of resistors, inductors, capacitors and sources. Thevenin-Norton equivalent. Linearity and superposition. Elementary transients. GC and RL in natural and forced transient. Steady-state ac single-phase and three-phase network. Sinusoids, rms value, phasors. Resistors, inductors and capacitors in steady-state operation. Equivalent Thevenin-Norton steady-state operation. Steady-state ac powers: instantaneous, active, reactive, apparent. Frequency responce. Three-phase components and networks. Balanced and unbalanced three-phase systems. Instantaneous power. Star and delta connections. Three-phase system with three or four conductors. Elementary methods of analysis of three-phase networks. Two-port linear resistive components. Two-port linear resistive components. Equivalent circuits. Voltage and current controlled sources. Ideal transformer. Gyrator. Two-port linear inductive components. Two-port linear resistive components and equivalent circuits. Constitutive equations. Parameters, state variables and energy. Current and voltage ideal transformer. Ideal transformer. Magnetic structures. Circuital model of electromagnetic structures with iron core and air gaps. Analysis of linear magnetic equivalent networks. Permanent magnets. Duality between magnetic networks and electric equivalent networks. Fundamentals of electromechanical conversion. Electromechanical pressure, force and torque in electric and magnetic fields by the general minimum principle of thermodynamic potential. Electromechanical energy conversion cycle and elementary machine by variable capacitance or reluctance.
Scientific-Disciplinary Sector (SSD)
Educational activities SSD Code SSD Description CFU

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--AZZZZArturi Cesare Mario
manifesti v. 3.4.0 / 3.4.0
Area Servizi ICT