The World of Erasmus – A special event on Friday, 20 June 2025 5:00 PM School of Economics

The World of Erasmus – A special event on Friday, 20 June 2025 5:00 PM School of Economics

EVENT POSTPONED!!!!!

Unfortunately, due to the general public transport strike scheduled for Friday, 20 June and the limited guaranteed service hours (5:00 PM-8:00 PM), we regret to inform you that the event has to be postponed. This decision has been taken to ensure equal participation opportunities for everyone.

We will notify you of the new date as soon as possible.

However, since some of you are soon departing, we wish to ensure the timely distribution of certificates (for incoming students) and of kits (for outgoing students).

If your departure is imminent, you may collect these items starting Monday, 23 June at the Central Erasmus Office during opening hours: Monday 9:00 AM – 12:00 PM; Wednesday 9:00 AM – 12:00 PM and 2:00 PM – 4:00 PM; Friday 9:00 AM – 12:00 PM.

For those unable to collect certificates in person, we will email them to you.

We look forward to seeing you soon!

____________________________________

Come and discover the Erasmus+ World at Tor Vergata University of Rome:

Friday, 20 June 2025 5:00 PM School of Economics – Tor Vergata University of Rome

A special event designed for you, full of stories, dreams, and emotions

  • Special guests will share their Erasmus+ experiences through the pages of a novel
  • Outgoing and returning students will be ready to tell their stories
  • Awarding of participation certificates
  • Music
  • International aperitif

The full programme will be available soon!

—>>>> Register now: https://forms.office.com/e/dwM3rZYsda

Don’t miss out: it’s going to be an unforgettable journey!

https://web.uniroma2.it/en/contenuto/the-world-of-erasmus

Quantum Computing (D-opt)

Mathematical-Methods
2 YEAR (Block D)
2 semester 8 CFU
(from Physics LM-17 )
Prof.  A.Y. 2025-26 activated
start in the a.y. 2026-27
Code: 80300140
SSD: FIS/01
https://www.master-mass.eu/

 

  • PREREQUISITES: Basic concepts of Linear Algebra, Mathematical Analysis and Python Programming
  • OBJECTIVE: The lectures are thought to give a solid knowledge of the theoretical Machine Learning (ML) background. A special focus is given to the ML application for data analysis of physical systems. The students will also learn how to implement a typical ML model using the standard libraries in a Python environment.

 

International Webinar 2025: Discover Tor Vergata’s Bachelor’s and Master’s Degree Programs

webinar

8th & 14th of May 2025

IT: https://web.uniroma2.it/it/contenuto/webinar-internazionali-2025-luniversit-di-roma-tor-vergata-presenta-lofferta-formativa-triennale-e-magistrale-agli-studenti-internazionali

EN: https://web.uniroma2.it/en/contenuto/webinar-for-bachelors-degree-programs

Available sessions (CEST time):

  • Morning session: 9:30 AM
  • Afternoon session: 5:00 PM

Digital Signal Processing – 9 CFU (optC1.b/optC2.b)

Digital Signal Processing – 9 CFU (optC1.b/optC2.b)
1 YEAR II semester  9 CFU
ICT and Internet Engineering
Marina RUGGIERI (cfu)

Tommaso ROSSI (cfu)

A.Y. 2025-26 

Syllabus📑

Code: 80300072
SSD: ING-INF/03

The Digital Signal Processing teaching modules offer students the opportunity to become designers, providing a solid theoretical basis, multiple design techniques and Matlab script development skills.

DSP is offered to Mechatronics students with the option of 6 credits and 9 credits format. Students who select the 6-credit option might be interested in adding 3 credits of formative activities, with a focus on pre-assigned additional topics in the DSP realm.

 

Digital Modeling of Energy Conversion – 6 CFU (block A-B) (since 2025-26)

Digital Modeling of Energy Conversion – 6 CFU (block A-B) (since 2025-26)
1 YEAR
1 semester 6 CFU
Vincenzo MULONE (3cfu)

Pietro MELE (3cfu)

A.Y. 2025-26
didatticaweb
Syllabus📑

Code:
SSD: ING-IND-08
(by Mechatronics Engineering)

Digital Modeling of Energy Conversion 9 – Block A-B

Mechanics of Systems for Simulations – 6 CFU (block A-B) (since 2025-26)

Mechanics of Systems for Simulations – 6 CFU (block A-B) (since 2025-26)
1 YEAR
1 semester 6 CFU
(ex FUNDAMENTALS OF MECHANICS OF SYSTEMS)
Marco Ceccarelli A.Y. 2025-26 program 📑
Code: 80300216 
SSD: ING-IND-13
(by Engineering Sciences)


PREREQUISITES: knowledge of basic mechanics of rigid bodies and computation skills

SYLLABUS

Structure and classification of planar mechanical systems, kinematic modelling, mobility analysis, graphical approaches of kinematics analysis, kinematic analysis with computer-oriented algorithms, dynamics and statics modelling, graphical approaches of dynamics analysis, dynamic analysis with computer-oriented algorithms, performance evaluation, elements of mechanical transmissions.

BOOKS:

Lopez-Cajùn C., Ceccarelli M., Mecanismos, Trillas, Città del Messico
Shigley J.E., Pennock G.R., Uicker J.J., “Theory of Machines and Mechanisms”, McGraw-Hill, New York
Handnotes and papers by the teachers

Radar and Localization – 6 CFU (optC2.a)

Radar and Localization – 6 CFU (optC2.a)
2 YEAR II semester 6 CFU
Prof. Mauro Leonardi A.Y. 2025-26
 

 

(By ICT)
Code: 80300159
SSD: ING-INF/03

LEARNING OUTCOMES: Knowledge of the main applications and operations of radar systems with the necessary basic elements (both theoretical and technical-operational).

KNOWLEDGE AND UNDERSTANDING: Being aware, at the system level, performance in terms of scope, discrimination, ambiguity, Doppler filtering

APPLYING KNOWLEDGE AND UNDERSTANDING: knowing how to deal with new problems with the methods learned

MAKING JUDGEMENTS: the ability to choose among the various methods learned the proper one to face new problems and radar design.

Syllabus – Radar Systems

1. Fundamentals

  • General information on radar.

  • Spectrum usage.

  • Radar measurements:

    • Distance.

    • Radial velocity.

    • Angular location.

2. Radar Equation and Propagation

  • Fundamental radar equation.

  • Receiver and antenna noise.

  • Propagation: attenuation and reflections.

  • Losses.

3. Radar Cross Section and Target Models

  • Radar Cross Section (RCS).

  • Target fluctuation models:

    • Slow fluctuation.

    • Rapid fluctuation.

4. Target Detection

  • Detection of fixed targets.

  • Detection of moving targets.

  • Pulse integration.

5. Decision Theory and Radar Detection

  • Decision criteria.

  • Detection with a single pulse.

  • Detection with N pulses.

6. Radar Types

  • Pulsed radar.

  • Continuous Wave (CW) radar.

  • Frequency Modulated Continuous Wave (FMCW) radar.

  • Automotive radar.