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.

Study Plan

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.

CURRICULUM TIPO:

2° Year   It will be activated in the A.Y. 2027/2028

ModulesCreditsTAFSSD
Final exam
24
E
-
It will be activated in the A.Y. 2027/2028
ModulesCreditsTAFSSD
Final exam
24
E
-
Modules Credits TAF SSD
Between the years: 1°- 2°
Two modules among the following
6
B
INFO-01/A
6
B
INFO-01/A
6
B
INFO-01/A
6
B
INFO-01/A
6
B
INFO-01/A
6
B
INFO-01/A
6
B
INFO-01/A
Between the years: 1°- 2°
Three modules among the following
- A.A. 2026/2027 Automated software verification not delivered
6
C
INFO-01/A
6
C
INFO-01/A
6
C
INFO-01/A
6
C
INFO-01/A
6
C
INFO-01/A
6
C
INFO-01/A
6
C
INFO-01/A
Between the years: 1°- 2°
Further language skills (students who didn't take B2 ENG exam during bachelor's degree have to take it during master's degree. Who did take it during bachelor's can take: ENG (C1, C2), SPA (B1, B2, C1, C2), FRA (B1, B2, C1, C2), TED (B1, B2, C1, C2)
3
F
-
Between the years: 1°- 2°
Further activities
3
F
-
Between the years: 1°- 2°

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

4S008917

Credits

6

Language

Italian

Also offered in courses:

Scientific Disciplinary Sector (SSD)

INFO-01/A - Informatics

Courses Single

Authorized

The teaching is organized as follows:

Teoria

Credits

5

Period

II semestre

Academic staff

Alessandra Di Pierro

Laboratorio

Credits

1

Period

II semestre

Academic staff

Alessandra Di Pierro

Learning objectives

This course aims at introducing the basic concepts of Quantum Computing via the study of the physical phenomena characterising this paradigm with respect to the classical one. The course is articulated into three main parts: 1) the study of the quantum circuit model and its universality; 2) the study of the most important quantum techniques for the design of algorithms and their analysis; 3) the introduction of various quantum programming languages and of some of the existing quantum software platforms. it is expected that the students who attend the course, will be able at the end to autonomously undertake more specialised studies in the quantum research field of their choice.

Prerequisites and basic notions

Linear Algebra Basics

Program

Part I: Quantum Computing
Basic notions from quantum mechanics and linear algebra
The qubit
Quantum Computability: The quantum circuit model, Universality and universal sets of gates.
Quantum Algorithms and Complexity: The BQP class, Phase estimation, Factoring, Quantum search
NISQ Computers
Demonstration in Lab
Part II: Quantum Software
Quantum Programming Languages
Quantum Compilation
Quantum Algorithms for Machine Learning

Didactic methods

Classroom lessons with the help of the blackboard and the projector

Learning assessment procedures

Written exam

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

Evaluation criteria

Learning the basic concepts of quantum computing (computational paradigm, algorithmic techniques and complexity) and the ability to apply them to simple problems

Criteria for the composition of the final grade

The final grade is calculated as the average of the written grade and the evaluation of a project to be carried out using quantum software platforms available on the cloud.

Exam language

Italiano/Inglese