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
This information is intended exclusively for students already enrolled in this course.If you are a new student interested in enrolling, you can find information about the course of study on the course page:
Laurea in Informatica - Enrollment from 2025/2026The 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.
1° Year
Modules | Credits | TAF | SSD |
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Algebra and Foundations of Mathematics
Mathematical analysis
2° Year It will be activated in the A.Y. 2025/2026
Modules | Credits | TAF | SSD |
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3° Year It will be activated in the A.Y. 2026/2027
Modules | Credits | TAF | SSD |
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Un insegnamento a scelta
Modules | Credits | TAF | SSD |
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Algebra and Foundations of Mathematics
Mathematical analysis
Modules | Credits | TAF | SSD |
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Modules | Credits | TAF | SSD |
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Un insegnamento a scelta
Modules | Credits | TAF | SSD |
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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.
Quantum Mechanics (It will be activated in the A.Y. 2026/2027)
Teaching code
4S012343
Credits
6
Scientific Disciplinary Sector (SSD)
FIS/01 - FISICA SPERIMENTALE
Learning objectives
The course aims to provide basic knowledge of Quantum Mechanics, from fundamental physical principles to quantum formalism, necessary for understanding the behavior of a quantum physical phenomenon, from the main experiments in modern physics to quantum systems in applications to quantum computing. At the end of the course, the student will have to: Demonstrate knowledge and understanding of the behavior of a quantum system using the principles and formalism of Quantum Mechanics; Know how to apply the knowledge of the acquired concepts to study quantum systems through the setting up and solving of exercises and problems; Be able to choose in a sufficiently autonomous and critical way paths, strategies and methods in the study of the physical systems under examination and the applications of Quantum Mechanics, to interpret an acquired physical measurement; Knowing how to argue in a technical and precise way the knowledge learned using the appropriate language of Modern Physics and quantum formalism; Be able to develop skills to expand knowledge in the application of Quantum Mechanics to continuously developing modern technologies.