Courses - Course Regulation 2023
The Department of Economics offers both First cycle degree courses and Second cycle degree courses in three different locations in Umbria: Assisi, Perugia and Terni:
Degree Course: Chemical sciences
Study-units
1° Year
2° Year
| Study-unit | Curriculum | CFU | Period |
|---|---|---|---|
| ADVANCED MATERIALS PROPERTIES | Common element in all curricula | 6 |
I |
| ADVANCED METHODS IN ELECTRONIC STRUCTURE, DYNAMICS AND MOLECULAR MODELLING | theoretical chemistry and computational modelling | 12 |
I |
| COMPUTATIONAL APPROACHES TO ORGANIC REACTIONS | Common element in all curricula | 6 |
I |
| OPTIONAL SUBJECTS | Common element in all curricula | 12 |
I |
| BIOGEOCHEMISTRY | Common element in all curricula | 6 |
I |
| ADVANCED CHARACTERIZATION OF INORGANIC MATERIALS | Common element in all curricula | 6 |
I |
| BIOINORGANIC CHEMISTRY | Common element in all curricula | 6 |
I |
| CHEMISTRY OF POLYMERS | Common element in all curricula | 6 |
I |
| CHEMISTRY AND ENERGY SOURCES | Common element in all curricula | 6 |
I |
| DIDACTICS OF CHEMISTRY | Common element in all curricula | 6 |
I |
| FEMTOCHEMISTRY | Common element in all curricula | 6 |
I |
| PHOTOCHEMISTRY | Common element in all curricula | 6 |
I |
| ARTIFICIAL INTELLIGENCE IN CHEMISTRY | Common element in all curricula | 6 |
I |
| MATERIALS AND PROCESSES FOR LIGHT CONVERSION | Common element in all curricula | 6 |
I |
| REACTION MECHANISMS IN ORGANIC CHEMISTRY | Common element in all curricula | 6 |
I |
| METHODS AND MATERIALS FOR NANOPHOTONICS | Common element in all curricula | 6 |
I |
| ADVANCED METHODOLOGIES FOR ENVIRONMENTAL SCIENCES AND CULTURAL HERITAGE | Common element in all curricula | 6 |
I |
| MODELING OF ORGANIC MOLECULES | Common element in all curricula | 6 |
I |
| NON LINEAR OPTICS | Common element in all curricula | 6 |
I |
| NOVEL TECHNOLOGIES FOR CATALYSIS | Common element in all curricula | 6 |
I |
| THEORETICAL METHODS FOR MOLECULAR DYNAMICS | Common element in all curricula | 6 |
I |
| STAGE FOR OPTIONAL SUBJECT | Common element in all curricula | 6 |
I |
| FINAL EXAMINATION | Common element in all curricula | 24 |
II |
| STAGE | Common element in all curricula | 12 |
Optional course content (Groups)
| Study-unit | Curriculum | CFU | Period |
|---|---|---|---|
|
Group GRUPPO AFFINI E INTEGRATIVE II ANNO
Required CFU: 12
|
|||
| ADVANCED MATERIALS PROPERTIES | common element in all curricula |
6 |
I |
| COMPUTATIONAL APPROACHES TO ORGANIC REACTIONS | common element in all curricula |
6 |
I |
| BIOGEOCHEMISTRY | common element in all curricula |
6 |
I |
| ADVANCED CHARACTERIZATION OF INORGANIC MATERIALS | common element in all curricula |
6 |
I |
| BIOINORGANIC CHEMISTRY | common element in all curricula |
6 |
I |
| CHEMISTRY OF POLYMERS | common element in all curricula |
6 |
I |
| CHEMISTRY AND ENERGY SOURCES | common element in all curricula |
6 |
I |
| DIDACTICS OF CHEMISTRY | common element in all curricula |
6 |
I |
| FEMTOCHEMISTRY | common element in all curricula |
6 |
I |
| PHOTOCHEMISTRY | common element in all curricula |
6 |
I |
| ARTIFICIAL INTELLIGENCE IN CHEMISTRY | common element in all curricula |
6 |
I |
| MATERIALS AND PROCESSES FOR LIGHT CONVERSION | common element in all curricula |
6 |
I |
| REACTION MECHANISMS IN ORGANIC CHEMISTRY | common element in all curricula |
6 |
I |
| METHODS AND MATERIALS FOR NANOPHOTONICS | common element in all curricula |
6 |
I |
| ADVANCED METHODOLOGIES FOR ENVIRONMENTAL SCIENCES AND CULTURAL HERITAGE | common element in all curricula |
6 |
I |
| MODELING OF ORGANIC MOLECULES | common element in all curricula |
6 |
I |
| NON LINEAR OPTICS | common element in all curricula |
6 |
I |
| NOVEL TECHNOLOGIES FOR CATALYSIS | common element in all curricula |
6 |
I |
| THEORETICAL METHODS FOR MOLECULAR DYNAMICS | common element in all curricula |
6 |
I |
|
Group CREDITI A SCELTA DELLO STUDENTE
Required CFU: Min12 - Max15
|
|||
| ADVANCED MATERIALS PROPERTIES | common element in all curricula |
6 |
I |
| COMPUTATIONAL APPROACHES TO ORGANIC REACTIONS | common element in all curricula |
6 |
I |
| BIOGEOCHEMISTRY | common element in all curricula |
6 |
I |
| ADVANCED CHARACTERIZATION OF INORGANIC MATERIALS | common element in all curricula |
6 |
I |
| BIOINORGANIC CHEMISTRY | common element in all curricula |
6 |
I |
| CHEMISTRY OF POLYMERS | common element in all curricula |
6 |
I |
| CHEMISTRY AND ENERGY SOURCES | common element in all curricula |
6 |
I |
| DIDACTICS OF CHEMISTRY | common element in all curricula |
6 |
I |
| FEMTOCHEMISTRY | common element in all curricula |
6 |
I |
| PHOTOCHEMISTRY | common element in all curricula |
6 |
I |
| ARTIFICIAL INTELLIGENCE IN CHEMISTRY | common element in all curricula |
6 |
I |
| REACTION MECHANISMS IN ORGANIC CHEMISTRY | common element in all curricula |
6 |
I |
| METHODS AND MATERIALS FOR NANOPHOTONICS | common element in all curricula |
6 |
I |
| ADVANCED METHODOLOGIES FOR ENVIRONMENTAL SCIENCES AND CULTURAL HERITAGE | common element in all curricula |
6 |
I |
| MODELING OF ORGANIC MOLECULES | common element in all curricula |
6 |
I |
| NON LINEAR OPTICS | common element in all curricula |
6 |
I |
| NOVEL TECHNOLOGIES FOR CATALYSIS | common element in all curricula |
6 |
I |
| THEORETICAL METHODS FOR MOLECULAR DYNAMICS | common element in all curricula |
6 |
I |
|
Group GRUPPO AFFINI E INTEGRATIVE II ANNO
Required CFU: 12
|
|||
| ADVANCED MATERIALS PROPERTIES | Theoretical chemistry and computational modelling |
6 |
I |
| ADVANCED METHODS IN ELECTRONIC STRUCTURE, DYNAMICS AND MOLECULAR MODELLING | Theoretical chemistry and computational modelling |
12 |
I |
| COMPUTATIONAL APPROACHES TO ORGANIC REACTIONS | Theoretical chemistry and computational modelling |
6 |
I |
| BIOGEOCHEMISTRY | Theoretical chemistry and computational modelling |
6 |
I |
| ADVANCED CHARACTERIZATION OF INORGANIC MATERIALS | Theoretical chemistry and computational modelling |
6 |
I |
| BIOINORGANIC CHEMISTRY | Theoretical chemistry and computational modelling |
6 |
I |
| CHEMISTRY OF POLYMERS | Theoretical chemistry and computational modelling |
6 |
I |
| CHEMISTRY AND ENERGY SOURCES | Theoretical chemistry and computational modelling |
6 |
I |
| DIDACTICS OF CHEMISTRY | Theoretical chemistry and computational modelling |
6 |
I |
| FEMTOCHEMISTRY | Theoretical chemistry and computational modelling |
6 |
I |
| PHOTOCHEMISTRY | Theoretical chemistry and computational modelling |
6 |
I |
| ARTIFICIAL INTELLIGENCE IN CHEMISTRY | Theoretical chemistry and computational modelling |
6 |
I |
| MATERIALS AND PROCESSES FOR LIGHT CONVERSION | Theoretical chemistry and computational modelling |
6 |
I |
| REACTION MECHANISMS IN ORGANIC CHEMISTRY | Theoretical chemistry and computational modelling |
6 |
I |
| METHODS AND MATERIALS FOR NANOPHOTONICS | Theoretical chemistry and computational modelling |
6 |
I |
| ADVANCED METHODOLOGIES FOR ENVIRONMENTAL SCIENCES AND CULTURAL HERITAGE | Theoretical chemistry and computational modelling |
6 |
I |
| MODELING OF ORGANIC MOLECULES | Theoretical chemistry and computational modelling |
6 |
I |
| NON LINEAR OPTICS | Theoretical chemistry and computational modelling |
6 |
I |
| NOVEL TECHNOLOGIES FOR CATALYSIS | Theoretical chemistry and computational modelling |
6 |
I |
| THEORETICAL METHODS FOR MOLECULAR DYNAMICS | Theoretical chemistry and computational modelling |
6 |
I |


