Studying at the University of Verona
Academic calendar
The academic calendar shows the deadlines and scheduled events that are relevant to students, teaching and technical-administrative staff of the University. Public holidays and University closures are also indicated. The academic year normally begins on 1 October each year and ends on 30 September of the following year.
Course calendar
The Academic Calendar sets out the degree programme lecture and exam timetables, as well as the relevant university closure dates..
Period | From | To |
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1° semestre | Sep 30, 2019 | Jan 10, 2020 |
Accoglienza matricole 2019-20 | Oct 4, 2019 | Oct 4, 2019 |
2° semestre 6° anno | Jan 27, 2020 | Mar 13, 2020 |
2° semestre 1°- 5° anno | Feb 17, 2020 | May 29, 2020 |
PROGRESS/TRAINING TEST | Apr 1, 2020 | Apr 1, 2020 |
Session | From | To |
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Iscrizione Corsi elettivi 1° semestre | Sep 5, 2019 | Oct 2, 2019 |
Sessione studenti fuori corso | Oct 1, 2019 | Sep 30, 2020 |
Sessione invernale 6° anno | Jan 7, 2020 | Jan 24, 2020 |
Sessione invernale 2°-5° anno | Jan 7, 2020 | Feb 14, 2020 |
Iscrizione Corsi elettivi 2° semestre | Jan 13, 2020 | Feb 12, 2020 |
Sessione invernale 1° anno | Jan 13, 2020 | Feb 14, 2020 |
Sessione estiva 6° anno (i laureandi di luglio devono terminare gli esami entro il 25.06.2020) | May 4, 2020 | Jul 31, 2020 |
Sessione estiva 1° - 5° anno | Jun 3, 2020 | Jul 31, 2020 |
Sessione autunnale (i laureandi di ottobre devono terminare gli esami entro il 25.09.2020) | Sep 1, 2020 | Sep 30, 2020 |
Session | From | To |
---|---|---|
Sessione invernale straordinaria a.a. 2018-2019 | Mar 9, 2020 | Mar 20, 2020 |
Sessione estiva | Jul 6, 2020 | Jul 24, 2020 |
Sessione autunnale | Oct 12, 2020 | Oct 23, 2020 |
Period | From | To |
---|---|---|
Festa di Ognissanti | Nov 1, 2019 | Nov 1, 2019 |
Vacanze di Natale | Dec 24, 2019 | Jan 6, 2020 |
VACANZE DI PASQUA | Apr 10, 2020 | Apr 15, 2020 |
Festa del Lavoro | May 1, 2020 | May 1, 2020 |
FESTIVITA' DEL SANTO PATRONO SAN ZENO | May 21, 2020 | May 21, 2020 |
Description | Period | From | To |
---|---|---|---|
Esercitazioni, Attività pratiche, Tirocini professionalizzanti | Esercitazioni, Attività pratiche, Tirocini professionalizzanti | Sep 30, 2019 | Sep 30, 2020 |
Exam calendar
Exam dates and rounds are managed by the relevant Medicine Teaching and Student Services Unit.
To view all the exam sessions available, please use the Exam dashboard on ESSE3.
If you forgot your login details or have problems logging in, please contact the relevant IT HelpDesk, or check the login details recovery web page.
Should you have any doubts or questions, please check the Enrollment FAQs
Academic staff
Bisoffi Zeno
zeno.bisoffi@sacrocuore.it +390456013326Cornaglia Giuseppe
giuseppe.cornaglia@univr.it 045 8027196Scuro Alberto
alberto.scuro@univr.it +39 045 812 4413Study 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.
1° Year
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2° Year activated in the A.Y. 2020/2021
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3° Year activated in the A.Y. 2021/2022
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4° Year activated in the A.Y. 2022/2023
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5° Year activated in the A.Y. 2023/2024
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6° Year It will be activated in the A.Y. 2024/2025
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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.
Chemistry and Biological chemistry - CHIMICA E PROPEDEUTICA BIOCHIMICA (2019/2020)
Teaching code
4S01134
Teacher
Credits
7
Language
Italian
Scientific Disciplinary Sector (SSD)
BIO/10 - BIOCHEMISTRY
Period
1° semestre dal Sep 30, 2019 al Jan 10, 2020.
Location
VERONA
To show the organization of the course that includes this module, follow this link: Course organization
Learning outcomes
Knowledge of the features of elements and compounds and of the principles that allow to understand their behaviour in biological systems; knowledge of reactivity of the different classes of organic compounds; to acquire of a solid chemical basis to allow interpretation of biochemical phenomena at a molecular level; knowledge of the structure-function relationship of proteins, sugars and lipids, of enzyme properties, and their reaction kinetics and catalytic mechanisms, of vitamins and hormones; knowledge of the pathways through which the livings synthetize and degrade sugars, lipids, amino acids and nucleotides, taking particular consideration to production and consumption of energy.
Program
General chemistry
-The matter: elements, compounds, mixtures, nomenclature. Measures and moles.
- Chemical reactions and equations: precipitation, neutralization (or salification). Oxide acids and basic oxides. Amphoter elements. Acid and base reactions (Arrhenius). Principle of redox reactions: definition of oxidizing and reducing.
-Stechometry. Avogadro's mole and number concept. Concentration concept: molarity and percentage by weight and volume.
-Gas: Boyle's Law, Charles's Law, Avogadro's Principle, the Law of Ideal Gases, Dalton's partial pressure law, concept of real gas, density, molecular motion, diffusion and effusion, molecular motion and speed: kinetic model of gases , Maxwell distribution, Joule-Thomson effect.
-Termochemistry: concept of heat and energy, heat measurement, exothermic and endothermic reactions, enthalpy, standard enthalpy, standard enthalpy formation, state changes: correlation with enthalpy. Steaming, melting, sublimation and heating curves. Reaction Entalpy.
-Atome structure: Thomson, Rutherford and Bohr models. Lightenings: wave and corpuscular nature (as many as photons), speed of light. Spectral lines, electromagnetic spectrum: wavelength, frequency, and energy. Electrons: waves and energy levels. Absorption Concept and Law of Lambert-Beer. Atomic models: meaning of Schrödinger's equation and orbital concept. Correlation between quantum and orbital numbers: hierarchical structure of layers, substrates and orbital. Electronic spin. Hydrogen atom electronic structure.
-Multielectronic atoms: concept of orbital equals the main quantum number and different energy: screen effect and penetration. Orbital energy, aufbau or layer construction, electronic configuration of atoms, electronic ion configuration, valence, correlations between electronic structure and periodic table (historical importance ... Mendeleev)
-The periodic character of atomic properties: atomic radius, ion ray, ionization energy, metallic character, inert torque, diagonal correlations, electronic affinity. Generality on block elements s, p, d and f.
-The chemical bonds: ionic bonds, Lewis symbols, covalent bonds, and the rule of the loop. Lewis structures, resonance and formal charge. Radical and biradical, expanded valence. Lewis acids and bases. Ionic bonds and covalent bonds: electronegativity and correction of the ionic and covalent model. Homeworm and heteropolar covalent bonds.
From atom to molecule: atomic and molecular orbital. VSEPR model and solitary pairs, multiple ties, distortion caused by lonely pairs, solitary pairs of molecules on the central cell. Polar links and polar molecules. Binding strength, tie length, angle. Orbital and Ties: Sigma Bond and more piGreek bond, Hybrid orbital concept, special attention to carbon hybridization: simple, double, triple carbon-carbon bonds.
-Intermolecular forces: London forces (or Van del Waals), dipole-dipole interactions, hydrogen bonds. Some liquid properties: viscosity and surface tension. Some concepts on solids: crystals and ionic structures. Stage changes: vapor pressure (or tension), boiling, solidification and fusion, state diagrams, cooling curves and critical properties.
-Solutions: solubility (solute and solvent), factors influencing solubility, Henry's law. Solubility, enthalpy and disorder. Colligative properties: Concentration measures, steam pressure lowering, boiling point elevation and freezing point lowering. Osmosis.
- Chemical equilibrium: concept of reversibility, equilibrium constant, heterogeneous equilibrium and gaseous phase. Applying the equilibrium constant to the chemical reaction. Balance and change of conditions.
Acid and Base Reaction: Acids and bases according to Arrhenius, Brønsted-Lowry and Lewis (nucleophilic and electrophilic concept). Protons, acids and conjugate bases, pH and water. Acids and weak bases, equilibrium, constant acid dissociation, pKa, pH of acid solutions and weak bases, Hendersson-Hasselbach equation. Ions such as acids or bases, pH of saline solutions, titrations, buffer solutions, solubility balances. Relationship structure-acidity. Titration curve of a weak acid. PH of a buffer solution.
-Termodynamics: first principle and heat, work, inner energy and enthalpy. Second principle and spontaneous transformations, entropy and disorder, standard entropy. Free energy: system and environment, free reaction standard energy, free energy and balance.
-Electrochemistry: reversal and balancing of redox reactions: electron transfer. Galvanic, potential and potential standard cells. Faraday's constant. Potential standard and constant equilibrium, Nernst equation. Electrolysis.
Chemical chemistry: concentration and reaction rate, kinetic equation, first order kinetics and half-life, and second-order kinetics. Temperature and impact effects. Catalysis concept. Notes on reaction mechanisms.
ORGANIC CHEMISTRY
-Carbon: chemical bond and isomerism. Review of homo-and heteropolar covalent bonding, simple and multiple bonds C-C, valence, isomerism, resonance, structure formula, bonds and , orbital sp3.
-Acrocaburs: alcohols and cycloalcans, conformational and geometric isomers, cis-trans isomers. IUPAC nomenclature rules. Alchens and alchins. Orbitals sp2 and sp. Rule of Markovnikov. Physical-physical properties. Hydrocarbons and acidity. Hydrocarbons and oxidation.
-Benzene and aromatic compounds.
-Stereoisomeria: chirality, configuration d, l and R, S. Projections of Fischer. Optical activity. Enantiomers and racemic mixture.
- Functional Groups and Definition of Families of Organic Compounds: Alcohols and Thiols, Ethers and Epoxies, The Carbonyl Group, nucleophilic and electrophile (Lewis) concept: Aldehydes and ketones, Cheto-enol tautomeria. Carboxylic acids, the distinction between alcoholic and acidic oxidants. Amines and nitrogen compounds.
-High hydrogen atoms depending on location, aldehyde condensation.
-Legami: esters and thioester, anhydrous, amidic (or peptidic). Ties and energy.
- Organic reactions: nucleophilic and electrophilic addition, hydration, halogenation and hydrogenation, nucleophilic substitution of type SN1 and SN2. Elimination of type E1 and E2.
-Macromolecules: fatty acids: saturated and unsaturated, even or odd. Glycerol and triglycerides. Carbohydrates: monosaccharides, disaccharides and polysaccharides. Definition and classification, chirality, semiacetal structures, anomeria and mutarotation, piranosic and furanosic structures. Reduction and oxidation of monosaccharides.
Propedeutic biochemistry
- Proteins
- Enzyme
- Vitamins
- Lipid
- Glucids
Examination Methods
Written to test the basic knowledges of chemistry followed by an oral.
The oral part aims to evaluate the competences acquired by the student to interpret physio-pathological events with a molecular and biochemical approach
Free choice courses
years | Modules | TAF | Teacher |
---|---|---|---|
1° 2° 3° 4° 5° 6° | Univero’ 2019 | D | Not yet assigned |
Career prospects
Module/Programme news
News for students
There you will find information, resources and services useful during your time at the University (Student’s exam record, your study plan on ESSE3, Distance Learning courses, university email account, office forms, administrative procedures, etc.). You can log into MyUnivr with your GIA login details: only in this way will you be able to receive notification of all the notices from your teachers and your secretariat via email and soon also via the Univr app.
Erasmus+ e altre esperienze all'estero
Extra courses and activities
Opzioni (cambio di ordinamento)
Studenti iscritti alla classe LM/41 (Classe delle lauree magistrali in medicina e chirurgia)
Il MUR, con nota prot. n. 8610 del 25/3/2020 avente oggetto: “Abilitazione all’esercizio della professione di Medico-Chirurgo - art. 102 - Decreto legge 17 marzo 2020 n. 18 (convertito con modificazioni dalla L. 24 aprile 2020, n. 27), dispone l’adeguamento dell’ordinamento della classe LM/41 alle normative citate in oggetto.
Coloro i quali hanno concluso/concluderanno il tirocinio pratico-valutativo pre-lauream con giudizio di idoneità (ai sensi del DM 58/2018), conseguita la laurea, sono abilitati all’esercizio della professione di medico-chirurgo e possono procedere all’iscrizione presso l’Ordine dei Medici.
Rilascio del titolo di abilitazione
Ai fini del rilascio dell’abilitazione professionale è richiesto il pagamento delle seguenti tasse:
- tassa erariale pari a € 49,90 da versarsi prima che inizi la frequenza del tirocinio pratico valutativo
- tassa regionale di abilitazione da versarsi all’atto della consegna del titolo di abilitazione.
Studenti iscritti alla classe 46/S (Classe delle lauree specialistiche in medicina e chirurgia) e ordinamenti previgenti (attualmente fuori corso) oppure studenti iscritti alla classe LM/41 con coorti antecedenti alla coorte 2014 (attualmente fuori corso).
Il MUR, con nota prot. n. 8610 del 25/3/2020 avente oggetto: “Abilitazione all’esercizio della professione di Medico-Chirurgo - art. 102 - Decreto legge 17 marzo 2020 n. 18” dispone che, gli iscritti agli ordinamenti previgenti, con tirocinio pratico previsto post – laurea (ai sensi del DM 445/2001), ferme restando le norme sulla decadenza dagli studi, possono concludere il percorso di studio senza dovere necessariamente acquisire, ai fini dell’ammissione all’esame finale di laurea, il giudizio di idoneità del suddetto tirocinio pratico valutativo. In tal caso il diploma di laurea che rilascerà l’Ateneo avrà la sola valenza di titolo accademico. Resterà ferma, in ogni caso la possibilità per tali soggetti di conseguire eventualmente l’abilitazione all’esercizio della professione di medico-chirurgo in un momento successivo, secondo le modalità di cui al comma 2 dell’art.102, cioè conseguendo la valutazione del tirocinio prescritta dal D.M. n. 445/2001. L’Ateneo continuerà a predisporre un separato diploma di abilitazione.
Si ricorda che ai suddetti studenti è in ogni caso consentita l’opzione al nuovo ordinamento secondo i termini e le modalità previste.
Documents
Title | Info File |
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All. 1 Tabella di racc. M54 | pdf, it, 525 KB, 14/06/21 |
All. 2 Tabella di racc. MM1 | pdf, it, 419 KB, 14/06/21 |
AVVISO OPZIONE 2024-25 | pdf, it, 377 KB, 12/12/23 |
Richiesta di passaggio di ordinamento 2023-24 | pdf, it, 483 KB, 10/02/23 |
Richiesta di valutazione carriera 2023-24 | pdf, it, 481 KB, 10/02/23 |
Timetable
Documents
Title | Info File |
---|---|
Orari 1^ anno - 2^ semestre | pdf, it, 19 KB, 12/02/24 |
Orari 2^ anno - 2^ semestre | pdf, it, 18 KB, 28/02/24 |
Orari 3^ anno - 2^ semestre | pdf, it, 21 KB, 29/02/24 |
Orari 4^ anno - 2^ semestre | pdf, it, 21 KB, 27/02/24 |
Orari 5^ anno - 2^ semestre | pdf, it, 18 KB, 07/03/24 |
Orari 6^ anno - 2^ semestre | pdf, it, 12 KB, 21/02/24 |
Orari II semestre 2023-24 | pdf, it, 781 KB, 29/02/24 |
Orari I semestre 2023-24 | pdf, it, 280 KB, 29/11/23 |
Propedeuticità, blocchi, sbarramenti | pdf, it, 548 KB, 22/09/23 |
Graduation
Documents
Title | Info File |
---|---|
1^ COMMISSIONE DEF. Prof. Magnan giovedì 14 marzo 2024 | pdf, it, 353 KB, 28/02/24 |
1^ COMMISSIONE LAUREANDI giovedì 14 marzo 2024 | pdf, it, 249 KB, 22/02/24 |
2^ COMMISSIONE DEF. Prof. Polati venerdì 15 marzo 2025 | pdf, it, 354 KB, 22/02/24 |
2^ COMMISSIONE LAUREANDI venerdì 15 marzo 2024 | pdf, it, 248 KB, 22/02/24 |
3^ COMMISSIONE DEF. Prof. Gambaro mercoledì 20 marzo 2024 | pdf, it, 351 KB, 22/02/24 |
3^ COMMISSIONE LAUREANDI mercoledì 20 marzo 2024 | pdf, it, 249 KB, 22/02/24 |
Frontespizio | pdf, it, 104 KB, 25/09/23 |
Linee_guida_conseguimento_titolo | pdf, it, 838 KB, 17/03/22 |
Norme redazionali tesi | pdf, it, 826 KB, 27/10/21 |