PHYSICAL CHEMISTRY II
- Academic year
- 2020/2021 Syllabus of previous years
- Official course title
- CHIMICA FISICA 2
- Course code
- CT0417 (AF:283580 AR:169461)
- Modality
- On campus classes
- ECTS credits
- 6
- Degree level
- Bachelor's Degree Programme
- Educational sector code
- CHIM/02
- Period
- 1st Semester
- Course year
- 3
- Where
- VENEZIA
- Moodle
- Go to Moodle page
Contribution of the course to the overall degree programme goals
Expected learning outcomes
Pre-requirements
Contents
- FIRST PART: CHEMICAL KINETICS
Rate of reaction. Rate laws and order of reaction. The main experimental techniques to monitor the progress of a chemical reaction. The isolation method. Method of initial rates. Integrated rate laws and integration method. Half-live of a reactant. The dependence of rate of reaction on temperature. Reaction mechanisms. Elementary reactions and molecularity. Consecutive, concurrent and parallel elementary reactions. Pre-equilibrium. Determination of rate laws by the relaxation methods. Gas-phase unimolecular reactions. Chain reactions. Explosions. Photochemical reactions. Catalysis. Homogeneous catalysis. Enzymatic catalysis: the Michaelis-Menten law. Heterogeneous catalysis. Physisorption and chemisorption. Adsorption isotherms. Mechanisms of surface-catalysed reactions. Activated complex theory of reaction rates.
- SECOND PART: QUANTUM MECHANICS
The origins of quantum mechanics: the black-body radiation. Wave-particle duality: the photoelectric effect, the de Broglie relation, the diffraction of electrons. The Schrödinger equation. Interpretation of the wavefunction. Postulates of the quantum mechanics. Heisenberg's uncertainty principle. Translation motion of a free particle and a particle in a box. The tunneling effect. The harmonic oscillator. Two- and three-dimensional rotational motion. Space quantization and the vector model of angular momentum. The spin angular momentum. Applications of group theory in quantum mechanics: atomic orbitals symmetry, hybrid orbitals, projection operators, symmetry-adapted linear combinations (SALC), molecular orbitals.
Referral texts
• A. Gambi. Esercizi di Chimica Fisica, Zanichelli, Bologna, 2013.
• F. A. Cotton, Chemical Applications of Group Theory, 3rd edition, New York, John Wiley & Sons, 1990.
Assessment methods
The written test of chemical kinetics consists of a series of exercises and / or problems to be solved. This test aims to verify the acquisition of the concepts presented during the lessons and their application. The duration of the written examination is one hour and only the use of a scientific calculator and the consultation of a form provided by the teacher is allowed.
The oral test of both chemical kinetics and quantum mechanics consists of a series of questions concerning the contents of the course. Students must demonstrate the learning of the topics covered during the lessons and the ability to expose them in a formal manner. The oral examination for each of the two parts lasts about 30 minutes.
The final grade will consider the results obtained from the written test of chemical kinetics, and the oral ones of chemical kinetics and quantum mechanics.
Teaching methods
In the "Moodle" platform of the University there are all the slides projected during the lessons.
Teaching language
Further information
Accessibility, Disability and Inclusion
Accommodation and support services for students with disabilities and students with specific learning impairments:
Ca’ Foscari abides by Italian Law (Law 17/1999; Law 170/2010) regarding supportservices and accommodation available to students with disabilities. This includes students with mobility, visual, hearing and other disabilities (Law 17/1999), and specific learning impairments (Law 170/2010). In the case of disability or impairment that requires accommodations (i.e., alternate testing, readers, note takers or interpreters) please contact the Disability and Accessibility Offices in Student Services: disabilita@unive.it.