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Ultrafast time resolved spectroscopy in studies of the inter- and intra-molecular dynamics

General data

Course ID: 1200-2SPEC342M
Erasmus code / ISCED: 13.3 Kod klasyfikacyjny przedmiotu składa się z trzech do pięciu cyfr, przy czym trzy pierwsze oznaczają klasyfikację dziedziny wg. Listy kodów dziedzin obowiązującej w programie Socrates/Erasmus, czwarta (dotąd na ogół 0) – ewentualne uszczegółowienie informacji o dyscyplinie, piąta – stopień zaawansowania przedmiotu ustalony na podstawie roku studiów, dla którego przedmiot jest przeznaczony. / (0531) Chemistry The ISCED (International Standard Classification of Education) code has been designed by UNESCO.
Course title: Ultrafast time resolved spectroscopy in studies of the inter- and intra-molecular dynamics
Name in Polish: Ultraszybka spektroskopia czasowo-rozdzielcza w badaniach wewnętrznej i zewnętrznej dynamiki cząsteczek
Organizational unit: Faculty of Chemistry
Course groups: (in Polish) Przedmioty do wyboru w semestrze 3M (S2-PRK-CHM)
(in Polish) Wykłady specjalizacyjne w semestrze 2M
ECTS credit allocation (and other scores): 3.00 Basic information on ECTS credits allocation principles:
  • the annual hourly workload of the student’s work required to achieve the expected learning outcomes for a given stage is 1500-1800h, corresponding to 60 ECTS;
  • the student’s weekly hourly workload is 45 h;
  • 1 ECTS point corresponds to 25-30 hours of student work needed to achieve the assumed learning outcomes;
  • weekly student workload necessary to achieve the assumed learning outcomes allows to obtain 1.5 ECTS;
  • work required to pass the course, which has been assigned 3 ECTS, constitutes 10% of the semester student load.
Language: Polish
Type of course:

obligatory courses

Prerequisites (description):

A student should have finished the courses of: Physics, Physical Chemistry, Quantum Chemistry and Spectroscopy

Mode:

Classroom

Short description:

The aim of the lecture is to present the modern methods of the time resolved spectroscopy in the study of the coherent dynamics of electronic, vibrational and rotational excitations in molecules in liquids, gases and solids.

Full description:

Interaction of electromagnetic wave with matter, linear and nonlinear optical phenomena, physical fundamentals and methods of coherent laser spectroscopy "pump-probe": transient absorption, femtosecond optical Kerr effect, femtosecond stimulated Raman scattering, transient transmission and reflectionin, photon echo. Application of the time-resolved methods in chemistry; studies of coherent dynamics and structures of molecular systems and the dynamics of chemical reactions.

Bibliography:

1. J. Manz, L. Woste, "Femtosecond Chemistry", VCH, 1995

2. W. Demtroeder, Laser Spectroscopy", Willey, 1993

Learning outcomes:

1. Student will be able to understand the dynamics of ultrashort processes occuring in molecular systems and to describe them in the language of mathematics

2. Student will know the experimental methods, which can be used to observe the discussed processes

Assessment methods and assessment criteria:

Final written exam with open questions

Practical placement:

does not concern

Classes in period "Summer semester 2023/24" (in progress)

Time span: 2024-02-19 - 2024-06-16
Selected timetable range:
Navigate to timetable
Type of class:
Specialised lecture, 30 hours, 30 places more information
Coordinators: Bożena Gadomska, Wojciech Gadomski
Group instructors: Bożena Gadomska, Wojciech Gadomski
Students list: (inaccessible to you)
Examination: Examination
Course descriptions are protected by copyright.
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