Spectroscopic Methods
Field of study: Physics
Programme code: W4-S2FZ19.2021

Module name: | Spectroscopic Methods |
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Module code: | W4-2F-13-21 |
Programme code: | W4-S2FZ19.2021 |
Semester: | summer semester 2021/2022 |
Language of instruction: | English |
Form of verification: | exam |
ECTS credits: | 4 |
Description: | Types of spectroscopy, electronic structure of atoms and molecules, electron transitions, oscillations and rotations, selection rules, absorption spectra, UV / VIS spectrometry and spectrometers, qualitative and quantitative analysis, X-ray (XPS) or ultraviolet (UPS) photoelectron spectroscopy, secondary ion mass spectrometry (SIMS, SNMS, ToF SIMS), Auger Electron Spectroscopy (AES), application of spectrometry to study nanoparticles and thin films.
Recommended literature: 1. „Spektrometria UV/VIS w analizie chemicznej” Teresa Nowicka-Jankowska, Elżbieta Wieteska, Krystyna Gorczyńska, Anna Michalik, PWN 1988. 2. „Spektrometria masowa” Włodzimierz Żuk, PWN 1956. 3. „Spektrometria mas” Robert A. W. Johnstone, Malcolm E. Rosse, PWN SA 2001. 4. „Photoelectron Spectroscopy”, S. Huefner, Springer Verlag 2003.
Mandatory examination |
Prerequisites: | Knowledge of physics and mathematics at bachelor's degree in physics |
Key reading: | 1. „Spektrometria UV/VIS w analizie chemicznej” Teresa Nowicka-Jankowska, Elżbieta Wieteska, Krystyna Gorczyńska, Anna Michalik, PWN 1988. 2. „Spektrometria masowa” Włodzimierz Żuk, PWN 1956. 3. „Spektrometria mas” Robert A. W. Johnstone, Malcolm E. Rosse, PWN SA 2001. 4. „Photoelectron Spectroscopy”, S. Huefner, Springer Verlag 2003. |
Learning outcome of the module | Codes of the learning outcomes of the programme to which the learning outcome of the module is related [level of competence: scale 1-5] |
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has extensive knowledge of quantum mechanics and statistical physics [2F_21_1] |
KF_W03 [5/5] |
has in-depth knowledge of condensed phase physics [2F_21_2] |
KF_W04 [4/5] |
knows the structure and principle of operation of scientific equipment [2F_21_3] |
KF_W08 [4/5] |
on the basis of the acquired knowledge, he can explain the physical processes taking place in the world around him [2F_21_4] |
KF_U03 [2/5] |
on the basis of the acquired knowledge, knows how to explain the operation of research equipment [2F_21_5] |
KF_U04 [5/5] |
understands the need to systematically read scientific and popular science journals, [2F_21_6] |
KF_K04 [5/5] |
Type | Description | Codes of the learning outcomes of the module to which assessment is related |
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activity in class [2F_21_w_1] | problem solving, calculations and discussion of the results; use of computer programs, grading scale 2-5 |
2F_21_1 |
reports [2F_21_w_2] | elaboration of measurement results, discussion of errors, grading scale 2-5 |
2F_21_1 |
written exam [2F_21_w_3] | All issues discussed in lectures, grading scale 2-5 |
2F_21_1 |
Form of teaching | Student's own work | Assessment of the learning outcomes | |||
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Type | Description (including teaching methods) | Number of hours | Description | Number of hours | |
lecture [2F_21_fs_1] | Lecture with the use of audiovisual aids |
20 | Supplementary reading, work with the textbook |
15 |
activity in class [2F_21_w_1] |
laboratory classes [2F_21_fs_2] | preparation, carrying out and processing of measurement results |
10 | preparation of issues and tasks indicated by the teacher, |
30 |
reports [2F_21_w_2] |
discussion classes [2F_21_fs_3] | discussion of the issues presented in the lecture and being the subject of the experiment, discussion |
10 | preparation of issues indicated by the teacher, |
20 |
activity in class [2F_21_w_1] |
Attachments |
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Module description (PDF) |
Syllabuses (USOSweb) | ||
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Semester | Module | Language of instruction |
(no information given) |