Lecturer(s)
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Šenkárová Lenka, Ing. Ph.D.
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Course content
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1. Introduction to structural and surface analysis, overview and classification of methods. 2. Atomic spectroscopy - revision of AAS, AES, XRF ICP-MS, elemental surface analyzes. 3. Auger electron spectroscopy, X-ray fluorescence analysis, XRF, EDX, WDX. 4. Elemental surface analysis techniques - SIMS secondary ion mass spectrometry. 5. Techniques of surface microscopy, optical nanospectroscopy, infrared nanospectroscopy. 6. X-ray diffractometry. 7. Electron diffraction, neutron diffraction. 8. Overview of molecular analysis techniques - IR, infrared microspectroscopy. 9. Overview of molecular analysis techniques - Raman spectroscopy - normal, resonance, Raman microspectroscopy. 10. NMR. 11. Comparison of methods. 12. Combined techniques. 13. Thermal analysis. 14. Radioisotopic analysis.
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Learning activities and teaching methods
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Lecturing
- Participation in classes
- 8 hours per semester
- Home preparation for classes
- 35 hours per semester
- Preparation for course credit
- 12 hours per semester
- Preparation for examination
- 35 hours per semester
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learning outcomes |
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Knowledge |
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list and explain the principle of structural and surface analysis - Atomic spectroscopy |
list and explain the principle of structural and surface analysis - Atomic spectroscopy |
list and explain the principle of structural and surface analysis - Molecular spectroscopy |
list and explain the principle of structural and surface analysis - Molecular spectroscopy |
list and explain the principle of structural and surface analysis - Techniques of surface microscopy |
list and explain the principle of structural and surface analysis - Techniques of surface microscopy |
list and explain the principle of structural and surface analysis - Diffraction techniques |
list and explain the principle of structural and surface analysis - Diffraction techniques |
Skills |
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Interpretation of NMR spectra |
Interpretation of NMR spectra |
Interpretation of MS spectra |
Interpretation of MS spectra |
Interpretation of IR spectra |
Interpretation of IR spectra |
Interpretation of Raman spectra |
Interpretation of Raman spectra |
teaching methods |
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Knowledge |
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Lecturing |
Lecturing |
Methods for working with texts (Textbook, book) |
Methods for working with texts (Textbook, book) |
Skills |
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Dialogic (Discussion, conversation, brainstorming) |
Dialogic (Discussion, conversation, brainstorming) |
Individual work of students |
Individual work of students |
Practice exercises |
Practice exercises |
assessment methods |
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Knowledge |
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Oral examination |
Oral examination |
Grade (Using a grade system) |
Grade (Using a grade system) |
Recommended literature
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Prezentace z přednášek.
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Holzbecher, Z., Churáček, J. a kol. Analytická chemie. Praha : SNTL, 1987.
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HOUSER, J. Laboratorní cvičení ze speciálních metod instrumentální analýzy I. Interní skriptum. 1. vyd.. Zlín: FT VUT, 2000. ISBN 8021416548.
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KEITH, L.H. Environmental Sampling and Analysis. Chelsea: Lewis Publishers, 1992. ISBN 0873713818.
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MANAHAN, S.E. Fundamentals of Environmental Chemistry. Boca Raton: Lewis Publishers, 2001. ISBN 1-56670-491-X.
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Patnaik, Pradyot. Handbook of environmental analysis : chemical pollutants in air, water, soil, and solid wastes. 2nd ed. Boca Raton : CRC Press, 2010. ISBN 978-1-4200-6581-7.
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PAVIA, D.L. Introduction to Spectroscopy. 5th Ed.. Stamford: Cengage Learning, 2015. ISBN 978-1-285-46012-3.
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PETROZZI, S. Practical Instrumental Analysis: Methods, Quality Assurance and Laboratory Management. Weinheim: Wiley-VCH, 2013. ISBN 978-3-527-32951-9.
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Popl, Milan. Analytická chemie životního prostoedí. Praha : VŠCHT, 1992. ISBN 8070801654.
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RADOJEVIC, M., BASHKIN, V. Practical Environmental Analysis: Edition 2.. RCS Publishing, 2006. ISBN 978-0-85404-679-9.
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REEVE, R.N. Introduction to Environmental Analysis. Chichester: John Wiley & Sons, 2002. ISBN 471492957.
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ROBINSON, J.W. Undergraduate Instrumental Analysis. 7th Ed. Boca Raton: CRC Press, 2014. ISBN 978-1-4200-6135-2.
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ZÁRUBA, K. Analytická chemie. Díl 2.. Praha: VŠCHT, 2016. ISBN 978-80-7080-951-8.
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