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270066 VU Molecular Spectroscopy (2025S)
Continuous assessment of course work
Labels
Registration/Deregistration
Note: The time of your registration within the registration period has no effect on the allocation of places (no first come, first served).
- Registration is open from Tu 04.02.2025 08:00 to Mo 24.02.2025 23:59
- Deregistration possible until Mo 24.02.2025 23:59
Details
max. 20 participants
Language: German
Lecturers
Classes
Currently no class schedule is known.
Information
Aims, contents and method of the course
Assessment and permitted materials
Several multiple choice tests, one written exam, and weekly open book homeworks.All kinds of external material and plagiarism are prohibited.
Minimum requirements and assessment criteria
Mathematics
Physical chemistry (PC I)
Theoretical chemistryThe evaluation is based on the ratio of scores in the exam, the multiple choice tests, and the open book homework tasks.
1 > 90 %
2 > 80 %
3 > 65 %
4 >= 50 %
5 < 50 %Compulsory attendance in the lecture (70%) and in the practice.
Physical chemistry (PC I)
Theoretical chemistryThe evaluation is based on the ratio of scores in the exam, the multiple choice tests, and the open book homework tasks.
1 > 90 %
2 > 80 %
3 > 65 %
4 >= 50 %
5 < 50 %Compulsory attendance in the lecture (70%) and in the practice.
Examination topics
* Symmetry
* electromagnetic spectrum
* NMR
* rotational and vibrational spectroscopy
* electron spectroscopy
* laser
* electromagnetic spectrum
* NMR
* rotational and vibrational spectroscopy
* electron spectroscopy
* laser
Reading list
* Atkins, de Paula, "Physikalische Chemie", VCH Verlagsges.
* Hesse, Meier, Zeeeh "Spektroskopische Methoden in der organischen Chemie", Thieme
* Hollas, "Modern Spectroscopy", Wiley
* Hesse, Meier, Zeeeh "Spektroskopische Methoden in der organischen Chemie", Thieme
* Hollas, "Modern Spectroscopy", Wiley
Association in the course directory
BA CH 18b, BC-CHE I-2
Last modified: Th 30.01.2025 14:26
Evaluation and interpretation of
* NMR
* dielectric
* IR
* UV/Vis
* X-Ray
spectraOne lecture (90 minutes) and one practice (45 minutes) per week.