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301853 UE Practical Course in Structural Biology A (2020S)
Basics
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 Th 06.02.2020 08:00 to Th 20.02.2020 18:00
- Deregistration possible until Th 20.02.2020 18:00
Details
max. 16 participants
Language: German, English
Lecturers
Classes
Place: Department of Structural and Computational Biology, Campus-Vienna-Biocenter 5, 1030 Vienna, room 1113
Time: 16- 30 March 2020, all day longStart: 16 March 2020, 9:00 amNo pre-meeting: interested students come directly to the beginning of the practicalRequirements:Knowledge in structural biology, NMR spectroscopy, X-ray crystallography. Previous attendance at the course Macromolecular Crystallography (301450 VO) is strongly recommended.For external students: Admission requirements for these exercises are courses with continuous assessment (UE) that are required for admission to the study.
Information
Aims, contents and method of the course
Assessment and permitted materials
The evaluation consists of different performances: active participation and results obtained, written report, theoretical knowledge including final exam.
Minimum requirements and assessment criteria
Compulsory attendance.
Theoretical knowledge in basics of structural biology, spectroscopy, and diffraction theory, as well as active participation in conducting experiments and their careful evaluation.
Each of the subgrades must have a positive evaluation.
Theoretical knowledge in basics of structural biology, spectroscopy, and diffraction theory, as well as active participation in conducting experiments and their careful evaluation.
Each of the subgrades must have a positive evaluation.
Examination topics
Content of the course units
Reading list
Association in the course directory
MMB II-3, MMB II-4, MMB W-2, MMB W-3, MMEI III, CHE II-6
Last modified: We 04.03.2020 17:09
1. Application of optical methods to protein stability (chemical and thermal denaturation followed by absorption, fluoresence, circular dichroism and calorimetry).
2. Applications of NMR spectroscopy to relevant problems of molecular biology. The basic principles of the methodology are explained and demonstrated with practical applications to structural biology.
3. Macromolecular Crystallography. Basic principles of crystallisation and structure solution.