330048 VO Organic chemistry (2019S)
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).
Details
Language: German
Examination dates
-
Friday
12.04.2019
16:45 - 18:15
UZA2 Hörsaal 5 (Raum 2Z202) 2.OG
UZA2 Hörsaal 7 (Raum 2Z210) 2.OG
UZA2 Hörsaal 8 (Raum 2Z206) 2.OG - Friday 21.06.2019 16:45 - 18:15 UZA2 Hörsaal 7 (Raum 2Z210) 2.OG
- Thursday 03.10.2019 15:00 - 16:30 UZA2 Hörsaal 7 (Raum 2Z210) 2.OG
-
Thursday
05.12.2019
15:00 - 16:30
UZA2 Hörsaal 7 (Raum 2Z210) 2.OG
UZA2 Hörsaal 8 (Raum 2Z206) 2.OG -
Monday
03.02.2020
09:45 - 11:15
UZA2 Hörsaal 7 (Raum 2Z210) 2.OG
UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
Lecturers
Classes (iCal) - next class is marked with N
- Monday 04.03. 08:00 - 09:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Tuesday 05.03. 08:00 - 09:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Tuesday 05.03. 11:30 - 13:00 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Wednesday 06.03. 08:00 - 09:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Thursday 07.03. 11:30 - 13:00 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Friday 08.03. 11:30 - 13:00 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Monday 11.03. 11:30 - 13:00 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Wednesday 13.03. 08:00 - 09:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Thursday 14.03. 08:00 - 09:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Friday 15.03. 08:00 - 09:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Monday 18.03. 08:00 - 09:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Tuesday 19.03. 08:00 - 09:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Tuesday 19.03. 11:30 - 13:00 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Wednesday 20.03. 08:00 - 09:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Thursday 21.03. 11:30 - 13:00 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Friday 22.03. 08:00 - 09:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Monday 25.03. 11:30 - 14:45 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Wednesday 27.03. 13:15 - 16:30 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Friday 29.03. 15:00 - 18:15 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
- Monday 01.04. 15:00 - 18:15 UZA2 Hörsaal 8 (Raum 2Z206) 2.OG
Information
Aims, contents and method of the course
Assessment and permitted materials
Final written exam in German language, 90 min (multiple choice);
no supporting resources allowed / necessary
no supporting resources allowed / necessary
Minimum requirements and assessment criteria
at least 60% of maximum points to pass the exam
Valuation key:
1–very good (100,00-88,00%)
2–good (87,99-77,00%)
3–satisfactory (76,99-66,00%)
4–adequate (65,99-60,00%)
5–insufficient (59,99-0,00%)
Valuation key:
1–very good (100,00-88,00%)
2–good (87,99-77,00%)
3–satisfactory (76,99-66,00%)
4–adequate (65,99-60,00%)
5–insufficient (59,99-0,00%)
Examination topics
lecture, power-point presentations, supporting materials and exercises available via Moodle
Reading list
Lehrbücher
Teil I:
- K. P. C. Vollhardt, N. E. Schore, Organische Chemie, 5. Auflage, Wiley-VCH, 2011
(oder ältere Auflagen).
- P. Y. Bruice, Organische Chemie: Studieren kompakt, 5. Auflage, Pearson Studium
Chemie, 2011 (oder ältere Auflagen);
- J. Clayden, N. Greeves, S. Warren, Organische Chemie, 2. Auflage, Springer Spektrum, 2013
- B. K. Keppler, A. Ding, Chemie für Biologen, Spektrum Akademischer Verlag, 1997;
- H. P. Latscha, U. Kazmaier, Chemie für Biologen, 4. Auflage, Springer Verlag, 2016
(oder ältere Auflagen);
- R. Ebermann, I. Elmadfa, Lehrbuch Lebensmittelchemie und Ernährung, 2. Auflage,
Springer-Verlag, 2011 (oder ältere Auflage)Teil II:
Peter Nuhn, Naturstoffchemie, S. Hirzel Verlag Stuttgart; 4. Auflage 2006, ISBN: 978-3777613635
Gerhard Habermehl, Peter Hammann, Hans Christoph Krebs, Waldemar Ternes, Naturstoffchemie, Springer Verlag Berlin Heidelberg; 3. Auflage 2008, ISBN: 978-3540737322
Teil I:
- K. P. C. Vollhardt, N. E. Schore, Organische Chemie, 5. Auflage, Wiley-VCH, 2011
(oder ältere Auflagen).
- P. Y. Bruice, Organische Chemie: Studieren kompakt, 5. Auflage, Pearson Studium
Chemie, 2011 (oder ältere Auflagen);
- J. Clayden, N. Greeves, S. Warren, Organische Chemie, 2. Auflage, Springer Spektrum, 2013
- B. K. Keppler, A. Ding, Chemie für Biologen, Spektrum Akademischer Verlag, 1997;
- H. P. Latscha, U. Kazmaier, Chemie für Biologen, 4. Auflage, Springer Verlag, 2016
(oder ältere Auflagen);
- R. Ebermann, I. Elmadfa, Lehrbuch Lebensmittelchemie und Ernährung, 2. Auflage,
Springer-Verlag, 2011 (oder ältere Auflage)Teil II:
Peter Nuhn, Naturstoffchemie, S. Hirzel Verlag Stuttgart; 4. Auflage 2006, ISBN: 978-3777613635
Gerhard Habermehl, Peter Hammann, Hans Christoph Krebs, Waldemar Ternes, Naturstoffchemie, Springer Verlag Berlin Heidelberg; 3. Auflage 2008, ISBN: 978-3540737322
Association in the course directory
Last modified: Sa 02.04.2022 00:27
Part I:
Based on their knowledge already acquired in General and Inorganic Chemistry, the students will recognize the field of Organic Chemistry as area of carbon compounds. They will understand the correlation of functional groups and properties of substances, know about different forms of isomerism, be able to draw molecules using different forms of projection, get acquainted with important reactions in Organic Chemistry and be proficient in the most important reaction mechanisms.Part II:
The students will be able to
classify natural product that are important for human nutrition and to discuss their mechanisms of action
understand actual as well as optional future values of natural products from a nutritional science perspective.Contents
Part I:
- Basics of Organic Chemistry (chemistry of carbon, binding models, hybridisation);
- Acyclic und cyclic hydrocarbons, alkanes, alkenes, alkynes;
- Different ways of drawing chemical structures (Newman projection, Fischer projection);
- Basics of systematic nomenclature;
- Functional groups and properties of the corresponding chemical compounds
- Stereochemistry, isomerism, optical activity;
- Aromatic and heteroaromatic systems, heterocycles;
- Selected reactions in Organic Chemistry, introduction into the most important reaction mechanisms;
- Important basic building blocks in natural product chemistry: amino acids, sugars, isoprenoids, fatty acids, lipidsPart II:
Definition of natural products chemistry
Distribution and structural variety of natural products
Basics of natural product synthesis
Possible uses and option values of natural products
Classification of natural products
Natural products with a carbon skeleton
Glykosides and glucosinolates
Isoprenoids: Terpenopids and steroids
Shikimi acid derivatives
Polyketides
Natural products with a nitrogen skeleton
Peptide toxins
Purine nucleotides
AlkaloidsMethods
Part I
Lectures on the topics listed above using overhead projection and - when indicated - blackboard, examples
Part II:
Lectures on the topics listed above
Power point presentations