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Computational Methods for Molecular Evolution – Übersicht

  • Übersicht

Computational methods to analyze the first steps of Life in sequence space.

Informationen zur Vorlesung

Zeit und Ort

Thursday 14.15-15.45

This course aims to learn methods and coding to approach the analysis of molecular evolution. The course will be held over Zoom. The includes:

- 2 Lectures: Finite element methods for multiphysics simulation of molecular systems (Dieter Braun)
- 3 Lectures: Introducing LabView as platform for Sequence Analysis and Mass spectrometry of Oligonucleotides (Dieter Braun)
- 2 Lectures: Simulating the microscopic assembly of RNA (Ulrich Gerland)
- 4 Lectures: Probing the Assembly of Molecular Systems (Erwin Frey)

----- Link to the LMU Cast for lectures recorded ---------

Times:
15.4. Introduction to the Course. Intro to Virtualboxes (Movie on installing VirtualBox)
22.4. Finite element methods: Wing inside windtunnel and Notes (Dieter Braun)
29.4. Finite element methods II: Questions to solve and Some examples and the microfluidic reaction mixer (Dieter Braun)
6.5. LabView for Sequence Analysis and Mass spectrometry of Oligonucleotides I (Dieter Braun)
13.5. LabView for Sequence Analysis and Mass spectrometry of Oligonucleotides II (Dieter Braun)
20.5. LabView for Sequence Analysis and Mass spectrometry of Oligonucleotides III (Dieter Braun)
27.5. Simulating the microscopic assembly of RNA I (Ulrich Gerland)
3.6. Fronleichnam
10.6. Simulating the microscopic assembly of RNA II (Ulrich Gerland)
17.6. Probing the Assembly of Molecular Systems I (Erwin Frey)
24.6. Probing the Assembly of Molecular Systems II (Erwin Frey)
1.7. Probing the Assembly of Molecular Systems III (Erwin Frey)
8.7. Probing the Assembly of Molecular Systems IV (Erwin Frey)
15.7. Exam Slot (oral exam over Zoom)

Verantwortlich für den Inhalt: Dieter Braun