Found 17 relevant results in 1.79s where lecturer="Timothy J. Richmond"
Practical in Biochemistry and Molecular Biology
Biochemisches-molekularbiologisches Praktikum
Experimental methods for the purification, analysis and characterization of proteins and nucleic acids. Work on small research projects.
Experimental Biology I
Experimentelle Biologie I
Laboratory course with advanced experiments in the plant sciences, biochemistry, and structural biology.
Various methodologies, from protein expression to X-ray analysis, are applied to structural and biophysical studies of chromatin.
Fundamentals of Biology I
Grundlagen der Biologie I
This 1st year Laboratory course introduces the student to the entire range of classical and modern molecular biosciences. During this course (Praktikum GL BioI) the students will do three praktikum days in:- Biochemistry- Cell Biology I- Microbiology- Plant Anantomy & Ecology(total of 12 experiments)Each experiment takes one full day.
This Concept Course explores the molecular and structural mechanisms underlying key processes in gene expression and protein biogenesis. The course will present advanced mechanistic aspects of the organization and regulation of chromatin, transcription, RNA maturation, translation, and the pathways of protein folding, modification, trageting to membranes, and quality control.
X-ray Cristallography of Macromolecules
X-ray Kristallographie der Makromoleküle
Inquire with Prof. Richmond before registering.
Molecular Biology and Biophysics I: Mechanisms of Biomacromolecular Recognition
Molek'biol. u. Biophysik I: Biomakromol. Erkennungsmechanismen
Mechanisms of biomacromolecular recognition. The basics of protein, DNA and RNA structures and their complexes are described, with special emphasis on functionality and energetic aspects.
Molecular Biology and Biophysics II: Structure Determination of Biological Macromolecules
Molekularbio. u. Biophysik II: Strukturermittlung von biologischen Makromolekülen
The course gives insight into the methodology, areas of application and limitations of the two principal methods for the structure determination of biological macromolecules.
Molecular Biology and Biophysics II:Structure Determination of Biological Macromolecules (exercises)
Molekularbio. u. Biophysik II: Ergänzung für Richtung Biologie + Studierende D-PHYS
Insight into the methodology, areas of application and limitations of the two principal methods for the structure determination of biological macromolecules.
Molecular Biology and Biophysics III: Proteins: Structure, Function and Engineering
Molekularbiologie und Biophysik I und III
Part 1: The lecture covers: Biophysics of protein folding, mmbrane proteins and biophysics of membranes, enzymatic catalysis, catalytic RNA and RNAi, current topics in protein biophysics and structural biologyPart 2: The lecture covers: DNA and RNA structures; Protein/DNA and protein/RNA complexes and thermodynamic and kinetic aspects of their interactions.
The course consists of a series of research seminars on Structural Biology and Biophysics, given by both scientists of the National Center of Competence in Research (NCCR) in Structural Biology and external speakers.
No description available.
No description available.
Structural Biology
Strukturbiologie
The course consists of a series of research seminars on Structural Biology, Biochemistry and Biophysics, given by both scientists of the National Center of Competence in Research (NCCR) in Structural Biology and external speakers. Information on the individual seminars is provided on the following websites:http://www.structuralbiology.uzh.ch/educ002.asphttp://www.biol.ethz.ch/dbiol-cal/index
The course provides an overview of experimental methods for the determination of high-resolution structures of macromolecules.