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strong background in the physical sciences who are intensely interested in biosciences. Physicists, biophysicists, and polymer scientists, as well as physical chemists with a strong computational
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/NL. The successful candidates commit to actively participate in networking including regular research visits to the partner laboratories. Requirements: university degree in chemistry or physics and
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Areas of study Neuroscience, Physics, Applied Computer Science, Bioinformatics, Computer Science, Engineering Informatics, Medical Informatics, Chemistry, Analytical Chemistry, Inorganic Chemistry
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, dissertation) Your profile University degree (Master’s or Diploma) in Materials Science, Physics, Materials Engineering, Nuclear Engineering, or a related field Solid knowledge of materials characterization
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month Your profile Excellent master’s degree in physics, materials science, engineering or chemistry Very good English knowledge We are committed to employing more handicapped individuals and especially
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this process: How are mRNAs discriminated against all other nuclear RNAs? How does the cell ensure that only fully matured mRNAs are exported? How are faulty mRNAs and transcription byproducts targeted
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receptor-ligand expression patterns. New technological advances now allow us to study physically interacting cells to define a temporal interactome. In this PhD project, developing these tools in in vitro
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scholarship follows a three-step process: Step 1: written application to the GSPoL (in German or English) consisting of: application form [pdf-Datei] letter of motivation stating the reasons for the application
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. Enhancers, DNA elements with binding sites for transcription factors, play a key role in this process. Recently, it has become clear that enhancer activity requires the formation of sub-micrometer-sized
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damaged template are poorly understood. A multitude of factors, including the ubiquitylation of the replication factor PCNA, have been implicated in this process, but many questions remain: what determines