111 postdoctoral-soil-structure-interaction-fem-dynamics PhD positions at DAAD in Germany
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Description The Research Training Group (in German: Graduiertenkolleg, GRK) RTG2670 “Beyond Amphiphilicity: Self-Organization of Soft Matter Via Multiple Noncovalent Interactions” in the second
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) of the German Academic Exchange Service (DAAD). The structured graduate program is one of the core areas within the Munich Medical Research School (MMRS) and embedded in the Pettenkofer School of Public Health. A
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profile M.Sc. in biosciences, biotechnology, biochemistry, or biomedicine Strong molecular and cell biology background Independent, structured, goal-oriented, and highly motivated Team player with
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. Furthermore, we use the olfactory network as a model to study the dynamics of neuronal development, synaptogenesis, neuronal degeneration, and regeneration. Our research is complemented by behavioral studies
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languages (e.g., Python or R) Strong motivation and curiosity Ability to work in an interdisciplinary team Structured and independent way of working We offer: An exciting and highly topical research project
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multi-disciplinary research environment organized within a structured PhD program that enables to complete a doctoral thesis within three years. Topics: Researchers of several disciplines
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Description TUD Dresden University of Technology, as a University of Excellence, is one of the leading and most dynamic research institutions in the country. TUD has established the Collaborative
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description: Spatial interactions are key processes for the development and maintenance of multicellular systems. Disturbances in interactions lead to developmental disorders or diseases. In many cases
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the challenge of the projects. These key technologies drive forward the energy transition and structural change in the Rhineland region. Further information on our exciting projects can be found
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processes that produce energy and raw materials. The Department of Structural Materials is looking for a PhD Student (f/m/d) in Ion Irradiation and Materials Characterization of Novel Refractory High-Entropy