54 high-performance-computing-postdoc PhD positions at University of Groningen in Netherlands
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research of high societal relevance with our new research programme TRACE (Transformations, Communities, Environments). The Faculty consists of four departments: Cultural Geography, Demography, Economic
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: They should verify the candidate's educational qualifications and academic performance. 5. Official proof of English proficiency: See full description of the conditions and exemptions on the programme page 6
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journalism’s recent past. Methodologically, the project employs a digital humanities approach, combining computational analyses of metajournalistic discourses with qualitative analyses of debates at critical
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more effectively. One PhD position is centred around High Speed-Atomic Force Microscopy (HS-AFM) which will be used to visualise viral self-assembly at the single protein level and to scrutinize
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. Perform protein interaction studies to unravel mechanisms by which viruses induce morphological changes in host cells. Use sequence specific fluorescent labeling to follow virus infection in a time resolved
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university offering high-quality teaching and research. Its 34,000 students are encouraged to develop their own individual talents through challenging study- and career paths. The University of Groningen is an
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characterization and physical chemistry are sought. We are looking for enthusiastic and talented PhD candidates with Essential qualifications A high honours M.Sc. degree in Chemistry, Biology, Biomedical Sciences
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. The successful candidate will prepare, characterize and evaluate heterogenous catalysts for CO2 conversion to sustainable synthetic fuels. Structure-performance relationships will be investigated, focusing
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working memory contents held within. Second, we will use computational spiking-neuron models to explain the results of the experiments and implement the neural mechanisms responsible. These models will also
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dissecting RNA structure ensembles in living cells. Particularly, you will: Develop novel methods (both wet and computational) for the accurate interrogation of RNA 2D and 3D structures in living cells. Apply