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innovative experiments. The work will include defining and optimizing in vitro models using diverse cell types and advanced platforms, as well as establishing correlations between applied mechanical stimuli
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complexes (with chirality-directed recognition) between chiral nanoparticles and proteins or protein assemblies. Within this project, the proposed post-doc research will focus on the use of millifluidic and
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complex structures with different materials. Additional Information Benefits Labour conditions: Full-time position: 40h/week. Starting date: immediate. Gross annual salary: Remuneration will depend
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familiarity with at least one of: DFT workflows, Wannier/TB model building, or quantum-transport simulations; willingness to become hands-on across the stack. Comfortable with Linux/HPC, job schedulers, and
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on the transport and secretion of large, complex cargoes (like collagens and mucins) that do not fit the conventional secretory pathway. On the other hand, they study the process whereby cytoplasmic, signal sequence
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cryopreservation and maintenance processes. (10 points) Experience in cell culture, characterization, flow cytometry, and immunostaining. (10 points) Experience with in vitro models of endothelial dysfunction
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at CRAG (from basic science to applied research using plant experimental model systems, crops and farm animals) make extensive use of genomic technologies and large sets of genetic and genomic data (https
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, Python, Stata, or others). • Development and quantification of spatial models. Category: postdoctoral researcher, level 2 Working hours: 37.5 hours per week Contract period: it is expected
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convert solar energy into a charge-separated state. This will be achieved by gradually increasing the assembly’s complexity: firstly, creating excitonically coupled dimers of chromophores; secondly
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processing methods. Highly motivated and enthusiastic researcher. Strong analytical skills and a keen interest in the interpretation of complex data. Excellent organization skills, time management and ability