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Lab (CSL) within in the Informatics Institute is offering a PhD position focusing on multiscale modelling of Endothelial Cell (EC) monolayers in the microvasculature, coupling molecular models
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these emissions, hence the use of batteries will play an increasing role in the energy transition needed to control unwarranted global climate change. Big open questions are, amongst others: “What is the cost
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for applications in high-energy physics. Recently, novel 2D material devices have been developed based on heterostructures of semiconducting 2D monolayers such as transition metal dicalchogenides (TMDSs). Similar
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seem particularly hard to apply (the infinite-dimensional structure in forward prices for energy markets). We expect that insights for this particular theoretical method and practical problem may also
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scientific integrity; energy and passion for quantitative methods that allow for inferences on marketing phenomena (i.e., shown by choice of thesis topic or course specialization); intellectual curiosity
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cloning, Northern/Western blot, qRT-PCR and NGS library preparation etc.; • passion to develop new NGS tools in microbes like single-cell RNA-seq; • ability or interest to perform complex
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fundamental knowledge of the interactions between plants and their pathogens, using state-of-the-art molecular methods in genetics, plant biology, genomics, cell biology, biochemistry, and microbiology
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of the Faculty of Science’s largest institutes. Its approximately 240 scientists and staff members work in 19 research groups that perform excellent research centered on four themes: Neurosciences, Cell & Systems