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in a dry lab setting and will involve analyzing newly generated and publicly available genomic datasets. We will use both in-house and published bioinformatic tools, including phylogenetics and methods
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research on the topic outlined above is paramount Candidates are expected to be interested in working at the boundaries of several research domains PhD degree in computational biology, bioinformatics
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(electrophysiological) characterization of membrane transport proteins Proficiency in structural biology and/or bioinformatics and/or data-driven protein design Experience with basic molecular biology techniques (PCR
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potential infectivity of environmental fungal pathogens. Combining experimental approaches (e.g. environmental microcosm) with cutting edge bioinformatics, we will investigate the impact of climate change
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degree in molecular biology, cardiovascular medicine, biology or computer science Strong background in bioinformatics, mass spectrometry, epigenetic and NGS approaches preferred At least one first-author
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datasets, ideally complemented by bioinformatics approaches, are welcome. Strong interpersonal and communication skills: You bring excellent interpersonal abilities that enable effective collaboration in a
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, biomedical sciences, natural sciences, or a related field Strong background in microbiology and infection biology, including experience with BSL2 pathogens and/or phages Experience in bioinformatics is an
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corresponding scientific project management is desirable Confident in independent bioinformatic and statistical analysis of high-throughput sequencing data Experience in working with biofilms is desirable