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immobilization and characterization thereof Experience in the application of enzymes in bioremediation and/or in biocatalysis Expertise in chemical analysis using techniques including GC-MS and LC-MS Self
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validation in rodent migraine models Close collaboration with computational protein engineers and clinical researchers Data analysis, manuscript preparation, and supervision of students where relevant
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: Required qualifications: Applicants must hold a PhD in Molecular Biology or similar. Experience with cloning techniques and gene expression and analysis in bacteria and/or yeast. Have strong cooperation and
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: Required qualifications: Applicants must hold a PhD in Molecular Biology or similar. Experience with cloning techniques and gene expression and analysis in bacteria and/or yeast. Have strong cooperation and
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: Required qualifications: Applicants must hold a PhD in Molecular Biology or similar. Experience with cloning techniques and gene expression and analysis in bacteria and/or yeast. Have strong cooperation and
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societal implications of emerging technologies. The research environment combines empirical studies of technologies in practice with conceptual and critical perspectives and works closely with healthcare
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disease and dietary interventions is required, while experience with sequence-based analysis of bacterial communities and chemical characterization of microbial metabolites (e.g. LC-MS/MS) is considered a
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ethnic background are encouraged to apply. As DTU works with research in critical technology, which is subject to special rules for security and export control, open-source background checks may be
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within a collaborative research environment. Professionally, we expect experience in most of the following areas: Modelling and analysis of integrated energy systems (e.g., electricity and heating/cooling
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key genetic factors for thermotolerance and alternative carbon utilization, including literature analysis, genetic crosses, and mutant library screening. Apply findings to engineer yeast strains with