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glycan arrays, engineered glycans, influenza binding assays, and—depending on expertise—molecular biology, enzymology, biochemical assays. Collaborative environment: you will join a multidisciplinary team
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commitment to diversity and inclusion. external link If you have any questions about accessibility, for example regarding your workplace Drift 6 external link , the application process or your work, please
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research. To encourage this, every employee is given the time and facilities – for example in the form of training – at some point in their career to participate in projects or work in other departments
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assays, such as microelectrode array recordings and (cellular) imaging. In addition, you will investigate if herbal extracts can affect the function and integrity of the protective blood-brain-barrier
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reflecting airway tissues. Your tools: Interdisciplinary receptor analysis: you will work with glycan arrays, engineered glycans, influenza binding assays, and—depending on expertise—molecular biology
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as authoritative and common-sense. This PhD project interrogates their operation: how do these techniques and infrastructures preconfigure what can be imagined and negotiated in spatial planning
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' button. your curriculum vitae a research proposal of max. two pages that serves as starting point for the interview in which you indicate relevant potential questions, case studies and source material
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. While this general knowledge is now firmly established, the processes of transport and burial during turbidity current events remain poorly understood. The DEEP-FLUX project aims to establish a new
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and professional development. For more information, please visit Working at Utrecht University . Selection process At Utrecht University, we strive to be a place where everyone feels at home. We value
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firmly established, the processes of transport and burial during turbidity current events remain poorly understood. The DEEP-FLUX project aims to establish a new physical framework for quantifying fluxes