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individual to join our team as a PhD candidate in Microbial Biotechnology, with a focus on fermentation technology and metabolic engineering. To turn microbial bioprocesses into viable alternatives
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environmental effects. Therefore, there is an ever-growing need for innovative and sustainable food production technologies. Precision Fermentation is an emerging technology where animal derived products
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impacts. What will you do? This project is embedded within the HyUSE – Hydrogen technology development and assessment for accelerated use project, which includes a consortium of partners from research
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Your job Do you want to follow your passion for philosophy of (digital) technology in a PhD study in our Philosophy group? Are you an openminded thinker who likes to collaborate with other
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for you! You will be part of the BOM, Bioassays for Online Monitoring of water quality, project. This project aims to develop a new multiplex biosensor technology for the monitoring of water quality. The
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Your job Are you a biologist interested in architecture, design, and engineering? Or an engineer or designer interested in biology? Would you like to contribute to the design of sustainable
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are an ambitious scientist and driven by curiosity. Besides that, you also: have an excellent MSc record in (food) microbiology, food sciences, food technology, or biotechnology; have affinity with
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Your job Are you interested in integration of offshore energy and seafood production and potential biodiversity benefits? If yes, then we may have the perfect opportunity for you! Scientific context Increasing demand for sustainable energy production is leading to rising numbers of offshore...
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the project’s framework. You will be part of the of the Biomanufacturing and Digital Twins division led by Prof. Vitor Martins dos Santos, at the Bioprocess Engineering chair group of Wageningen University
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. We will use a bioengineering approach, applying our microfluidic and protein engineering toolbox to design scalable multi-compartmentalization capable of organizing the intracellular reaction networks