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Senior Researcher in Synthetic Biology and Metabolic Engineering of power-to-X utilizing Microorg...
If your goal is to lead groundbreaking research and make a real-world impact, DTU Biosustain offers the perfect launchpad. Join us and redefine what’s possible in sustainable science and innovation
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medicine residues. Currently, several substances lack regulation and drinking water safety standards, creating uncertainty about acceptable groundwater impact and safe drinking water consumption. Non-target
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Job Description Are you concerned about the environment and the impact of food production on climate change? Would you like to make an impact and contribute to the development of novel technologies
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application for our PhD Stipend. At the Faculty of Engineering and Science, Department of Chemistry and Bioscience, a Ph.D. stipend is available within the general study program. The Ph.D. stipend is open for
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- Balancing Tool Chain. The Department of Wind and Energy Systems gives high value to collaborating with external partners to strengthen the impact of our research. We are leading and contributing to many
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degrees in either the natural sciences (chemistry, physics, mathematical/computational biology) or in the formal sciences (statistics, computer science, mathematics), but must have a serious interest in
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processes, preferably HTPEM fuel cells. Proficiency in relevant computational tools, such as COMSOL Multiphysics. Familiarity with degradation mechanisms and the transient behavior of PEM fuel cell stacks is
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renewable power system dynamics. Collaborate with experts from DTU and IIT Bombay, gain hands-on experience with advanced simulation tools, and contribute to high-impact publications. Enhance your
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Job Description We are offering two fully funded PhD positions starting between Jan and Feb 2026. The project is focused on understanding what is the impact of immune checkpoint blockade (ICB
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. The aim is to predict the impact of external cyclic loads (during real-life loading scenarios under aggressive conditions) on the porosity and microstructural evolution in additively manufactured metallic