35 parallel-programming-"DIFFER"-"Mohammed-VI-Polytechnic-University" Postdoctoral positions at Technical University of Denmark
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complex droplet flow patterns and the relations with the chemistry. One successful theory for optimization of surfactant impact and blends is the hydrophilic-lipophilic deviation balance. This enables us to
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collaborate with members of different research groups within DTU BRIGHT or beyond and teach and supervise BSc and MSc students. Key selection criteria: Experience in microbiology, metabolomics, systems biology
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for academic as well as industrial knowledge within this field and competencies across multiple engineering programs. To do so, you will: Develop the research field by identifying knowledge gaps of scientific
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on exploring the evolution of magnesium-based binders in different environments, with particular interest in carbonation mechanisms. You will gain hands-on experience with advanced equipment and computational
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. We are looking for a team player with the motivation and drive needed for making a difference that matters. As you will join an international team good command of written and spoken English is
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. The open positions are attached to three different collaborative projects with related but distinct goals, all making use of our expertise in squeezing-based entangled states of light: ClusterQ (ERC): A
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properties, laboratory experiments, thermodynamic modelling of electrolytes and pilot plant operation. Responsibilities and qualifications As postdoc, you will support tasks in several different projects. You
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between the different PEM stack layers. This approach will allow us to explore architectures that are not achievable with conventional fabrication routes. Your role as a postdoctoral researcher will be
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equivalent). Other qualifications and competences include: Experience with bioinformatics Experience with mathematical modelling and programming, including source attribution modelling of foodborne pathogens
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. The project This project explores converting temperature differences in buildings into electricity using flexible TEG generators, potentially generating 10-20 W per square meter. Our project addresses