71 density-functional-theory-dft Postdoctoral research jobs at Technical University of Denmark in Denmark
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, here is your chance to join our work on power-to-X (PtX) and energy storage. We invite applications for two postdoc positions in the field of PtX, electrolysis, electro-thermal energy storage such as
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reaction evolution mechanisms for magnesium-based binders, leveraging state-of-the-art experimentation and numerical modelling tools. This position is part of the prestigious Villum Synergy project
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genomic data from extinct and extant species, and machine learning, you will help develop a foundational tool for predicting extinction risk and advancing the use of genomics in conservation science. Job
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researchers to join our research activities focused on SOEC cell and stack components. Electrolysis and green hydrogen play a central role in Power-to-X schemes to produce green fuels and facilitate
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our team at DTU Compute, offering a fully funded position within a dynamic and interdisciplinary research environment. The positions are part of the research project “AI-driven materials optimization
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Job Description Are you driven by the potential of AI in enzyme engineering? Do you want to design novel enzymes from scratch using cutting-edge generative models and validate their function in
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idea within the value chain of functional coatings from raw materials to end-product. Coating formulation and production principles Optimising the production line by i.e. turning towards in-line
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Postdoc in development and testing of electrodes for liquid alkaline water electrolysis - DTU Energy
, this might be a position for you. If you moreover like to work with applied research in close contact with the power-to-X industry, you have come to the right place. Responsibilities and qualifications You
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. The funding body is the Novo Nordisk Foundation. In parallel with research, you have the opportunity to take part in innovation activities with Copenhagen Microsystems , and this could be up to 20% of your time
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of single indistinguishable photons for photonic quantum information technology. Single-photon sources play an important role in photonic quantum information applications, which generally require near-unity