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topological phases and hysteresis-driven memory mechanisms. You will work closely with experimental and theoretical physicists and material scientists at DTU Physics, DTU Energy as well as our collaborators
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microscopy, optical interferometry, vacuum technology, finite element method simulations will be involved. Applicants should hold a PhD in Physics, Nano-science, Engineering or similar, experience with optics
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with colleagues responsible for downstream AI-based optimization. The ideal candidate has a strong background in computational electromagnetics and photonics, ideally with experience in topology
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close collaboration with colleagues responsible for downstream AI-based optimization. The ideal candidate has a strong background in computational electromagnetics and photonics, ideally with experience
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area, and have good written and oral English skills. The assessment of your qualifications will also be made based on previous scientific publications (if any) and relevant work experience. Knowledge
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analyses on harvested tissues and biofluids. The postdoc will be responsible for planning the experiments, data acquisition, preparation, analysis, manuscript writing, and other activities for disseminating
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processes. Ability to troubleshoot problems and optimize experimental setups under real-world conditions. Experience working in interdisciplinary teams with both R&D and engineering tasks. Documented ability
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You have academic qualifications at PhD level, for example within the areas of bioinformatics, machine learning or forensic odontology. We favour experience in computational data analysis, and the
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available here: https://api.paca.sdu.dk/ . The next phase will require the postdoc to draw from research on climate fiction and related concepts to design living labs experimenting with impactful
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and Nickel doing surface science experiment for the ammonia synthesis. We are currently further pursuing these systems continuing these fundamental surface science experiments (Science 383 (2024) 1357