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Job Description A 20-month postdoc research position is available in the Software Engineering section at the Maersk Mc-Kinney Moller Institute, University of Southern Denmark. The successful
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considered. All interested candidates irrespective of age, gender, disability, race, religion or ethnic background are encouraged to apply. As DTU works with research in critical technology, which is subject
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communication skills in English, both written and spoken. As a formal qualification, you must hold a PhD degree in physics, chemistry, materials science, nanoscience or equivalent. We offer DTU is a leading
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characterize new thin-film materials identified by AI and by physics-based first-principles calculations, with the goal of finding suitable properties for light trapping, i.e., a combination of high refractive
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this process. As a key member of the project, the successful candidate will design, execute, and analyse experiments to generate genetic and molecular insights into symbiotic interactions; communicate results
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spatially explicit process-based ecological model (DEB-IBM) for muskoxen in the high-Arctic through the analyses of long-term GPS and acceleration data. using the model to estimate the (cumulative) impacts
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on the part of the assessment that concerns him/her self. Once the recruitment process is completed a final letter of rejection is sent to the deselected applicants. Letter of reference If you want a referee to
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application to our position as Postdoc. At the Faculty of Engineering and Science, Department of Chemistry and Bioscience, a two-year position as Postdoc in metal-organic framework (MOF) glasses is open for
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professionalism, equality and a healthy work-life balance. Place of work and area of employment Depending on the candidate, the physical work place can be located either on the main campus of Aarhus University
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for light trapping in thin-film solar cells .” You will become part of an enthusiastic team working closely with collaborators at DTU Physics and DTU Nanolab to advance neural network-based methods