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degree in engineering, mathematics, or a related field, with a strong background in prognostics and health management (PHM) for engineering systems and structures, as well as expertise in machine learning
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. Your work may involve formulating new models, analysing structural properties, and developing innovative algorithms with both theoretical rigor and practical relevance.
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the natural product structural classes have not yet been fully characterized. Similarly, most metabolites observed in mass-spectrometric data cannot be fully dereplicated. The key question we seek to answer in
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communicate clearly, both orally and in writing, in both Dutch and English. You show initiative, keep an overview, and possess sharp analytical skills. Your enthusiasm and structured approach make you a
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. Knowledge and experience of physical testing would be an advantage. The sucessful candidate is resposnible to provide insights into this complex soil-structure interaction problem through numerical modelling
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at the UT in Enschede, and you will need to live, or to move, to the Twente region or within a short commute. Within the UT structure, your supervisor will be Prof.dr. M. Boon and co-supervisor Dr. Miles
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+ PhD). Proven experience in material design, fabrication, and 3D printed structures (e.g. metamaterials). Enthusiasm for technology development in one or more of our research areas: Additive
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design WP2: to locate remnants of Palaeolithic shelters and their associated furniture through a systematic open-air geomagnetic survey WP3: to ascertain if and how one of the mammoth bone structures
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solution(s) (hardware + software) could address such limitations? Please structure your research proposal highlighting how you plan to capitalise on your previous work and experience. . In particular, you
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their associated furniture through a systematic open-air geomagnetic survey WP3: to ascertain if and how one of the mammoth bone structures at the site was used as a shelter in the Late Pleistocene WP4