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project focuses on developing ultra-reliable spatiotemporal (4D) predictions using trustworthy, distributed AI-driven intelligence deployed across heterogeneous aerial nodes. To achieve this, an aerial
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, immunodiagnostics and vaccine development. The large market demand pushes significant increase in upstream production, shifting the manufacturing bottleneck to downstream processing. As the main stream purification
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of defects: they occur rarely, are often subtle, the underlying product may vary, and there is a wide diversity of possible defect types. Developing such a defect detection system today requires lots of manual
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to develop an entirely new explanatory framework for future research. In addition, it generates new knowledge urgently needed to preserve heritage threatened by climate change. Within the project, we
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development activities. You will be based in Leuven (KU Leuven) and in Merelbeke-Melle (ILVO). Flexibility is thus highly important in being present in the location where needed for the research. For more
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of the FWO-funded project ECOSPHERE, which aims to develop a new class of sustainable building materials by directly converting CO2 into functional carbonates that function as carbon negative, high
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related to staff position within a Research Infrastructure? No Offer Description This PhD position is part of the FWO-funded project ECOSPHERE, which aims to develop novel sustainable building materials by
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additional biomarker candidates•Contribute to the development of biomarker panels with diagnostic and/or prognostic potential The ideal candidate will have:•A Master’s degree in biomedical sciences
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or damage. Along these lines, this project develops SHM methods for deep tunnels, with the HADES Underground Research Laboratory (URL) serving as the primary case study. The monitoring strategy combines in
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) fuel materials which are required for LFR-SMRs present fabrication challenges. Conventional sintering methods, developed for light-water reactor MOX, are inadequate due to altered thermodynamic behavior