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(s):•Iscte: Prof. L. Cancela M13-15 (3 months duration) “Development of models for the evaluation of MCF specific transmission effects”•IT: Dr. R. Nogueira M20-21 (2 months duration) “Training
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assessment and certification framework, leveraging multiple data sources and probabilistic reliability analysis to predict both current and future safety levels. This project contributes to designing future
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“Comprehensive assessment of the biology and public health importance of Anopheles stephensi in Africa (AnoSTEP Africa)” working with Prof Heather Ferguson and Prof Fredros Okumu at the University of Glasgow, and
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sources and probabilistic reliability analysis to predict both current and future safety levels. This project contributes to designing future standards and safer vertical transport. Information
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for the BWRX-300 units will be used to generate realistic waste-stream inventories to ground the comparative LCA. An objective of this research is to identify and quantify sustainability hotspots across
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experiments utilizing state-of-the-art approaches such as: Animal models of metabolic diseases and atherosclerosis Flow cytometric analysis of immune cell populations from murine tissues using full spectrum
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nanomaterials. The project aims to overcome the current state-of-the-art through: (i) production of chiral atomically precise metal nanoclusters and their assemblies; (ii) extensive characterization
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strong expertise in the application of artificial intelligence for cybersecurity (prof. dr. Harald Vranken and dr. Mina Sheikhalishahi) as well as formal methods and software testing (prof. dr. Tanja Vos
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of transportation and energy. Its experimental and numerical modeling activities focus on various complex and multiphysical flows, including turbulence, two-phase flows, combustion, and thermoacoustics. Research
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High Performance Computing facility, where the current code is implemented. The candidate will, among other activities, extend the model to treat different management interventions, peat growth and decay