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non-reacting-flow simulations using lower-fidelity numerical models for compressible flows (Euler and URANS) will be compared to high-fidelity non-reacting-flow LES results to evaluate the predictive
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for analysing authentic, synthetic, and manipulated images or videos. The work will combine predictive performance with explainability, uncertainty estimation, robustness, and generalization. Attention will be
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[Srdinsek2025], the sole structure of the tensor networks that could be “salvaged” was the canonical form that provided the ability to dynamically compress/decompress. During this PhD, we will develop more; we
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on end-to-end incoherent holographic imaging. The research will be carried out in close collaboration with the ETRO research group at VUB and the National Institute of Information and Communications
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provider how to adjust their compression depth, rate, and release to improve patient outcomes. The student will have the opportunity to work with a range of engineers, doctors, and paramedics and will help
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differential equations that require careful modeling and analysis. Imaging optics involves the design and optimization of imaging systems, such as cameras and telescopes, to most accurately capture and reproduce
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be compressed as a zip file (TUAI-Jordan.zip). Candidates are responsible for ensuring that all information is true and correct, otherwise the position will be canceled if documents or information
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offers an opportunity to contribute to prototype development, experimental aerosol characterisation, bench validation and translational evaluation of an emerging pulmonary drug-delivery platform. Research
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learning, and logical reconstruction techniques. The research investigates how multimodal imaging modalities - including scanning electron microscopy (SEM), photon emission microscopy (PEM), and focused ion
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26 Sep 2026 Job Information Organisation/Company NTNU Norwegian University of Science and Technology Department The Department of Circulation and Imaging Research Field Medical sciences Researcher