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Field
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cases: Logistics, shipping and business transactions; Ship design and construction; Voyage planning and optimization; Condition monitoring and maintenance; Crew training; Maritime traffic and ship
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bottlenecks in clinical radiology workflows through observations, structured workflow mapping, and close collaboration with clinical staff. Design, develop, and evaluate AI-based and automated workflow
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chemical libraries for phenotypic target-directed screenings toward selected therapeutic targets; d) Optimize lead compounds obtained from structure-activity relationship (SAR), structure-property-activity
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-dimensional plasmonic metasurfaces. The goal is to disentangle hot-carrier and thermal contributions and optimize metasurface designs for site-selective hot-carrier generation with minimal heating. The work
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molecular modeling, optimize their structures for selectivity and tumor retention, and conjugate the most promising candidates to chelators for radiolabeling with ¹⁷⁷Lu or ¹⁶¹Tb. This chemistry-driven project
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: Ensure reproducibility and scalability; modify surface chemistry for biocompatibility and stability. Formulate and optimize solution: Integrate nanozymes into a clinically relevant solution formulation
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the shift from the robust architecture of radio-TV transmitters and receivers to the far more complex and fragile structure of ‘over-the-top’ (IP-based) media delivery. The project will model optimal
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to drive progress in aerospace: aerodynamics, flight dynamics, propulsion, structural strength, materials, optics and laser, acoustics, radar and electromagnetism, electronics, systems, robotics, information
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force behind the design, construction, and experimental validation of a next-generation magnetocaloric heat pump prototype, a technology poised to revolutionize the market and contribute significantly
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structures, access to space, multidisciplinary design and concurrent engineering, uncertainty treatment and optimisation, machine learning. (https://www.strath.ac.uk/ ) Task description for your Individual