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children learn new words not only by listening to a storyteller but also by processing multimodal signals such as iconic gestures and gaze direction. Using eye-tracking in both real-life and digital contexts
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projector in image reconstruction. Dual-energy imaging will be explored for quantitative determination of electron density (ρₑ) and effective atomic number (Zeff), for the inference of WAC-relevant indicators
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an existing system based on artificial intelligence and high-speed imaging. The idea is to bring the system to the clinic and to create a new generation of intelligent safety systems for radiotherapy. The goal
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liquid lead or lead-bismuth eutectic as coolant. This coolant enables high-temperature operation without pressurization and offers an enhanced neutron economy leading to a better fuel utilization. A
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and applied image/data processing. Profile You hold a Master degree in Computer Science, Electronics Engineering or you will have obtained it by the time you start work. You can demonstrate good study
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irradiation and high ISOL operation temperatures (up to 2000°C), where target material degradation (i.e. through sintering) brings RIB yield reduction over time. Actinide oxides are suggested as one
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-spectral microscopy framework that extracts meaningful spectral information from a single image, by combining innovative optical system design with learning-based data processing. The research aims
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translate into concrete health outcomes. The BRANCH project wants to change that. By combining conceptual work on green space typologies, advanced geospatial analytics, AI-based image analysis, citizen
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candidate eager to operate at the interface of molecular biology, neuroscience, and AI. Responsibilities Wet-Lab & Experimental Work Set up and optimize imaging based spatial transcriptomics protocols. Set up
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analyze imaging (DHM) and sequencing datasets (RNA-seq, Ribo-seq where relevant; nanopore long-read). • Perform computational analysis: differential expression, splicing, RNA processing and modification