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invasive and non-invasive quantitative brain PET studies; designing model-independent kinetic analysis methods for dynamic PET imaging; developing connectivity analysis techniques for brain LAFOV PET/CT data
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aromatics and specialty chemicals. In this project, you will design and study catalytic processes that upgrade complex phenolic mixtures into targeted products using advanced bifunctional catalysts. By
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methods from physics, chemistry, and mathematical modelling. The long-term goal is to derive design principles for constructing smart, adaptive microsystems, potentially useful for targeted drug delivery
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’ economic vulnerability.” Your tasks Together with your supervisory team, you will design and conduct novel empirical studies; You will integrate new insights across disciplines, including sociology
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of the Digital Twin, from architecture design and machine-learning calibration to validation against experimental data. This job offer is part of the Horizon Europe project AIM. AIM (AI-Multiscale Integration
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, and high-tech companies covering the full energy value chain. Your main focus will be on modeling systems essential for the design and optimization of hydrogen production processes. Accurate
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photothermal approaches and design novel organic photocatalysts tailored to these processes. The development of these photocatalysts will be supported by theoretical modelling and AI-based tools in close
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Are you a highly motivated researcher passionate about urban climate and hydrometeorological modeling, urban biometeorology, and climate-sensitive urban design? Do you want to pursue a PhD study
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treatment, identifies maladaptive patterns, and examines key underlying mechanisms. Your job As a PhD candidate you are responsible for the clinical part of this project. You will design studies, coordinate
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pathogen invasion success and plant resilience; identify microbial taxa and interactions associated with contrasting disease outcomes; isolate and experimentally validate selected candidate microbes; design