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, and nitrogen compounds) can cause equipment corrosion, catalyst deactivation, and compromise product quality. We are developing and evaluating innovative technologies to remove these contaminants in
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microswimmers/microrobots that can move and interact autonomously in 3D environments, mimicking the complex dynamics of microorganisms in fluids. Living systems such as bacteria or algae exhibit remarkable
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Health Data Sciences and Informatics (OHDSI, https://ohdsi-europe.org ) initiative, dedicated to bring out the full value of observational health data through the OMOP Common Data Model and large-scale
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botanicus, form the backbone of our faculty and are closely connected. We work in a safe, stimulating, and international environment where enthusiasm and passion drive both research and education, and where
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. But what happens when textiles are no longer static, when they move, respond, grow, and change over time? This PhD project investigates human experiences of animated textiles, including biofabricated
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Project description This project is part of the MSCA Doctoral Networks program e-ChemIn, connecting 10 research institutes and 3 companies across Europe in a joint effort to identify design
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the microbial nitrogen cycle for a more sustainable future. As a PhD candidate, you will combine experimental and computational approaches to uncover how microbial communities drive nitrogen transformations and
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development of private household adaptation module as a standardized, interoperable building block. This effort will contribute to open science by sharing empirically-verified software modules via
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following research programmes: To investigate the effect of the environment on the magnetic behavior of spins on surfaces, we will develop a new periodic quantum embedding that combines equation-of-motion
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neuroscience. Through cutting-edge neuroimaging, computational modelling, and neurotechnology, our network will drive breakthroughs in understanding the human brain and pave the way for personalized diagnosis