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design, fabricate, and characterize dynamic surfaces that form tactile features such as corrugations, Braille-like patterns, responsive fibres, suction-inspired structures, and switchable soft-hard
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extract is associated with kidney damage, kava extract with liver toxicity, and ephedra extract with cardiovascular insults. These examples highlight the need for a robust and structured strategy to better
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improving robustness. The project will explore strategies related to 1) Object-attribute compositionality to replace exhaustive data requirements with structured concept learning, 2) Bias detection and
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regulatory instruments for the hydrogen economy. These hypotheses will be tested both quantitatively, on the basis of experiments, and qualitatively, through semi-structured interviews. In developing
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" of binding domains of clearance receptors. Embedding This project will be conducted in multidisciplinary collaboration between the Laboratory of Protein Engineering and Structural Biology (Dr. Matti Pronker
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will be employed and tested on actual measurement data as a benchmark. The project will involve mathematical modeling, construction of numerical methods, coding, testing, numerical simulations, and
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structures with extraordinary precision and do so quickly enough to keep up with large-scale production. This creates a fascinating computational challenge: how can we infer hidden physical properties from
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for your systematic, structured, and accurate approach, driven by strong perseverance. You are confident in asking critical questions to further your research and you identify opportunities, effectively
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microbial ecotoxicology, aiming to unravel the effects of agrochemicals on the structure and functioning of microbial and viral communities in agricultural ditch sediments and the linked ecosystem function
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in domains where observations are indirect, incomplete, expensive, or noisy, and where reliable models must respect the structure of the underlying physical system. For example, in subsurface