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methods for assessing whether, how, and to what extent these transition pathways are driving structural change. You will: select and co-develop indicators and methods to assessing circular transition
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of protein-based materials and biocatalysts using synthetic cells. A key objective is the bottom-up construction of synthetic cells that are capable of sustained protein production. This is a formidable
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of Quantum Nanoscience, TU Delft, to investigate electronic structure and spin-orbit/scalar relativistic effects in lanthanide-containing molecular and periodic systems. Molecules and atoms with unpaired
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of Quantum Nanoscience, TU Delft, to investigate electronic structure and spin-orbit/scalar relativistic effects in lanthanide-containing molecular and periodic systems. Molecules and atoms with unpaired
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Job description The Challenge As process industries transition to circular models, companies within Hubs for Circularity (H4C) need robust tools to navigate the financial complexities of industrial
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modeling of disease progression and treatment response. Job description Cardiovascular disorders often progress over months to years through complex interactions between myocardial mechanics, tissue
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synthesis out of fossil-based and one time use to continuous reuse of polymeric products. Current recycling methods cannot recover high-value polymers from complex waste streams such as multilayer packaging
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with analysis and contribute to policy. The position suits a researcher who combines rigorous quantitative skills, especially in the area of randomized control trials, with experience with complex
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open standards and structured APIs. Hosted at TU Eindhoven, OpenML serves over 300,000 users, has supported over 2,000 scientific studies, and won the Dutch Data Prize. We are looking for an excellent
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for Circularity (H4C) need robust tools to navigate the financial complexities of industrial symbiosis. This project aims to bridge financial modelling, AI, simulation, and circular business model innovation