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Field
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for sustainable spare parts management using additive manufacturing. You will explore how to: Design supply chains that include AM-based remanufacturing facilities. Optimize spare parts inventories and ordering
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, chemistry, and mathematical modelling. The long-term goal is to derive design principles for constructing smart, adaptive microsystems, potentially useful for targeted drug delivery, cargo transport
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Help shape the future of sustainable urban mobility with immersive XR solutions. Join our team to design innovative solutions for smarter, more inclusive city logistics. Job description Cities
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The advent of automated production in nanomedicine opens transformative opportunities for advancing healthcare innovation. By enabling high-throughput synthesis, precise control over nanoparticle
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on addressing the complexity of the device-software-application-data design space, enabling systematic and efficient exploration using modeling and simulation tools.## Key Responsibilities- Identify and
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, functional array programming DSLs) to tackle challenging probabilistic and differentiable programming applications (e.g., experimental design, machine learning for science). We do so by bringing together a
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potentially be mitigated in animals. The candidate will be required to: - Design, plan and conduct a programme of investigation, in consultation with the supervisors. - Produce a PhD thesis, written in English
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change, healthcare shortages and the design of fair and efficient markets? Are you excited about advancing economic theory and measuring citizens’ preferences and attitudes on a large scale? At Maastricht
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electrification of the chemical industry. Our work spans the full spectrum from material and component development to the design and operation of laboratory-scale systems, with the overarching goal of developing
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industry. Our work spans the full spectrum from material and component development to the design and operation of laboratory-scale systems, with the overarching goal of developing scalable solutions. We