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) composition of the rejection water typically treated in these reactors. Develop and test mitigation measures in a full scale deammonification reactor. Pro-actively communicate your research findings with
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countries. Best of all, you will not do this alone: you will be part of a vibrant, international cohort of 11 doctoral candidates who train, travel, and tackle the challenges of quantum-secure communication
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evolving and we need your ideas for improvement and innovation to take us further. We want to devote attention to your personal development. You can count on an enjoyable job within the socially relevant
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evidence. The aim of this project is to investigate thoroughly whether tVNS genuinely improves cognitive functions. For detailed project information, see: https://rb.gy/wmiqqk (project WP1) Your
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and temporal coverage. This PhD project addresses these challenges by developing innovative methods to assess railway embankment health through the integration of multiple monitoring technologies
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. Combining advanced characterization, materials science, and metallurgical insight, you will explore how these elements affect microstructure evolution, processing behaviour, and ultimately material
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—remain beyond the reach of today’s supercomputers. Quantum computing offers a fundamentally new approach to scientific computing. Although large-scale quantum computers are still under development
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the interface between the classical and quantum worlds. You will design QEC codes suited to realistic hardware, develop the decoding algorithms that make them practical, and map the trade-offs between reliability
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information and therefore enable high quality products while preventing waste from production errors. Thus they contribute to healthcare and sustainable food production. This project aims to develop innovative
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main responsibilities will be shared between two main research activities (approximately 70%-30%): Large-Scale Survey Development & Data Analysis for Ex-Post Assessment: Develop and deploy a structured