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Field
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important topological structures thought to contain the essence of confinement. This project will use a first-principles approach in which large-scale simulations of QCD are performed on a discretised
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-resilient, and water-sensitive built environment”, aims to address this by developing, collecting, connecting and delivering in a transdisciplinary approach the needed knowledge, insights, tooling, principles
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propulsion forces, uncovering the new fundamental principles that govern their movement. The physics of swimming on these small length scales is fundamentally different to that when we swim. By characterizing
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” analysis should in principle be able to extract information beyond the limits of current techniques, its development is still in an early phase. There is a still need to develop reliable ways to robustly
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to increase each year. The start date is 1st October 2025. Industrial filtration felts are constructed using both mono-material and blended fibre systems to meet the mechanical, chemical, and thermal demands
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establish an adaptive multiscale platform where catalyst performance is computed from first principles. Contract terms and what we offer The PhD-positions are fully funded from start As a PhD student at
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have the opportunity to apply for a grant for an extended research stay abroad. The fixed-term position has a duration of three years, and the desired start date is 01.12.2025. Admission to the PhD
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tools will be integrated from the outset to evaluate and minimize environmental impacts across all stages of synthesis and formulation. The project will align with industrial standards and regulatory
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and deterministic AI outputs is critical. This requires robust design principles and architectural changes to reduce variability and integrate smoothly with industrial control systems. Enhancing
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Key Responsibilities (in close collaboration with TU Munich): Develop a deep understanding of materials engineering principles to guide the design and functionalization of nanoporous materials