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with dynamically tunable wetting, solute transport, and trapping properties. The work connects fundamental polymer and soft-matter physics with concepts from intelligent materials and bio-inspired
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polymer brush architectures with dynamically tunable wetting, solute transport, and trapping properties. The work connects fundamental polymer and soft-matter physics with concepts from intelligent
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, or related tools). Good communication skills in English. Experience with complex systems, energy landscapes, physical memory, machine learning, or soft/active matter is advantageous but not required. We
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for Experimental Physics (IoP-WZI) is part of the IoP and home to three research clusters: Quantum Gases & Quantum Information (QG&QI), Quantum Materials (QMat), and Soft Matter (SM). You will work in the Strontium
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Information (QG&QI), Quantum Materials (QMat), and Soft Matter (SM). You will work in the Strontium Quantum Gases Group , part of the QG&QI cluster and headed by Prof. Dr. Florian Schreck. We exploit ultracold