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Field
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principles governing supramolecular materials structures and properties to evaluate new candidates. We focus on a class of materials termed molecular capsules (https://doi.org/10.1039/D4CS00761A , https
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for emerging material characterization. Core questions will be how structural motifs control ultrafast excitation dynamics and coherent electronic state evolution in chiral organic molecular semiconductors
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from the physics institute of Humboldt-Universität zu Berlin. Your responsibilities Development of QCLs (active regions) emitting in the range from 2 to 5 THz Optimization of resonator structures
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design and end-of-life strategies often overlooks the unique recovery and regeneration challenges posed by these composite structures. End-of-life industrial filtration felts are heavily contaminated with
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us that you quickly settle into the team and are given structured training for your tasks. We also support you from the very beginning and make your start easier with our Welcome Days and Welcome Guide
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would then be correlated, using the synchrotron light, to structural, chemical and electronic changes in the single metal atom at different steps in the catalytic reaction. Using the synchrotron light we
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to structured spectral annotation supporting advanced downstream data analysis (in collaboration with a dedicated postdoc) Present research findings through peer-reviewed publications and international
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exciting opportunity to work at the intersection of composites structures and composites manufacturing with a particular focus on sustainability. The PhD project aims to develop state-of-the-art
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measurements, data collection, and analysis. Prediction of service life and assessment of fatigue behavior of automotive structures. Preparation of research outputs, including reports, publications, and
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statistical analyses on large databases Designing and running experiments Structural modelling and related econometrics Proving theoretical results Basic Qualifications Bachelor’s degree by start date (required