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the synchrotron-based imaging technique Dark-Field X-ray Microscopy and together we utilize it to visualize the evolution of internal structures in metals during plastic deformation, i.e. changes in shape due
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of Geophotonics — a novel paradigm that explores the interaction of light with natural crystalline materials to decode the dynamics of Earth's surface. The positions offer a unique opportunity to contribute
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and Law (GGS), the Giessen Centre for Eastern European Studies (GiZO) and the Centre for Media and Interactivity (ZMI), welcome involvement. A PhD with International Conference and Publication
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-periodic structures, we can precisely control the interaction of radiation with matter, potentially achieving unprecedented timing resolution (sub-70ps) and significantly enhancing signal detection. This PhD
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modelling tools to understand and tailor the physical and chemical interactions at the interfaces within metascintillators. Cranfield University’s Centre for Materials is internationally recognised
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in glia-neuron metabolic interactions, and the underlying regulatory mechanisms are studied. A greater understanding of the metabolic plasticity of the nervous system will lay the basis for better
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, previous studies suggest that short RNAs like eRNAs can trigger phase separation of proteins in transcriptional condensates, and transcription factors can interact directly with RNAs. The presence of eRNAs
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where variable renewable energy sources are involved. Emerging digital and cyber-physical systems technologies are an integral component of grid interactive efficient buildings. Through advanced control
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in glia-neuron metabolic interactions, and the underlying regulatory mechanisms are studied. A greater understanding of the metabolic plasticity of the nervous system will lay the basis for better
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applied in close collaboration with our clinical colleagues for investigating visual motion in a group of healthy subjects. The successful applicant holds a Master’s degree (or equivalent) in a relevant