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frequent cloud contamination. This scale mismatch prevents a coherent representation of radiative–thermal processes at the urban scale. This PhD will develop physics-informed deep learning models for data
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Description The International Max Planck Research School for Ultrafast Imaging and Structural Dynamics in Hamburg, Germany, offers a structured PhD program focusing on ultra-fast phenomena, X-ray
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Responsibilities: (1) Conduct X-ray diffraction (BCDI) and electron microscopy experiments to analyze the crystalline structure and strain distribution of protein-superlattices in sponge spicules. (2) Develop and
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most cities around the world. Addressing this challenge requires a focus on how to design the city in coherence with the transport system that supports the usage of public transport as well as active
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. The completion of both objectives will entail a combination of 1) fieldwork and petrography; 2) electron backscatter diffraction analyses (University of Cambridge); 3) Magnetic fabric analysis (University of St
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workflows for the analysis of the local structure in soft functional materials (semi-crystalline and amorphous materials) using electron diffraction and electron energy loss spectroscopy methodologies. You
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materials and we utilise these non-absorbed X-rays to massively increase image contrast and reduce radiation exposure using coherent synchrotron radiation. We have developed these “phase contrast” and “dark
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of coherence in coupled frequency comb lasers. A major open challenge is how to combine multiple comb sources into a single coherent system, overcoming fabrication-induced detuning of the repetition rate and
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Institute of Low Temperature and Structure Research Polish Academy of Sciences | Poland | 13 days ago
conditions. To elucidate structure–activity relationships, the obtained materials will be in-depth characterized using advanced techniques, including powder X-ray diffraction, transmission and scanning
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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