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and melt-liquid structure. With the recent APS-Upgrade project completed and new high coherence and brightness x-ray beam, HPCAT has concurrently made over $20M HPCAT investments in upgrading key
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possible to visualize the interplay of soil structure and microbial life at scales bridging nanometers to millimeters, creating a unique opportunity to investigate how microbial communities are organized and
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perform advanced synchrotron experiments to probe structural, chemical, and dynamic evolution of defects in thin films and heterostructures. Utilize techniques such as Bragg coherent diffraction imaging
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and melt-liquid structure. With the recent APS-Upgrade project completed and new high coherence and brightness x-ray beam, HPCAT has concurrently made over $20M HPCAT investments in upgrading key
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The Coherent and Ultrafast X-ray Science Group in the Materials Science Division at Argonne National Laboratory is seeking a highly motivated postdoctoral appointee to lead research in ultrafast