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Field
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particle size analysis, including image-based or laser diffraction techniques. Carry out Size Exclusion Chromatography (SEC) and microscopy analyses, including Confocal Laser Scanning Microscopy (CLSM), to
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-disciplinary and collaborative environment at our state-of-the-art research facility at Harwell in Oxfordshire. For more information on the Franklin’s Challenges click here . The Multidimensional Imaging (MDI
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-disciplinary and collaborative environment at our state-of-the-art research facility at Harwell in Oxfordshire. For more information on the Franklin’s Challenges click here . The Multidimensional Imaging (MDI
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Coherent Diffraction Imaging (BCDI), ptychography, and X-ray Photon Correlation Spectroscopy (XPCS). The goal is to move beyond simple correlations to discover the causal, governing rules of defect-property
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, currently focusing on scattering and diffraction methods, including related imaging techniques, laboratories and sample environment. About your role: Disciplinary group leader of beamline teams, laboratories
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in nonlinear X-ray-matter interactions and ultrafast diffraction/imaging are targeted with this position as Postdoc in the MID group. For our MID group, we are looking for a Postdoctoral researcher for
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rock samples with electron paramagnetic resonance (EPR) spectroscopy and imaging. Characterization of silica, water, hydrogen-based, and oxygen-based reaction products with multinuclear Nuclear Magnetic
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Student or Postdoc (f/m/d) for the project Theory and Algorithms for Structure Determination from Single Molecule X‑Ray Scattering Images Project description Single molecule X‑ray scattering experiments
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partially ordered systems. Particular use is made of X-ray and neutron diffraction, cryo-EM, and a wide range of other biophysical techniques. The group is located in close proximity to the MAX-IV and ESS
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microscopy of materials and nanostructures for electronics. This capability at Argonne’s Center for Nanoscale Materials enables imaging of electrically driven dynamics with simultaneous nanometer-scale spatial