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of individual ice crystals and grain boundaries. This postdoctoral project aims to leverage these developments to better constrain the origin, structure, and evolution of basal ice beneath the Greenland and
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Massachusetts Institute of Technology (MIT) | Cambridge, Massachusetts | United States | about 1 month ago
on the WEST tokamak at CEA/IRFM in France. Activities would include participation in the design, assembly, testing, installation, calibration and operation of a high-resolution imaging crystal spectrometer
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Massachusetts Institute of Technology | Cambridge, Massachusetts | United States | about 1 month ago
on the WEST tokamak at CEA/IRFM in France. Activities would include participation in the design, assembly, testing, installation, calibration and operation of a high-resolution imaging crystal spectrometer
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tools (e.g., single-particle spectral function measured by the angle-resolved photoemission spectroscopy, dynamical spin structure factor measured by inelastic neutron scattering, or other tools like
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particles or single-crystal electrodes. Experimental experience in the preparation of particles using electrodeposition methods (e.g., pulsed electrodeposition). Experience in the use of electron microscopy
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scattering, neutron scattering, photoelectron spectroscopy, etc. * Experience with lab-standard sample characterization techniques and related equipment (transport measurements, single crystal diffraction
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environment will facilitate the development of new skills and the demonstration of creativity and leadership. Expertise in structure solution using powder and/or single crystal X-ray diffraction-based
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biology through single-crystal neutron diffraction techniques. This position focuses on visualizing critical hydrogen atoms in carbohydrate-binding proteins and their complexes using neutron diffraction
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bulk crystals, through thin layers and membranes, down to single molecular layers and their heterostructures? The aim of this project is to address this challenge by investigating the nanomechanical
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characterise new phosphines and their nickel complexes, using Schlenk techniques, the glovebox, NMR spectroscopy, mass spectrometry, single-crystal X-ray diffraction and other techniques that might be deemed