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. Reconstructing, forward modeling, or inverse modeling of diffraction data. High-performance computing and scalable scientific software development. Molecular dynamics, crystal plasticity, finite-element, or other
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including a state-of-the-art NeoArm JEOL, multiple powder and single crystal X-ray diffractometers, NMR, EPR, and time-resolved fluorescence amongst others. The Harvey Lab at Indiana University focuses
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laboratory work on entrainment of oil droplets in breaking waves Work with measurements on entrained air bubbles, oil droplets and possibly other types of particles, such as ice crystals, and formulate models
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waves Work with measurements on entrained air bubbles, oil droplets and possibly other types of particles, such as ice crystals, and formulate models for size distribution and vertical transport
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collaborators both in the University of Oslo, and outside (https://www.mn.uio.no/geo/english/research/projects/dynamice/index.html ). About the DYNAMICE project: Ice and olivine, the main building crystals
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anisotropy for rotating magnetocaloric effect. The aim is to optimize the magnetocrystalline anisotropy on magnetocaloric single crystal-based particles composites to maximize the rotating magnetocaloric
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information about this opportunity, please contact Associate Professor Conan Wang at [email protected] and Dr Crystal Huang at [email protected] . For application inquiries, please reach out
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scattering methods quartz crystal microbalance with dissipation monitoring, or related techniques • Experience with biosensing, biomolecular interactions, colloidal systems, mesoporous materials
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including state-of-the-art NeoArm JEOL, multiple powder and single crystal X-ray diffractometers, NMR, EPR, and time-resolved fluorescence amongst others. Job Summary: The Harvey Lab at Indiana University
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atmosphere manipulation of air- and moisture-sensitive chemicals as well as analytical techniques for characterizing the newly synthesized molecules and polymers (NMR, IR, Mass spec, single crystal XRD, GPC