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QIST group centered in our Instrumentation Division and working in close collaboration with the QIST group at Stony Brook University and the Atomic and Molecular Physics (AMO) group at Columbia
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for Accelerated Nanomaterial Discovery, integrating synthesis, advanced characterization, physical modeling, and computer science to iteratively explore a wide range of material parameters. The CFN develops and
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applies platforms for state-of-the-art techniques for Accelerated Nanomaterial Discovery, integrating synthesis, advanced characterization, physical modeling, and computer science to iteratively explore a
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of the output of these algorithms into the database infrastructure for DUNE. Lead analysis of LAr TPC data and publication of physics measurements based upon that data. Required Knowledge, Skills, and Abilities
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applies platforms for state-of-the-art techniques for Accelerated Nanomaterial Discovery, integrating synthesis, advanced characterization, physical modeling, and computer science to iteratively explore a
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capabilities for studying biological structures and processes from near-atomic to nanometer resolutions. In addition, LBMS has an Aquilos 2 cryogenic focused ion beam (cryo-FIB) for cryo-electron tomography
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Apply Now Job ID JR100816Date posted 01/12/2024 The Condensed Matter Physics and Materials Science Department operates OASIS - a facility for Angle Resolved Photoemission Spectroscopy (ARPES) and
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applies platforms for state-of-the-art techniques for Accelerated Nanomaterial Discovery, integrating synthesis, advanced characterization, physical modeling, and computer science to iteratively explore a
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applies platforms for state-of-the-art techniques for Accelerated Nanomaterial Discovery, integrating synthesis, advanced characterization, physical modeling, and computer science to iteratively explore a
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of organic-inorganic hybrid thin films and their applications as next-generation extreme ultraviolet lithography (EUVL) photoresists. You will explore atomic layer deposition (ALD) techniques, including vapor