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electronic structure theory (e.g., density functional theory), and machine learning based computational studies of molecular and periodic systems. The postdoc will also work within a multidisciplinary multi
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frequency domain reflectometry (OFDR), and other technologies relevant to nuclear reactor structural health monitoring and maintenance. The candidate will be expected to install, configure, analyze, and
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fundamental structure-property relationships by systematically analyzing how specific synthesis and fabrication strategies impact key photonic properties, such as propagation loss, entanglement efficiencies
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Duties/Responsibilities: Lead and contribute to collaborative research projects involving synthesis and characterization of bulk materials to understand structural, electronic, and magnetic properties
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mechanisms, phase equilibria, coordination environments, relationship between molecular structure and macroscopic properties, and effects of impurities on macroscopic properties. Applicants cannot have
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Postdoctoral Research Associate - Energy materials synthesis and exploration with neutron scattering
scatterings including phase formation, evolution, and elemental site occupancy in crystal structure etc. will be transferred to help to develop process of fabrication of large energy storage device. This work
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opportunity to pursue an ambitious research agenda that will drastically advance the state-of-the-art in sparse computations both as a unified topic and within three broad pillars: sparse and structured matrix
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this link: http://neutrons.ornl.gov As part of a team, you will explore the complicated coupling between the local structure and various degrees of freedom (orbital, spin, etc.) involved in functional
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of correlated and topological materials. Work in thin film synthesis and physical property characterizations. Experience in user facilities. Complete data analysis of structural, electronic, magnetic, and
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chemistries suited for long-duration energy storage (LDES), specifically: Assembly, testing, and structural design of redox flow batteries; Membrane processing and electrochemical evaluation within the flow