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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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radiolysis as a tool to study fundamental molecular energy conversion processes such as charge separation, transfer/transport and recombination, as well as projects with applications in light-driven chemical
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scientific programs with a strong focus on Electroweak and Beyond the Standard Model physics. Participation in the development and performance of physics and detector simulations for high-energy and nuclear
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. Experience creating and checking detailed mechanical drawings and 3D models of pipe systems and components andmanaging the work of mechanical designers. Experience with creating and reviewing detailed piping
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physics principles for beamlines, synchrotrons, and storage rings, including the theory of polarized beams. Duties will involve developing physics models of accelerators and beams using standard simulation
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, and infrared light to enable discoveries in clean and affordable energy, high-temperature superconductivity, molecular electronics, and more. POSITION DESCRIPTION The Physical Science and Research
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, and infrared light to enable discoveries in clean and affordable energy, high-temperature superconductivity, molecular electronics, and more. POSITION DESCRIPTION The Physical Science and Research
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investigators. Position Requirements Ph. D. in theoretical or physical chemistry, or a related field Extensive experience in one or more of the following areas: Computational modeling of homogeneous
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, and Abilities: Experience with neutron or x-ray scattering from single crystals Experience with characterizing magnetic and structural dynamics using neutron scattering Modeling neutron scattering from
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the area of electric power grids. Essential Duties and Responsibilities: • Perform cyber-physical system modeling and simulation for the power grid. • Perform research on power system dynamics and