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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 2 months ago
++, or similar. Preferred Qualifications, Competencies, and Experience Preferred qualifications include experience with molecular dynamics or atomistic simulations, supercomputing or HPC environments, scientific
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allosteric regulation by inhibitory ligands. Multiscale modeling that combines quantum mechanical and molecular mechanical potentials will allow us to determine the atomistic details of phosphoryl transfer and
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application must be submitted no later than 1 August 2026 (23:59 Danish time). Apply at: PhD scholarships in Atomistic Modelling of Magnetically Activated Moiré Superlattices for Tuneable Electrocatalysis
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Postdoctoral Research Associate- AI/ML Accelerated Theory Modeling & Simulation for Microelectronics
and 2D memristive materials). As a Postdoctoral Research Associate, you will contribute to research in these areas, bridging state-of-the-art atomistic and mesoscopic simulation methods as indicated
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, particularly machine-learned interatomic potentials, in the context of chemical research. Knowledge of atomistic and coarse-grained classical force fields. Experience creating and maintaining scientific software
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synchrotron x-ray scattering experiments on complex materials using Rietveld and atomic pair distribution function techniques. Ability to test and refine atomistic structure models against experimental x-ray
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nanofabrication, nanoelectronics, atomic force microscopy, quantum sensing and computing, high speed optical devices and atomistic device simulations. PhD: 3-4 years full-time; 6-8 years part-time; Thesis of Max
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facility design, and nuclear data generation to support the safe operation of the PULSTAR nuclear research reactor. Utilize HPC resources to run atomistic simulation, nuclear data generation, and radiation
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facility design, and nuclear data generation to support the safe operation of the PULSTAR nuclear research reactor. Utilize HPC resources to run atomistic simulation, nuclear data generation, and radiation
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, physical chemistry, and mesoscale physics. We employ a set of rigorous top-down methods, ranging from analytical theory calculations to large-scale atomistic and density functional theory simulations. A