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for collaborative use within the EGRET project. Work closely with remote-sensing scientists, hydrologists, environmental scientists, process-based modelers, and computational scientists across DOE laboratories and
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, qualification, and deployment of AI agents and models, Computational Fluid Dynamics (CFD) simulation codes, and Finite Element Method (FEM) based tools for nuclear energy (fission and fusion) applications
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in the areas of Hydrological and Earth System Modeling and Artificial Intelligence (AI). The successful candidate will have a strong background in computational science, data analysis, and process
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methods Computational or process modeling using tools such as Python, MATLAB, Aspen, COMSOL, Fluent, or OpenFOAM Experience with high performance computing environments Experience working in a classified
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centrifuge isotope separation missions by integrating research, modeling, simulation, diagnostics, design, systems engineering, testing, prototype manufacturing, data analysis, quality, configuration
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of computational scientists, applied mathematicians, and computer scientists to link models and algorithms with high-performance computing. Author peer reviewed papers for internal and external release as
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success. Basic Qualifications: Ph.D. in electrical engineering, power systems, computer engineering, control engineering, or a closely related field. Strong background in power system modeling, dynamic
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Chemistry, Application, and Simulation Group in the Materials Characterization and Modeling Section in the Nuclear Nonproliferation Division, of the National Security Sciences Directorate, at Oak Ridge
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Engineer will conduct R&D in nuclear nonproliferation with expertise in computational nuclear reactor physics through modeling and simulation (M&S). The candidate will perform analysis and methods
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capabilities that enable programs to excel at the forefront of science and technology; performs independent and collaborative R&D to advance the fields quantum computing science; sets, implements, and models