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broad knowledge of ORNL requirements and processes related to ES&H, Production, Quality Assurance, procurement/contracts, construction/maintenance, and Security. Experience with supply chain management
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of conduct, and a statement by the Lab Director's office can be found here: https://www.ornl.gov/content/research-integrity Basic Qualifications: Ph.D. in mathematics, engineering, data/computational science
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liquids, frustrated magnetism, excitonic magnets, and strongly correlated electron systems. You will work closely with theorists, experimentalists, and computer scientists to build robust, scalable
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of interest include structure-preserving finite element methods, advanced solver strategies, multi-fluid systems, surrogate modeling, machine learning, and uncertainty quantification. The position comes with a
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procurement-related documents. The Second Target Station (STS) is a >$2Billion Department of Energy project to be constructed at the ORNL Spallation Neutron Source (SNS) over the next decade. The STS will
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the Frontier supercomputer, and the chance to make meaningful contributions to DOE's mission-critical scientific domains. Roles and responsibilities include, but not limited to, one or more of the following
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topics of interest include high-dimensional approximation, closure models, machine learning models, hybrid methods, structure preserving methods, and iterative solvers. Successful applications will work
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research, each year carrying out more than 1,000 experiments in the physical, chemical, materials, biological and medical sciences. To learn more about Neutron Sciences at ORNL, please go to this link: http
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specify FPGA based applications Design and implement improvements to the software development, build, test and deployment environment and processes to ensure robust reliable solutions transition
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this role, the successful candidate will build and execute research programs that leverage core science strengths at ORNL to address challenges for manufacturing processes. In addition, the candidate will be