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to post-process characterization. This environment enables the creation of high-fidelity digital twins and AI-ready datasets that support real-time monitoring, predictive modeling, and process optimization
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analysis teams, vendors, and personnel at the ITER headquarters in France to realize optimal design solutions in compliance with ITER requirements. Working closely with quality assurance and procurement
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develop appropriate models and computational strategies to assess HFIR Isotope Production target design. Contribute to the design of radioisotope production targets to optimize coolant flow and thermal
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, maintain, and optimize LabVIEW-based software for data acquisition, monitoring, and control applications across new and existing systems. Lead the design, integration, and deployment of real-time monitoring
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the combined use of intense, cold neutrons and instruments that are optimized for exploration of complex materials. Together, these three facilities form an unbeatable combination that will maintain US global
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and extreme environment structural materials. A strong background in mechanical behavior of materials is required. Demonstrated experience in the implementation of nonlinear constitutive models in
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culture aligned with ORNL’s Safe Conduct of Research principles and strong operational discipline. Coordinate closely with system engineering, maintenance planners, operations personnel, construction
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. This environment enables the creation of high-fidelity digital twins and AI-ready datasets that support real-time monitoring, predictive modeling, and process optimization. In this role, you will leverage large
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team. This role is both operational (managing and optimizing assets and services today) and visionary in charting the future of geospatial compute, orchestrating large-scale investments and partnerships