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to ensure compatibility and safety of system. Inspect electrical systems, equipment, or components to identify hazards, defects, or the need for adjustment or repair and to ensure compliance with codes
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and mechanics Preferred Qualifications: MS in chemical engineering, nuclear engineering or mechanical engineering Familiarity with the ASME Boiler and Pressure Vessel Code and ASME B31 Pressure Piping
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, self-steering simulations, and adaptive experimental campaigns. Open-Source Software Leadership: Own the technical direction and health of open-source research software: code review, CI/CD, testing
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commercial (e.g. Abaqus, ANSYS, etc.) and/or open-source finite element (FE) codes (e.g., MOOSE, DAMASK, etc.) is required. Experience with microstructural modeling (e.g. crystal plasticity) applied to fatigue
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field operations, including use of radiation transport codes to model these systems and analysis codes to isolate signals of interest. Major Duties/Responsibilities: In this role, you will work with and
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temperatures, vacuum systems, or high radiation environments). Comprehensive knowledge of pressure vessel codes and high-pressure piping standards. Extensive hands-on experience in an advanced R&D laboratory
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accordance with US and/or European code requirements. Perform checks of concrete anchorage in accordance with project guidelines. Document analysis results in formal Design Analysis Calculation (DAC) packages
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, RTDS, Typhoon HIL, or similar systems. Familiarity with software coding and hardware development in the context of power systems research. Proven track record of scholarly publications and presentations
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development and budget preparation. As a member of the ORNL scientific community, you will be expected to commit to ORNL's Research Code of Conduct. Our full code of conduct and a statement by the Lab
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and quantification Demonstrated expertise in design and implementation of multi-physics codes for metal AM applications including thermo-mechanical response as well as microstructure and phase