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require close collaboration with members of the Neutron Technologies Division, the Neutron Scattering Division and the Computer Science and Mathematics Division, as well as project members from other DOE
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data production at next-generation computational facilities enables scientific knowledge discovery but presents a challenge to move, store, and process the data. To maximize their science return
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technical personnel for the development of new research ideas. Ensure compliance with environment, safety, health and quality program requirements. Maintain strong commitment to the implementation and
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, health, and quality program requirements. Maintain a strong commitment to the implementation and perpetuation of values and ethics. Deliver ORNL’s mission by aligning behaviors, priorities, and
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seeking a Postdoctoral Research Associate to assist in the development, qualification, and deployment of Computational Fluid Dynamics (CFD) simulation codes, methods, and standard processes for thermal
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Ensure compliance with environmental, safety, health and quality program requirements Maintain strong dedication to the implementation and perpetuation of values and ethics Deliver ORNL’s mission by
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that are composed of ORNL researchers with various backgrounds (e.g., material science, neutron science, chemistry, manufacturing, computing, others). Interact and collaborate with researchers from universities
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to achieve project goals and deliverables. Present, report, and publish research results in a timely manner. Ensure compliance with environment, safety, health and quality program requirements. Maintain strong
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companies participating in the DOE’s Better Plants program. Deliver ORNL’s mission by aligning behaviors, priorities, and interactions with our core values of Impact, Integrity, Teamwork, Safety, and Service
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Postdoctoral Researcher - Microstructural Modeling and Characterization of High-temperature Ceramics
-ray computed tomography, scanning electron microscopy, or other microscopy 3D techniques, is desirable. These modeling and microscopy approaches will be combined with experimental data to evaluate