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in ORNL’s Center for Radiation Protection Knowledge (CRPK). The candidate will work with experts in computational radiation dosimetry and risk assessment. The candidate should be an independent thinker
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) techniques. Proficiency with characterization techniques such as SEM, EBSD, and TEM is strongly preferred. Experience with radiation effects in metals and alloys, with a particular focus on deformation
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-based sensors to measure thermal and irradiation creep in advanced nuclear materials, as well as measuring the corrosion and oxidation of zirconium in light water reactor environments. The candidate will
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materials, and detector response to radiation sources. Model conceptual advanced reactors and their subsystems. Evaluate safeguards metrics during hypothetical reactor misuse scenarios. Collaborate across
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specialists in organic and inorganic synthesis, coordination chemistry, thermodynamics, laser spectroscopy, materials characterization, chemical separations, computational chemistry, and nuclear chemistry. Our
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navigation, trajectory planning, and point cloud mapping; and (3) deploy the developed algorithms on a physical mobile robot operating in GPS-denied, low-light, and geometrically repetitive environments
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characterization, probing, thermal testing, or dynamic compliance testing. Experience integrating sensors, data acquisition systems, and instrumentation into machining or manufacturing systems. Experience with data
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laser deposition, characterization, analyzing data, and writing papers. Major Duties/Responsibilities: Conduct epitaxial synthesis of complex-oxide thin films and heterostructures by pulsed laser