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of ORNL researchers with various backgrounds (e.g., material science, neutron science, chemistry, manufacturing, computing, others). Interact and collaborate with researchers from universities, national
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separation and recovery methods for Gallium and Germanium. Major Duties/Responsibilities: Design and synthesize organic ligands, functionalization of resins, polymers. Design and execute adsorption based solid
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backgrounds such as materials science, chemistry, data science, and robotics along with close interactions with industry partners. These engagements will play a vital role in ensuring success of programs and
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mechanical testing to uncover processing–microstructure–property relationships. The candidate will have opportunities to interact with multidisciplinary teams and contribute to high-impact publications and
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-on experience in catalytic reactor design and performing experiments with data reduction are needed. Experience in handling different types of hydrogen isotopic samples and irradiated samples are also desirable
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Postdoctoral Research Associate - Multifunctional Equipment Integration Energy Conversion Technology
stakeholders from universities, national laboratories, government agencies, and private industry. Deliver ORNL’s mission by aligning behaviors, priorities, and interactions with our core values of Impact
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quantification of radioactive complexes. As a member of our research team, you will take a leading role in the design, synthesis, characterization, and evaluation of novel chelation platforms for medically
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the project from idea stage to eventually generating quantifiable outcomes such as publications and invention disclosures. Major Duties/Responsibilities: Collaborate with a multidisciplinary team to advance
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innovation and play a key role in driving forward significant advances in fiber technologies. Major Duties/Responsibilities: Developing cutting-edge polymer chemistries for advanced fiber applications
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optimization across quantum and classical computing resources. Conduct hardware-software and application-system co-design by considering interactions among quantum hardware characteristics, HPC architectures