17 target-tracking Postdoctoral positions at Oak Ridge National Laboratory in Postdoctoral
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and optimize radiofrequency (RF) power coupling, PMI target conditions, and overall device performance in preparation for early device operations. Integrate boundary plasma simulations with impurity
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research. Your work will focus on developing selective chelation strategies and applying these systems to targeted radionuclide therapy and cancer imaging. Research accomplishments will be disseminated
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targeted at the key DOE Office of Science missions. Major Duties/Responsibilities: Work closely with ORNL researchers in using the resources of the OLCF effectively and efficiently Develop and port scalable
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water utilities in setting long-term targets to significantly improve energy and water efficiency throughout their U.S. operations over a ten-year period. The ideal candidate for this role would be
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of new computational techniques specifically targeted at the key DOE Office of Science and other missions. The appointment will be for one year, with the possibility of renewal for a second year, depending
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optimization methods Track record of publications in relevant journals/conferences (e.g., ASME, IEEE, ASHRAE) Excellent written and oral communication skills. Motivated self-starter with the ability to work
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and recombineering systems for multiplexed, targeted genome manipulation across broad phylogenetic groups. You will carry out gene deletions and overexpression studies, validate engineered genotypes
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the necessary chemistry and processing modifications to meet target alloy properties. Apply advanced characterization and modeling techniques and make fundamental contributions to the field. Interact with other
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evaluating materials for separation applications A strong track record of productive and creative research proven by publications in peer-reviewed journals Excellent written and oral communication skills
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the processing-microstructure-property relationships in aluminum alloy systems. Perform the necessary chemistry and processing modifications to meet target alloy properties. Apply advanced characterization and