79 algorithm-development-"UCL"-"UCL" Postdoctoral positions at Oak Ridge National Laboratory
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Requisition Id 17068 Overview: For this role, we are seeking an enthusiastic postdoctoral researcher to further develop their expertise in both lifecycle analysis and technoeconomic analysis
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Postdoctoral Research Associate - Multifunctional Equipment Integration Energy Conversion Technology
research assignments related to energy conversion systems including: Prototype development Material synthesis and analysis Performance testing Analysis of results Preparing research publications Prepare
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on developing energy efficient and cost-effective materials and processes for energy applications. The successful candidate will focus on problems related to the separation and recovery of critical materials, gas
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data and develop data-driven methods for predicting land loss and ecosystem transitions in wetland-rich landscapes of the Gulf Coast with a focus on coastal Louisiana. This candidate will directly
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experimental investigations related to understanding process effects on chemical and physical observables of nuclear fuel cycle materials; improving existing and developing novel nuclear forensics indicators
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of large-scale geospatial and time-series datasets. The candidate will develop and evaluate multimodal AI models to characterize vegetation and land-surface dynamics and quantify ecosystem responses and
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and development necessary for the practical implementation of those solutions. Interpret, report, and present research concepts and results to national audiences at all levels. Write peer-reviewed
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regular interactions with fellow research staff, peer reviewers, research sponsors, and to prepare reports, proposals, and presentations. Special Requirements: This is a temporary 24-month position
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Division (MSTD) at Oak Ridge National Laboratory (ORNL), and who will focus on ORNL's continued development of methods to quantify shear (yield) strength of monolithic ceramic materials as a function of
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to develop a mechanistic understanding of deformation, strengthening, and failure in advanced alloys. The research will focus on integrating microstructure characterization, in situ diffraction techniques, and