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Field
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systems architecting AI/ML-driven clinical and operational decision support Digital health and learning health systems Healthcare operations, resource allocation, and workflow optimization Network, graph
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organizations, or government agencies on energy or infrastructure issues. Background in digital twin platforms, cyber-physical systems, or energy system modeling and optimization. Familiarity with large-scale
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pressure-temperature measurements with advanced x-ray platforms. This includes working in optimizing applicaton of APS-Upgraded high brightness and high coherence beam across APS and at HPCAT and
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National Aeronautics and Space Administration (NASA) | Fields Landing, California | United States | 20 days ago
comprehensive analysis simulations using CAMRAD II at Mars aerodynamic conditions Post-processing and analysis of DNS, CFD, or comprehensive analysis datasets Geometry creation and mesh generation for simulations
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Classification Title: Postdoctoral Associate Classification Minimum Requirements PhD degree (within 2 years) or be in the process of completing a PhD in biological sciences (e.g., molecular biology
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, and strengthen national energy security. The Postdoctoral Appointee will contribute significantly to ongoing research efforts in resource valorization. Specifically, the candidate will optimize, and
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expertise in several of the following areas: inverse problems, statistics, optimization, uncertainty quantification, and/or computer vision/machine learning. Strong foundation in at least one of: numerical
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Engineering. The Postdoctoral Research Fellow will lead the development and characterization of multiplexed electrochemical biosensors designed for the high-resolution detection of drugs, biomarkers, and
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
synthetic methods and routes to the target scaffolds and their application to construct optimized analogues. Research is conducted within the highly collaborative environment of the UNC Center for Integrative
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tissues. An integrated interdisciplinary approach has the potential to dramatically accelerate healing and optimize functional recovery following a range of tissue damage levels and even help prevent