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RAP opportunity at National Institute of Standards and Technology NIST Developing bioanalytical foundations for analysis in non-model systems Location Material Measurement Laboratory, Chemical
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-pi decay-energy spectrometery (DES) system using ultra-low temperature Transition Edge Sensor (TES) micro-calorimeters to identify and quantify radionuclide samples embedded in the detector
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of failure strengths are needed to ensure reliability and maximize performance. We use numerous modeling approaches to explore the mechanical and electrical behavior of deforming nanoscale systems. Current
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Machine Learning-driven Autonomous Systems for Materials Discovery and Optimization NIST only participates in the February and August reviews. We are developing machine learning-driven autonomous
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RAP opportunity at National Institute of Standards and Technology NIST Characterization of Interfaces and Interphases in Polymeric Material Systems Location Engineering Laboratory, Materials and
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NIST only participates in the February and August reviews. Understanding the intermolecular environment surrounding complex molecules, ions, electrode surfaces, and nanomaterials is crucial
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the NIST Magnetic Metrology and Sensor Facility, and 5) developing benchtop microMRI systems with novel point-of-use hyperpolarization. The radiation imaging will explore imaging microwave, Xray, and
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aberration corrected (S)TEM tool is equipped with a variety of detectors (HAADF, BF, ABF, XEDS, EELS) as well as holography and tomography capability. Also available are focused ion beam – scanning electron
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techniques to study magnetic properties of strongly fluctuating spin systems that order at greatly reduced temperatures or completely fail to develop static order despite strong interactions. The systems
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systems using emerging devices including Josephson junctions, magnetic Josephson junctions, and spintronic components. Many of these technologies are neuromorphic at the device level with the potential