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RAP opportunity at National Institute of Standards and Technology NIST Creating Computational Techniques to Investigate the Ensemble Structures of Flexible Proteins In Combination with Neutron
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RAP opportunity at National Institute of Standards and Technology NIST Combining Theory, Simulation, Machine Learning, and Autonomous Experiments for Industrial Formulation Discovery Location
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microscopy (SPM) based spectroscopic measurements such as Photothermal Induced Resonance (PTIR),[1-2] also known as AFM-IR, and scanning tunneling microscopy luminescence (STML).[3] PTIR combines
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) characterizing novel nanomagnetic contrast agents using NIST NMR/MRI, 3) combining low-field MRI with neural sensing using low field atomic magnetometers, 4) developing and testing advanced magnetic sensors in
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identification process and enable end users to select the appropriate tools for their applications. Combining existing and new technologies is encouraged. The proposal may include a combination of benchwork and
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[1], the flow in porous media, and the composition of materials due to the combination of the neutron’s high sensitivity to light elements and high penetration through most metals. NIST currently
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systems. This work will specifically focus on combining ML algorithms with classical data analysis and control techniques to develop robust in situ (i.e., in real-time, during the operating experiment
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interactions with the electrolyte as a function of applied potential. Despite more than a century of model development, much is still unknown about even single-crystal interfaces. We combine spectroscopic and
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301.975.2080 Description Next generation manufacturing combines current metals additive manufacturing methods with various in situ energy sources (thermal, mechanical, magnetic, electrical) to tailor
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to the nanoparticle surface and to assess the effect of surface coatings on nanoparticle stability and functionality; (3) the development of hyphenated techniques that combine separation with multiple detection modes