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integrated nanophotonic devices and systems with novel mechanisms to generate, detect and manipulate light on chip, for classical and quantum information processing. All projects involve development of new
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include the development of novel polymeric mechanical testing devices, novel adhesion blister testing devices, development of high-throughput screening devices, informatics, and data base development. key
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RAP opportunity at National Institute of Standards and Technology NIST Complex Systems and Networks: Performance, Control, and Security Location Information Technology Laboratory, Applied and
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RAP opportunity at National Institute of Standards and Technology NIST Colloidal Phase Behavior of Carbon Nanotubes under High Concentrations of Polymers and Salts Location Material Measurement
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RAP opportunity at National Institute of Standards and Technology NIST High-Accuracy Measurements on Complex Mixtures with NMR Spectroscopy: Applications to Refrigeration, Forensic Science
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-film samples on waveguide interfaces and gas phase samples over temperature ranges from 1.7 K to 350 K. The experimental results are modeled using high-level quantum mechanical methods (DFT/MP2/MRCI
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for the high-throughput simulation of adsorption isotherms in nanoporous solids. References Cockayne E, Wong-Ng W, Chen YS, Culp JT, Allen AJ: Density Functional Theory Study of the Structure of the Pillared
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water and aqueous mixtures (including electrolytes), atmospheric gases, mixtures with carbon dioxide, mixtures of molecules differing in size and/or polarity, and fluids such as water where quantum
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RAP opportunity at National Institute of Standards and Technology NIST Computational Investigations of Molecular Interface Formation from the Perspective of Cosolvent Preferential Interactions
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for evaluating AI systems, including executing evaluations in real settings (e.g., AI evaluation for critical infrastructure, field studies in high risk sectors, longitudinal continuous monitoring of AI post