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RAP opportunity at National Institute of Standards and Technology NIST High Field NMR for Renewable Fuel Characterization Location Material Measurement Laboratory, Applied Chemicals and
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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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research in high-impact science and engineering fields that utilize vapors, liquids, and aerosols. Our experimental scientists focus on developing fundamental measurements and novel methodologies that can
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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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addition, the emerging "materials by design" paradigm places emphasis on the use the computation for the development and design of new materials. Candidates with an interest and background in computational
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. Emphasis is placed on model validation against both high-fidelity finite element simulations and experimental tests of structural subassemblies. key words Blast loading; Computational modeling; Finite
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attracted considerable attention for potential application in nanoscale devices, including beyond-CMOS electronics, quantum computers, chemical sensors, photodetectors, etc. Prospective advantages over
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RAP opportunity at National Institute of Standards and Technology NIST High-pressure Nuclear Magnetic Resonance (NMR) Spectroscopy of Intermolecular Interactions Location Material Measurement
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of structural responses for performance-based seismic engineering of tall buildings. Opportunities include the following: (1) developing improved modeling and analytical capabilities for nonlinear dynamic
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, new measurements and ways for realization of efficient/high-performance electro-optical devices integrable to photonic and electronic circuitries. We offer a collaborative environment that couples