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to characterize the multitude of molecular interactions present in complex, many-component mixtures. Measurements include density, speed of sound, heat capacity, viscosity, and thermal conductivity. We
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Laboratory, Software and Systems Division opportunity location 50.77.51.C0391 Gaithersburg, MD NIST only participates in the February and August reviews. Advisers name email phone Ram D. Sriram sriram@nist.gov
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more complex for CR-PFM than quasi-static PFM. Our project is aimed at establishing CR-PFM as a technique for quantitative imaging of bias-induced strain, and for measuring frequency dependent responses
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, Materials and Structural Systems Division opportunity location 50.73.11.C1032 Gaithersburg, MD NIST only participates in the February and August reviews. Advisers name email phone Stephanie J. Watson
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technologies. Research interests include (1) development of novel approaches for the non-target screening of complex chemical systems; (2) fundamental research of HRAM-MS technologies and affiliated hyphenated
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called the Fire Dynamics Simulator (FDS) . FDS is a block structured Cartesian LES code for low-speed flow which uses a high-order cutcell-immersed boundary method for complex geometry and is specifically
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The goal of metabolomics is to provide a detailed profile of the identity and concentration of metabolites in an organism at a particular point in time. Metabolomics is a relatively new discipline that
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vibrations. A companion molecular modeling effort is absolutely critical due to the complexity and nascency of this spectroscopic region, and is implemented with the aid of a 6-node UNIX cluster and
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minimum human oversight. To build this complex system, AI techniques can be applied on various stages of the process: search and classification of papers containing relevant information, recognition and
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and other complex fluids using molecular simulations. In order to make these simulations more computationally feasible, development of coarse-grained models and new Monte Carlo or molecular dynamics