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energy scale for dynamic impact (Charpy) testing, which is critical to ensuring performance of structural steels. Please visit our websites at https://www.nist.gov/mml/acmd/fatigue-and-fracture-group and
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RAP opportunity at National Institute of Standards and Technology NIST Computational Modeling of Progressive Structural Failure and Collapse Location Engineering Laboratory, Materials and
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dynamics of these systems at equilibrium conditions, the time dependent or transient structures of complex soft matter materials are significantly under explored, in particular at nanometer length scale
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soft materials are sought especially for the following programmatic areas of interest: (1) Structural properties, dynamics and transport in thermoplastic, thermoset, and functional polymers; (2
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to identify and explore deformation mechanisms and establish structure-property relationships for materials subjected to dynamic mechanical and thermal loading. key words Digital image correlation; Electrical
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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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molecular dynamics simulations can be used to determine these fundamental properties and pathways. Such simulations require accurate force field models to enable molecular structure prediction and binding
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, biopharmaceuticals, and vaccines. Topics of particular interest include the effects of post-translational modifications (PTMs) on protein dynamic structure and protein-ligand interactions, structure-function
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thermodynamic, diffusion mobility, and molar volume CALPHAD-based databases with various computational tools to predict desired material properties (e.g., strength, fatigue) in structural materials. Essential
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dioxide capture, storage, and utilization. We use diffraction and neutron scattering techniques to study structures and dynamics of CO2 after absorption in order to elucidate location and dynamics of CO2 in