193 structures "https:" "https:" "https:" "https:" "https:" "https:" "University of Southampton" uni jobs at NIST
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301 975 3155 Description The project aims to develop nanoscale optical imaging microscopy using DUV and EUV light sources for accurate characterization of nanoscale structures that contributes
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crystallography and spectroscopy are fundamental and imperative in the investigation and development of condensed matter sciences. We will widely use these methods to study the crystal structures of novel materials
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measure structural changes as the agents go from their biologically active to their biologically inactive forms. As analytical methods become available, studies of the physical and chemical processes
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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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-angle x-ray and neutron scattering, and fluorescence correlation spectroscopy to understand the relationships between CART molecular structure (block ratio, charge fraction, degradability), polyanion, and
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-to illuminate the structural transformations that occur across phases. The optical characterization of biological molecules using vibrational spectroscopy supplies critical, detailed structural information
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size. interparticle separation, rod diameter, nanocontact area) has been found to vary considerably from that found in the same materials lacking that nanoscale structure. The measurements focus
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unobtainable through other means. To date, only a limited number of materials have been successfully demonstrated for use in AM and the structural properties of these materials are not well understood
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RAP opportunity at National Institute of Standards and Technology NIST Full-Scale Testing of Structural Concrete at the National Fire Research Laboratory Location Engineering Laboratory, Fire
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the field of flexible electronics. Developing an effective flexible electronic structure has its own challenges from mechanical compliance of the substrate to device performance. There is a delicate balance