170 structures-"https:" "https:" "https:" "https:" "https:" "https:" "https:" "Imperial College London" uni jobs at NIST in United States
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for AM, and for identifying suitable approaches for integrating these surrogate models into an AI/UQ framework. This capability is expected to provide a detailed understanding of the structure/property
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the structural changes of materials during indentation deformation. Recently, this methodology has been employed in in-situ studies on the phase transformation of crystalline and amorphous silicon thin films and
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Jeffrey Alan Fagan jeffrey.fagan@nist.gov 301.975.6740 Ming Zheng ming.zheng@nist.gov 301.975.8995 Description Single-wall carbon nanotube (SWCNT) species as materials display exceptional nanotube-structure
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temperature and velocity data to provide a complete picture of the physics and chemical structure of the environment within the fire enclosure. Measurements will be completed for a variety of fuel types and
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traditional thin-film devices include exceptional structural quality, high surface-to-volume ratio, bottom-up device engineering with high-density on-chip integration, and utilization of quantum size effects
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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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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
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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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constituent elements, such as H, C, and N (for a general overview see Hoogerheide, D. P., Forsyth, V. T. & Brown, K. A. 2020. Neutron scattering for structural biology. Phys Today73, 36–42). In combination with
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models. The current application domain is the relationship between the macroscopic deformation behavior of structural and mechanical materials and the corresponding microstructural deformation, internal