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Description Laser assisted atom probe tomography offers entirely new approaches for quantitative three-dimensional chemical analysis of complex nanostructures. However, conventional atom probe tomographs
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to precisely verify circuit performance and validate model accuracy for these complex microelectronic systems, which often consist of multiple device layers stacked together to achieve higher levels
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transformations produced by metabolically active microbes. Microbial abundances and growth rates (fitness), determined using NGS, allow predictions of changes to community structure over time. While
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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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301.975.6032 Description The changes in mechanical properties that occur during the plastic deformation of metals result from the complex interaction of huge numbers of mobile and immobile (trapped) line
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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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reliability of the reported properties, and deliver the data in a well-structured form to the final industrial users. Recent advances in AI (Artificial Intelligence), specifically in NLP (Natural
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NIST only participates in the February and August reviews. Understanding the intermolecular environment surrounding complex molecules, ions, electrode surfaces, and nanomaterials is crucial
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consolidation of precursor materials into metal 3D parts and structures, enabling complex geometry and material designs. Metal Binder Jetting Additive Manufacturing (BJAM) is a sintered-based technology with
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, combined with their specific implementation method, allow for the sintering of complex shapes enabled by ceramic additive manufacturing and prevent unwanted reactions and diffusion in multi-material parts