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Analytical Technology for Biopharmaceutical Process and Product Characterization NIST only participates in the February and August reviews. Biopharmaceuticals are protein-based therapeutics produced
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gas phase processes occurring during thermal chemical vapor deposition and atomic layer deposition used in nanoelectronics fabrication; the examination of aerosol chemistry and aerosol chemical and
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images. However, the current limitations of desktop computers in terms of memory, disk storage and computational power, and the lack of image processing algorithms for advanced parallel and distributed
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NIST only participates in the February and August reviews. Metals-based additive manufacturing (AM) processes, or metals 3D printing, such as laser powder bed fusion and directed energy deposition
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quantum mechanical calculation of the fundamental thermodynamic and transport properties of process gases. We are particularly interested in the development of next-generation standards for measuring flow
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to this process is the understanding of phase relations, phase transitions, processing-structure, and structure-property relationships. Equally important to the modeling efforts are the experimental
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disruptive events. More research is needed to understand the planning, protective, and recovery processes of its highly interdependent physical, social, and economic systems. In particular, advancements in
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and novel data-processing tools need to be developed to embrace these new techniques and further elevate their capabilities. Instrumentation available for this research includes ion trap, Orbitrap, and
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. Furthermore, there is a need to understand how EUV resists may interface with other processing approaches such as block copolymer lithography. This project will utilize chemically sensitive scattering tools
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Description We are using innovative processing to develop novel superconducting materials with enhanced properties for quantum circuit applications. Critical elements for development of these materials