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characterization of advanced drug products, specifically targeting therapeutic proteins, nucleic acids (RNA and DNA), and complex gene delivery systems. These next-generation therapeutics require highly specific
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the NIST Biomanufacturing Testbed and the NISTCHO/cNISTmAb model system. Projects are focused on investigating the complex interplay between mammalian cell biology and process conditions and protocols
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are developing object-oriented computational tools for the analysis of materials with complex microstructures. Starting from a digitized micrograph, the program identifies features in the image, assigns material
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of complex mixture analysis by NMR spectroscopy. We are particularly interested in the application of NMR spectroscopy to the analysis of mixtures with multiple phases. For example, high-accuracy vapor
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RAP opportunity at National Institute of Standards and Technology NIST Complex Systems and Networks: Performance, Control, and Security Location Information Technology Laboratory, Applied and
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XRD measurements mostly at NIST’s Beamline for Materials Measurements, collaborating with scientists from NIST Gaithersburg, and developing work-flow and data-analysis tools for managing and
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Development of Methods for High-Accuracy Measurements in Complex Chemical and Biological Samples NIST only participates in the February and August reviews. The Chemical Sciences Division seeks
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Reference Materials (SRMs) include several complex biological materials, especially human plasma and urine. These materials are particularly useful to distinguish between biological variability and
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shocks and stressors). This research effort relies extensively on modeling and optimization, with consideration for field data collection, and statistical and geospatial data analysis. Informed by
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NIST only participates in the February and August reviews. Microwave Microfluidics is an emerging measurement and analysis approach that can quantify thermo-physical properties of solutions within