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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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Multiscale modeling of complex electrostatic processes in heterogeneous molecular environments NIST only participates in the February and August reviews. Molecular ionization, ion pairing, transport
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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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intensities up to 109 neutrons/(cm2 sec). In addition, we make neutron fluence rate measurements for more complex reactor neutron fields and for fast neutron fields from accelerators and isotopic sources. key
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interpreting these experiments. Examples of science to be investigated with synchrotron measurement tools might include: Compositionally complex alloys, such as metallic glasses or high-entropy alloys, where
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materials related to the comprehensive measurement of inorganic, organic and particulate chemical tracers in complex chemical matrices and natural systems. This requires the complementary use of advanced
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such as complex hydrides for hydrogen-storage and battery applications, intermetallic or oxides with interesting electronic or magnetic properties, and metal organic frameworks materials for gas sorption
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morphologies, segmental dynamics, and low molar mass transport in complex soft matter. We utilize (1) spin diffusion and REDOR MAS methods for local structures, (2) field cycling NMR, separated local field
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Description This research aims to advance infrared (IR) and Raman imaging techniques for determining the molecular composition and orientation of biomaterials and other complex new materials, e.g., 3D printing