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well as dynamic or reversible polymer chemistry that introduce labile sites vulnerable to catalysis and stimuli-responsive chain cleavage. Experimental methods for this opportunity include gel-permeation
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@nist.gov 301.975.4316 Description Neutron elastic and inelastic scattering methods are used to elucidate the crystal structure, magnetic structure, lattice dynamics, and spin dynamics of materials
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crystallography and spectroscopy are fundamental and imperative in the investigation and development of condensed matter sciences. We will widely use these methods to study the crystal structures of novel materials
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, Noise characteristics of thermistors: Measurement methods and results of selected device, Rev. Sci. Instr. 88, 024707 (2017). John Lehman, Andreas Steiger, Nathan Tomlin, Malcolm White, Mathias Kehrt
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Description Molecular modeling (i.e., Monte Carlo and molecular dynamics methods) are becoming computationally-accessible for large-scale simulations of various thermophysical and mechanical properties
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measurements during the build process. Material characterization includes SEM and TEM methods, lab and synchrotron X-ray diffraction, DSC, dilatometry, synchrotron X-ray and neutron residual stress measurements
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unknown, its utility as a potentially inexpensive and bio-friendly method for biomanufacturing nucleoside analog “pro-drugs” is being explored. Ongoing research focuses on determining the efficiency and
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and LC-MS/MS, GC-MS) and a state-of-the art aquaculture research center at IMET. Potential research areas of interest include the development of sensitive and selective methods for determining organic
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RAP opportunity at National Institute of Standards and Technology NIST Modeling Complex Microstructures Location Information Technology Laboratory, Applied and Computational Mathematics Division
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are developing microfluidics to measure material properties and structure. Protein, polymer and surfactant solutions and suspensions and emulsions are being characterized using computer-controlled microfluidic