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these measurements and models will initially be developed and validated using pure cultures and simple mixtures of microbes, the goal is to move toward consortia of increasing complexity, eventually probing
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these complex communities by developing sample preparation techniques that are compatible with NMR and mass spectrometry-based techniques. This will allow parallel multimodal analysis including proteomic
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NIST only participates in the February and August reviews. Modeling and simulation of equilibrium properties and dynamic phenomena in soft materials such as polymers, colloids, and complex fluids
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Application of Artificial Intelligence Techniques for Acquisition and Analysis of Thermophysical and Thermodynamic Property Information NIST only participates in the February and August reviews
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of measurements and simulations is increasingly used to improve the understanding of mechanical testing results and provides a means to advance the mechanical testing paradigm toward fewer, more complex tests that
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on assessing this risk and understanding mechanisms of degradation. This research opportunity addresses the complex and challenging issue of isolating and analyzing micro- and nanoplastics of diverse origin
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experiments, measured quantities of interest, and optimized experimental design. Methods that yield analytic solutions are often employed to reduce the complexity of mathematical models and can, in turn help
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commercial instruments are limited in a dynamic range of 104 ~ 105 even when combined with good sample separation. These represent a significant drawback when applied to the analysis of complex biological
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, economics, and all branches of science. Current concerns include the development and analysis of algorithms for the solution of problems of estimation, simulation and control of complex systems, and their
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technologies. Research interests include (1) development of novel approaches for the non-target screening of complex chemical systems; (2) fundamental research of HRAM-MS technologies and affiliated hyphenated