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of the constraints on sequencing (read length, depth), and informatics (e.g., database composition, algorithm biases). Proposals should address these challenges with strategies to evaluate the metagenomic
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RAP opportunity at National Institute of Standards and Technology NIST Immersive Visualization Location Information Technology Laboratory, Applied and Computational Mathematics Division
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length scales allowing for the two classes of systems to work together in new and interesting ways. We are interested in using the unique physics of fluid flow, mass transfer, heat transfer, and reaction
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(bottom-up, top-down or targeted analysis). Results provide insight into the activity of different taxa leading to a clearer functional understanding of microbiomes. Although using high-resolution fast duty
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structural techniques for probing the interface, such as SEIRAS and STM, with computational methods to develop new electrochemical models. The computational work focuses on combining DFT methods
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Salipante paul.salipante@nist.gov 301 975 2820 Description Organ on a chip aims to be a more efficient way to gather pharmacokinetic data. To more accurately monitor the performance and health of some organs
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materials for the purposes of evaluating and benchmarking adsorption instrument performance and comparison of properties of nanoporous materials. The FACT Lab is also interested in studying the adsorption
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Protein; Single-molecule; Sequencing; Proteomics; Microfluidics; Fluorescence; Biochemistry; High-throughput; Eligibility citizenship Open to U.S. citizens level Open to Postdoctoral applicants Stipend Base
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microscopy, and neutron reflectivity, are studied in this project. As a consequence of this work, very high sensitivity magnetic sensors, low energy loss transformers, room-temperature and low field magnetic
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to characterize the multitude of molecular interactions present in complex, many-component mixtures. Measurements include density, speed of sound, heat capacity, viscosity, and thermal conductivity. We