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is an epigenetic modification and plays critical roles in many biological processes, including genomic imprinting, cell-fate determination, chromatin architecture organization, and regulation of gene
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addition to these secondary processing mechanisms, improved control of the primary energy source for establishing the melt pool is needed to improve surface properties and control solidification mechanisms, and new calibration
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mechanical parts and assemblies (SolidWorks experience is preferable), experience with developing VI’s in LabVIEW, and experience with data and image processing (MATLAB experience preferable). [1] Huang, W
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and Structural Systems Division opportunity location 50.73.11.B8426 Gaithersburg, MD NIST only participates in the February and August reviews. Advisers name email phone Xiaohong Gu xiaohong.gu@nist.gov
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Description Despite their starring role in enabling the miracle of life, micro- and nanoscale biological systems have historically defied the suite of mathematical techniques that has proven "unreasonably
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properties to them, generates a finite element mesh, and performs virtual measurements. The goal is to build a computational platform that can predict the macroscopic behavior of a material from knowledge of
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RAP opportunity at National Institute of Standards and Technology NIST Advancing Health Information Technology Location Information Technology Laboratory, Software and Systems Division
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Curt Andrew Richter curt.richter@nist.gov 301.975.2082 Description Our research team is performing foundational experimental research to develop an improved understanding of the physics of the quantum
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. Prabhu vprabhu@nist.gov 301.975.3657 Description Polyelectrolytes remain a poorly understood area in polymer physical chemistry. This is partially due to the strong coupling between ion-containing polymer
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of differentiation is important to both efficient manufacturing and to product safety. Time-lapse microscopy of living cells allows the quantification of changes in dynamic activity of individual cells over time. We