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certainly impact the design of inhibitors towards ERK1/2. We have only scratched the surface of this important problem, and our discoveries to date now set the stage for deeper examination. Needed are further
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. Measurement assurance is based on a large set of spike-in controls (developed collaboratively with the External RNA Control Consortium) and experiment designs relying on titrations of complex mixtures. key
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apparent diffusion coefficient, fractional anisotropy, and to generate accurate temperature maps by use of endogenous or exogenous reporters in vivo and in vitro. We plan to develop application-specific
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: current, voltage, and resistance. We design, fabricate, and carefully characterize QAHE devices based on stacks of two-dimensional materials or magnetic topological insulators to develop the fundamental
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aptamer conformation changes. Method development efforts should focus on the incorporation of a robust and optimized experimental design aimed at assessing the sources of variability, repeatability, and
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micro-videography, radiometry, and other thermo-fluid non-contact—and contact—measurements [1, 2]. Desired qualifications for this postdoctoral position include experimental research experience, design of
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on a collaboration with experts across multiple Laboratories at NIST involving detector-response modelling, next-generation TES sensor design, and quantitative sample-preparation methods. key words
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characterization, microstructural analysis, modeling, and/or data science to reach out and apply, as a variety of perspectives will be invaluable in advancing our understanding of material behavior and design. We
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, and micro-pulse LIDAR. CANDLE (Calibration using an Artificial Star with NIST-traceable Distribution of Luminous Energy) is a NASA-funded project to design, build, and test a precision SI-traceable
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extracellular matrix and other agents can influence differentiation. Research challenges could include creating iPSC lines with reporter constructs, designing live cell imaging experiments to assess cell response