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pool properties, material cooling rates, material grain structure, and the mechanical properties of bulk parts. These models attempt to resolve a variety of complex physics that occur during laser-metal
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characterize complex fluids and their interaction with other matters. However, measurements require interpretation that is aided by computational fluid dynamics (CFD) and computational fluid particle dynamics
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Description The Communications Technology Laboratories (CTL) at NIST is looking for a research assistant to work developing mm-wave components from complex oxides. This project will involve dc to 110 GHz
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out of equilibrium. Our mission is to illuminate the physical principles governing complex biological and bioinspired systems possessing one or more of these characteristics by synthesizing applied
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Semiconductor manufacturing is a complex procedure with challenging variations in machines and processes. For example, due to high-mix semiconductor manufacturing, in which hundreds of types of products
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Structure in NanoElectronic Junctions.” Journal of Physical Chemistry C 119: 6687, 2015 Goetz KP, Tsutsumi J, Pookpanratana S, et al: “Polymorphism in the organic charge-transfer complex
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identification process and enable end users to select the appropriate tools for their applications. Combining existing and new technologies is encouraged. The proposal may include a combination of benchwork and
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RAP opportunity at National Institute of Standards and Technology NIST Chemical and Physical Metrology for Micro- and Nanoplastics Location Material Measurement Laboratory, Materials Measurement
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a premier tool for probing atomic dynamics, yet extracting physical insights from experimental data remains a significant computational challenge. Traditional methods—Empirical Force Fields and
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RAP opportunity at National Institute of Standards and Technology NIST Laser-Matter Interactions in Extreme Ultraviolet Atom Probe Tomography Location Physical Measurement Laboratory, Applied