372 embedded-system "https:" "https:" "https:" "https:" "Kiel University" positions at NIST
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; narrow, symmetric peaks and flat baselines are readily obtained for most samples; signal averaging can be used to optimize signal-to-noise ratios; a wide range of molecular masses is accessible; and the
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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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reviews. Advisers name email phone Wyatt Neil Vreeland wyatt.vreeland@nist.gov 202 550 7183 Description Microfluidic systems and many biomimetic self-assembled particles have equivalent characteristic
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efficient. As part of the cryogenic detector development effort, NIST also develops the requisite cryogenic systems, which include both cryocoolers and cryostats. Relevant cooling technologies include pulse
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disruptive events. More research is needed to understand the planning, protective, and recovery processes of its highly interdependent physical, social, and economic systems. In particular, advancements in
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systems, such as cells, engineered to sense and respond in programmed ways. Importantly, building these systems both requires and advances meaningful quantitation of the effects of environmental context and
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of this research is to develop new measurement capabilities for nuclear analytical techniques associated with the measurement of induced gamma ray emissions during thermal and cold neutron beam irradiation
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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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, requiring a variety of phenomena to be modeled. The cross-cutting phenomenon is unimolecular reaction kinetics; the branching among competing reactions is what determines relative peak intensities in a mass
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a variety of nanoscale materials systems for use in photonic quantum information systems. Examples of materials of current interest include III-V semiconductors (InAs quantum dots, ErAs nanoparticles