152 structures-"https:"-"https:"-"https:"-"https:"-"https:"-"https:"-"https:"-"UCL" positions at NIST in United States
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of hormones in biological matrices. Hormones are essential for major developmental and reproductive processes. Because hormones are highly similar in structure and found at nanomolar concentrations
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molecules (e.g., CH4, C2H6, CO2). These materials undergo guest-induced structural transformations, offering a unique mechanism for high-density gas storage and highly selective chemical separations. Our
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shown that these structures are almost purely radiatively broadened at 9 K. We are soliciting proposals to extend this experimental method to investigate multi-exciton and charged exciton complexes. We
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surfaces take advantage of the increased electrical functionality, chemical and structural robustness, wealth of fabrication knowledge, and present a less disruptive technology compared with monolayers
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laboratory is equipped with both a conventional atom probe tomograph as well as a prototype EUV-modified atom probe tool. Furthmore, our collaborative laboratory structure provides critical in-house support
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called the Fire Dynamics Simulator (FDS) . FDS is a block structured Cartesian LES code for low-speed flow which uses a high-order cutcell-immersed boundary method for complex geometry and is specifically
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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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the “NIST-on-a-chip” program, we are designing and building chip-scale accelerometers as field-deployable SI-traceable standards. The accelerometers employ a micromechanical structure in conjunction with a
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) and cannabidiol (CBD), as well as numerous terpenes, flavonoids, and fatty acids. It is known that THC, CBD and synthetic cannabinoids with analogous structures can bind to cannabinoid receptors
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of integration. We are developing advanced electronic, thermal, and mechanical measurements to evaluate the performance, reliability, and security of advanced microelectronic structures. Experimental techniques