332 embedded-system-"https:"-"https:"-"https:"-"https:"-"Cardiff-University" positions at NIST
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303.497.6184 Description We are looking for an atom based high power laser intensity measurement system. This atom-based technique should be traceable to the international system of standards and have potential
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precision microelectromechanical systems (MEMS) to improve measurement accuracy and throughput in scanning probe microscopy (SPM), particularly for scanning tunneling microscopy (STM) and atomic force
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is exchanged between organisms (e.g., between virus and host cells or between bacteria) and on adapting single nanopores for novel biological and biotechnological applications. It was recently shown
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@nist.gov 301.975.5656 Description The Nanomaterials Research Group is interested in developing analytical methods to foster improved design of nanoparticle-based therapeutics. The design principles
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on sources, detectors, and timing synchronization systems that can enable entanglement distribution over metropolitan and long-haul fiber links. Beyond entanglement sources and synchronization systems, we have
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our economy, ranging from fuels to refrigerants to foodstuffs. However, while there are tens of thousands of fluids in use, some of them at the level of hundreds of millions of tonnes per year, good
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, and light-matter interactions. This research opportunity is focused on developing compact, integrated cavity optomechanical devices that push the state of the art in terms of sensitivity and accuracy
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of microelectronics systems are critical issues for the continued robust growth of the US economy. With new trends towards silicon disaggregation and heterogeneous integration it is becoming increasingly difficult
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. The established uncertainty benchmark for absolute JNT is 12 ppm at the triple point of water (273.15 K), with more recent measurements achieving statistical uncertainties of 3 ppm. For temperatures in the range
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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