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important that microbiome measurements and data be supported by solid metrology. NIST and partners are seeking to develop standards and new measurement science infrastructure to improve confidence in
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, acoustic-electric spectroscopy, and other nonlinear materials characterization techniques. We will develop on-wafer acoustic microfluidic devices. Necessary skills include finite element simulations, digital
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Description Research opportunities are available to develop and advance measurement methods required for current and future semiconductor manufacturing processes. Areas of particular interest include
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, such as blood vessels and bone, we also need to develop a platform for in situ mechanical measurements, which may be achieved by measuring deformation under controlled stress and flow. 3D printing is
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8353 Christopher L. Soles [email protected] 301.975.8087 Description To enable the use of novel materials in fiber reinforced composites, an unprecedented effort must be launched to develop
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further enriches the available data from which material behavior can be extracted. Separate work is being done to develop robust algorithms to quantitatively compare the physical and simulated experimental
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within the Quantum Measurement Division is investigating graphene metrology towards two goals: (1) to develop near-room-temperature graphene quantum Hall devices and other possible quantum electrical
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[email protected] 301.975.4133 Description NIST has led the Genome in a Bottle Consortium to develop widely-used benchmark variant calls for seven human cell lines [1]. GIAB has primarily used methods
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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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: As technologies increasingly rely on the complex interplay of vapors, liquids, and particles, the need for "metrology-grade" simulation is rapidly emerging. You will develop and apply advanced