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processing mechanisms of interest include controlled heating and/or cooling, deformation, or magnetic effects to prioritize selected phase transformations during the build process. In
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for critical applications that require qualification and certification—increasingly require that computational models and in-situ monitoring of such processes be experimentally validated under highly controlled
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other NIST laboratories as well as local, state, and federal forensic laboratories will be possible. Due to the cross-disciplinary nature of this project, backgrounds in engineering, chemistry, physics
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RAP opportunity at National Institute of Standards and Technology NIST Magnetic Resonance in Industrial Applications Location Physical Measurement Laboratory, Applied Physics Division
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; Data informatics; Physics; Terahertz; Metrology; Eligibility Citizenship: Open to U.S. citizens Level: Open to Postdoctoral applicants Stipend Base Stipend Travel Allotment Supplementation $82,764.00
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RAP opportunity at National Institute of Standards and Technology NIST Microfabricated Magnetic Sensors and Novel MRI/NMR Agents and Microdevices Location Physical Measurement Laboratory
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for testing the components of these devices is to make physical contact to the devices using micro probes. This approach has three main limitations: (1) each time the probes are landed on a device, they damage
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-process densification. Complementary computational model simulation capabilities are also available. [1] J. Ilavsky, F. Zhang, R.N. Andrews, I. Kuzmenko, P.R. Jemian, L.E. Levine & A.J. Allen; J. Appl
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RAP opportunity at National Institute of Standards and Technology NIST DUV/EUV Nanoscopy for Characterization of Nanoscale Devices Location Physical Measurement Laboratory, Nanoscale Device
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outbreak of a novel E. coli strain O104:H4. However, this can be difficult using the existing platforms and software because of the constraints on sequencing (read length, depth), and informatics (e.g