10 development-"https:"-"https:"-"https:"-"https:"-"https:"-"https:"-"Princeton" Postdoctoral positions at NIST
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STFP Home sign in | focus RAP opportunity at National Institute of Standards and Technology NIST Development of Heterogeneous Photonic Integrated Circuits at sub-micron wavelengths Location
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Levin [email protected] 301.975.6142 Description In situ characterization of advanced ceramic sintering processes The past decade has seen the development of several novel methods that allow ceramics to
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approach to understanding microbial function and interaction and discovering new biomarkers. This suite of projects seeks to advance the microbial metabolomics infrastructure through the development of new
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-throughput calculations and the creation of various materials databases to be integrated into the NIST-JARVIS ( https://jarvis.nist.gov/ ) infrastructure. We work closely with experimental collaborators
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techniques, materials modeling (including finite element simulations, and theory), and the development of a high-speed circuit to quantify fiber alignment in composites in real time. To develop this
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. Research opportunities exist in the systematic development of advanced models for the prediction of the above physical properties in such solid solutions. We use first-principles density functional
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such assays to help accelerate research and development of gene therapies. This NIST postdoctoral research opportunity focuses on developing robust protocols and refining measurement methods in
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name email phone Bryan Michael Barnes [email protected] 301.975.3947 Description This research opportunity centers on the development of novel optical methods for nanoscale dimensional
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materials, (2) the preferred binding sites of adsorbate species in nanoporous solids and predicted experimental signals (e.g., infrared spectra), and (3) the development of DFT-based force field models
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[email protected] 301.538.9058 Description Miniaturized and integrated photonic components are critical to the development of compact and scalable quantum technologies based on trapped particles