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nanocomposites containing these networks. Our objective is to develop metrologies to understand how morphology and functionalization affect the alternating current (AC) conductivity of composite materials
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methods (1). This research opportunity will build upon these efforts to launch the next step of establishing and measuring defined microbial communities. Natural microbiomes often contain 10 or more
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technologies such as neuromorphic computing and artificial intelligence. Work involves studying individual devices, building prototype circuits, and theoretically analyzing new architectures utilizing exotic
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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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RAP opportunity at National Institute of Standards and Technology NIST Nanomagnetism-Dynamics Location Physical Measurement Laboratory, Nanoscale Device Characterization Division opportunity
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density measurements for idealized polyolefins [Macromolecules?2024, 57, 5, 2329–2338 ]. Proposals will build on the prior work by exploring more complicated systems such as post-consumer resins, property
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group is working to develop the measurement science and technology to make multiplexed biomolecular measurements practical, while also working to develop the standards and measurement assurance approaches
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successful applicant will have a solid background in programming (Matlab, Python, or equivalent). Experience with any of the following lock-amplifiers, vector network analyzers, resonators is preferred
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optical microscopes to provide physical measurements (e.g. mass, size, concentration, composition) of individual nanoparticles. We are seeking candidates with backgrounds in optics, microscopy
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Nanoelectronic-Based Manipulation and Measurement Tools for Biological Applications NIST only participates in the February and August reviews. We are developing physical measurement tools and