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properties such as electron-based spectroscopies, nanometer-scale imaging with energy filtering using a photoemission electron microscope (PEEM), and other optical measurements. Research is done in close
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over time. Stem cell populations can be highly heterogeneous and can exhibit complex responses. Using quantitative imaging data on large numbers of live cells over time, we can construct potential
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phases. This research will integrate a variety of modeling tools across multiple time and length scales to predict the microstructure evolution during the AM build process and post build thermal
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confirmation of conventional fire measurements and better assessments of measurement uncertainty. Techniques such as particle image velocimetry (PIV) have been successfully demonstrated in large-scale enclosure
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RF-based techniques, inertial sensors, imaging techniques, ultrasound, altimeters, and magnetometers. Cooperative localization techniques are also important. We are interested in not only improving
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collaborations. key words Aluminum; Dual phase steel; Forming; Orientation imaging microscopy; Plasticity models; TRIP steel; X-ray diffraction; Yield loci; Yield surface; Eligibility citizenship Open to U.S
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addition, the emerging "materials by design" paradigm places emphasis on the use the computation for the development and design of new materials. Candidates with an interest and background in computational
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) to develop new imaging and metrological capabilities for studying nanoscale electronic properties. In particular, we are interested in combining time-resolved optical techniques with our microwave methods
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antimicrobial treatments on viability and pathogenicity is critical insight that will help drive the success of real-world antimicrobial technologies. General approaches may include advanced imaging modalities
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. Measurement assurance is based on a large set of spike-in controls (developed collaboratively with the External RNA Control Consortium) and experiment designs relying on titrations of complex mixtures. key