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of microphysiological systems or organ on a chip model for viral agents. Research project emphasis is placed on determining virus growth and stimulation of an appropriate immune response that mimics what is observed in
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modeling, economic evaluation, and surveillance to enhance analytical tools. Activities will focus on gaining hands-on experience and contributing to emergency preparedness and surveillance planning
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areas. These include, but are not limited to: Developing, optimizing, and implementing multiple In Vitro lung models to evaluate the compounds that cannot be assessed using traditional animal models
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additional years, contingent upon project needs and funding availability. What are the provisions? You will receive a stipend to be determined by DCPH-A. Stipends are typically based on a participant’s
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. Along the way, you will engage in activities and research in several areas. Learning activities will focus on: The development and characterization of animal models and/or microphysiological systems
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group selection management to promote structural complexity, making them a useful test of different modeling approaches in the Forest Vegetation Simulator (FVS). Currently FVS users, which largely consist
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- Model thermal (Tg, CTE) & mechanical (modulus, strength) properties @ 10K-300K regime - For grammar extraction, train a neural network (NN) that can receive molecular graph containing nodes & edges
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surface and canopy fire behavior fuel models that can be used to update post-fire fuel estimates across the study area. ORISE Fellow Activities: Develop a field-based sampling protocol to sample surface and
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state-of-the-art experimental and computational models for solving water resource problems worldwide. CHL research and development addresses water resource and navigation challenges in a variety of
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), along with external collaborators at The Ohio State University (OSU) and Yale University. Under this agreement, NCSU will host an ORISE Research Fellow to support economic analysis and modeling