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in scientific research: food, innovation, and sustainability. Experience in a) liquid- and solid-phase extractive methods of plant secondary metabolites and/or cereal grain proteins; b) hands
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the range of ~2000°C in vacuum. When produced in the bulk of the material, the isotopes have to diffuse out of the target material grains and effuse throughout its interconnected pore network to escape from
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partners, and other national laboratories. Objective: Enhance THAPI: Extend and optimize the THAPI profiler (https://github.com/argonne-lcf/THAPI ) to concurrently profile AI/ML and ModSim components
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molecular dynamics simulations across multiple resolutions, most likely from the atomistic to the coarse grained level, using a variety of force fields and computational methods. Run large-scale simulations
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hydrogen production. Research activities include thin-film deposition by magnetron sputtering, surface modification through doping and grain boundary engineering, materials characterization, and evaluation
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approaches, and performing coarse-graining to obtain effective models at various scales. Special Instructions Contact Information Jason Eldridge https://www.physics.harvard.edu/ Harvard Physics Department 17
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, and research associates with: Establishment and maintenance of field experiments Disease and crop development data collection and organization Collection and processing of grain and spore samples 20
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complementary challenge: generating diverse image variations that preserve the identity and fine-grained appearance of a specific object. The variations may involve changes in background, illumination, viewpoint
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densification, grain growth, and sintering behavior through both batch and in-situ techniques. Ultimately, the goal is to improve our understanding on how sintering time, heating rate, and gas atmosphere
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) pollen grains in local Musa breeding materials as a route for triploid induction. This involves extensive screening of chemicals and other external factors for their capacity to induce 2n pollen together