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light management practices for leafy green production under protective structures. Evaluate plant materials for responses to abiotic and biotic stress (high salinity, heat, and pathogen challenges
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datasets associated with heat and other extreme weather events. Observe and collaborate on the evaluation and enhancement of extreme weather and health data visualization tools, including the HeatRisk Tool
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interpret extreme weather, environmental, and public health datasets associated with heat and other extreme weather events. Observe and collaborate on the evaluation and enhancement of extreme weather and
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to modify food plants and enhance the use and performance of agricultural materials. Research Project: You will be a part of a collaborative research team focused on the improvement of healthfulness and shelf
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-develop plant genetic materials with tolerance to abiotic stresses (salt, heat, or drought tolerance). Improve controlled environment agriculture for crop production, including plant growth, fruit
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conferences. Designing and fabricating detailed heat trapping and thermal management materials and stacks of materials, using infrared (IR) management principles (radiation physics and resonant nanoparticles
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with a focus on improving drought, heat, and salinity tolerance in different turfgrass species and understanding how turfgrass quality attributes contribute to ecosystem services. As part of
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Service (ARS), National Cold Water Marine Aquaculture Center, located in Franklin, Maine The Agricultural Research Service (ARS) is the U.S. Department of Agriculture's chief scientific in-house research