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Description

This report is a compilation of opportunities for organic innovation and deep dives on specific opportunities that may be of interest for the Organic Trade Association, or others, to pursue as distinct initiatives

Created2020-08
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Description

Conversion of natural to urban land forms imparts influence on local and regional hydroclimate via modification of the surface energy and water balance, and consideration of such effects due to rapidly expanding megapolitan areas is necessary in light of the growing global share of urban inhabitants. Based on a suite

Conversion of natural to urban land forms imparts influence on local and regional hydroclimate via modification of the surface energy and water balance, and consideration of such effects due to rapidly expanding megapolitan areas is necessary in light of the growing global share of urban inhabitants. Based on a suite of ensemble-based, multi-year simulations using the Weather Research and Forecasting (WRF) model, we quantify seasonally varying hydroclimatic impacts of the most rapidly expanding megapolitan area in the US: Arizona's Sun Corridor, centered upon the Greater Phoenix metropolitan area. Using a scenario-based urban expansion approach that accounts for the full range of Sun Corridor growth uncertainty through 2050, we show that built environment induced warming for the maximum development scenario is greatest during the summer season (regionally averaged warming over AZ exceeds 1 °C).

Warming remains significant during the spring and fall seasons (regionally averaged warming over AZ approaches 0.9 °C during both seasons), and is least during the winter season (regionally averaged warming over AZ of 0.5 °C). Impacts from a minimum expansion scenario are reduced, with regionally averaged warming ranging between 0.1 and 0.3 °C for all seasons except winter, when no warming impacts are diagnosed. Integration of highly reflective cool roofs within the built environment, increasingly recognized as a cost-effective option intended to offset the warming influence of urban complexes, reduces urban-induced warming considerably. However, impacts on the hydrologic cycle are aggravated via enhanced evapotranspiration reduction, leading to a 4% total accumulated precipitation decrease relative to the non-adaptive maximum expansion scenario. Our results highlight potentially unintended consequences of this adaptation approach within rapidly expanding megapolitan areas, and emphasize the need for undeniably sustainable development paths that account for hydrologic impacts in addition to continued focus on mean temperature effects.

ContributorsGeorgescu, Matei (Author) / Mahalov, A. (Author) / Moustaoui, M. (Author)
Created2012-09-07
DescriptionProvides initiatives that leverage the inclusion of women of color in computer science education.
Created2021
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Description

Describes the need to provide initiatives that will increase the inclusion of women of color in computer science education.

Created2021
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Description

Provides initiatives that leverage the inclusion of Latinas in computer science education.

Created2021 (year uncertain)
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Description

Investigates the inclusion of minority women in the field of computer science, and how the FUTURE Act is advancing this endeavor.

Created2021 (year uncertain)
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Description

Provides results of a survey on the attitude of Black and Latinix middle school girls toward scientists its effect on their STEM educational aspirations.

Created2021 (year uncertain)
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Description

Describes the challanges Black women face as they strive to overcome racial obstacles in the field of computer science.

Created2021 (year uncertain)
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Description

Assesses different methodologies for recruiting women of color into  science and technology industries.

Created2021 (year uncertain)
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Description

Briefly summarizes racial and gender inequities in calculus classrooms.

Created2021 (year uncertain)