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Rainwater Harvesting and Stormwater Research is a priority research area identified by the Arizona Governor’s Blue Ribbon Panel on Water Sustainability, which recommended that universities take the lead to identify regulatory barriers, cost and benefits, water quality issues and avenues for increasing utilization of stormwater and rainwater at the regional, community and individual property level. In an effort to address the priority research area, the University of Arizona will develop a decision support tool to be used by public utilities and agencies to evaluate suitability and cost-effectiveness of rainwater and stormwater capture at various scales for multiple benefits. Data from the City of Tucson, Arizona...
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These data represent the network-adjusted results of relative- and absolute-gravity surveys. Relative-gravity surveys were carried out using two ZLS Corporation Burris relative-gravity meters. The effect of solid Earth tides and ocean loading were removed from the data. Instrument drift was removed by evaluating gravity change during repeated measurements at one or more base stations. Absolute-gravity surveys were carried out using a Micro-g LaCoste, Inc. A-10 absolute-gravity meter. Vertical gradients between the different measuring heights of the absolute- and relative-gravity meters were measured using a relative-gravity meter and fully-adjustable tripod, and used to correlate the measurements between the two...
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This data set contains imagery from the National Agriculture Imagery Program (NAIP). The NAIP program is administered by USDA FSA and has been established to support two main FSA strategic goals centered on agricultural production. These are, increase stewardship of America's natural resources while enhancing the environment, and to ensure commodities are procured and distributed effectively and efficiently to increase food security. The NAIP program supports these goals by acquiring and providing ortho imagery that has been collected during the agricultural growing season in the U.S. The NAIP ortho imagery is tailored to meet FSA requirements and is a fundamental tool used to support FSA farm and conservation programs....
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This dataset supercedes an earlier data release and includes all previous data in addition to data from 2019. These data represent the network-adjusted results of relative- and absolute-gravity surveys. Relative-gravity surveys were carried out using a Micro-g LaCoste D-series relative-gravity meter. The effect of solid Earth tides and ocean loading were removed from the data. Instrument drift was removed by evaluating gravity change during repeated measurements at one or more base stations. Absolute-gravity surveys were carried out using a Micro-g LaCoste, Inc. A-10 absolute-gravity meter. Vertical gradients between the different measuring heights of the absolute- and relative-gravity meters were measured using...
Details of field exercises to assess the readiness of astronauts to perform geologic investigations on the lunar surface. They include landscape description, geologic mapping, mobile traverse descriptions, impact crater description, depression description, and detailed mapping.


map background search result map search result map Utility Guide to Rainwater/Stormwater Harvesting as an Adaptive Response to Climate Change Monitor Mine, Geologic Map Map of Claims from Monitor Group down to Ray Mine, T3S and T2S, R14E Monitor Mine Surface Plan and Cross Section Monitor Mine Group, Showing Unpatented Lode Mining Claims FSA 10:1 NAIP Imagery m_3211049_nw_12_1_20150530_20151022 3.75 x 3.75 minute JPEG2000 from The National Map USGS 1:62500-scale Quadrangle for Tucson, AZ 1948 USGS 1:125000-scale Quadrangle for Tucson, AZ 1905 USGS 1:125000-scale Quadrangle for Tucson, AZ 1905 USGS 1:250000-scale Quadrangle for Tucson, AZ 1959 USGS 1:250000-scale Quadrangle for Tucson, AZ 1956 USGS 1:250000-scale Quadrangle for Tucson, AZ 1956 USGS 1:250000-scale Quadrangle for Tucson, AZ 1956 USGS 1:100000-scale Quadrangle for Tucson, AZ 1994 USGS 1:24000-scale Quadrangle for Tucson, AZ 1957 USGS 1:24000-scale Quadrangle for Tucson, AZ 1996 USGS 1:250000-scale Quadrangle for Tucson, AZ 1958 Repeat microgravity data from Tucson Basin and Avra Valley, Arizona, 2016-2019 Repeat microgravity data from Tucson Basin and Avra Valley, Arizona, 2021 Apollo Science Program, Mission Profile Study FSA 10:1 NAIP Imagery m_3211049_nw_12_1_20150530_20151022 3.75 x 3.75 minute JPEG2000 from The National Map Apollo Science Program, Mission Profile Study USGS 1:24000-scale Quadrangle for Tucson, AZ 1957 USGS 1:24000-scale Quadrangle for Tucson, AZ 1996 USGS 1:62500-scale Quadrangle for Tucson, AZ 1948 USGS 1:125000-scale Quadrangle for Tucson, AZ 1905 USGS 1:125000-scale Quadrangle for Tucson, AZ 1905 Repeat microgravity data from Tucson Basin and Avra Valley, Arizona, 2016-2019 Repeat microgravity data from Tucson Basin and Avra Valley, Arizona, 2021 USGS 1:100000-scale Quadrangle for Tucson, AZ 1994 USGS 1:250000-scale Quadrangle for Tucson, AZ 1959 USGS 1:250000-scale Quadrangle for Tucson, AZ 1956 USGS 1:250000-scale Quadrangle for Tucson, AZ 1956 USGS 1:250000-scale Quadrangle for Tucson, AZ 1956 USGS 1:250000-scale Quadrangle for Tucson, AZ 1958 Utility Guide to Rainwater/Stormwater Harvesting as an Adaptive Response to Climate Change