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MiamiOH OARS

Decadal and Regional Climate Prediction using Earth System Models - 0 views

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    The consequences of climate variability and change are becoming more immediate and profound than previously anticipated. Over recent decades, the world has witnessed the onset of prolonged droughts on several continents, increased frequency of floods, loss of agricultural and forest productivity, degraded ocean and permafrost ecosystems, global sea level rise and the rapid retreat of ice sheets and glaciers, loss of arctic sea ice, and changes in ocean currents. These important impacts highlight that climate variability and change can have significant effects on decadal and shorter time scales, with significant consequences for plant, animal, human, and physical systems. The EaSM funding opportunity enables interagency cooperation on one of the most pressing problems of the millennium: climate change and??how it is likely to affect our world. It allows the partner agencies -- National Science Foundation (NSF) and??U.S. Department of Agriculture (USDA) -- to combine resources to identify and fund the most meritorious and highest-impact projects that support their respective missions, while??avoiding duplication of effort and fostering collaboration between agencies and the investigators they support.This interdisciplinary scientific challenge calls for the development and application of next-generation Earth System Models that include coupled and interactive representations of such??components as ocean and atmospheric currents, agricultural working lands and forests,?? biogeochemistry, atmospheric chemistry,?? the water cycle and land ice.?? This solicitation seeks to attract scientists from the disciplines of geosciences, agricultural sciences, mathematics and statistics. Successful proposals will develop intellectual excitement in the participating disciplinary communities and engage diverse interdisciplinary teams with sufficient breadth to achieve the scientific objectives. 
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Great Lakes Restoration Initiative 2016 RFA | Great Lakes Funding | US EPA - 0 views

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    EPA anticipates funding projects in the following categories: -Great Lakes Taxonomy and Barcodes to Support Early Detection Monitoring (EPA-R5-GL2016-TAG) -Invasive Species Control (EPA-R5-GL2016-ISC) -Foundations for Invasive Species Collaborations (EPA-R5-GL2016-FFC) -Phosphorus Risk Reduction Pilots in Western Lake Erie Agricultural Watersheds (EPA-R5-GL2016-PRR) -Agricultural Watershed Management Implementation (EPA-R5-GL2016-AWM) -Urban Watershed Management Implementation (EPA-R5-GL2016-UWM) -Agricultural Incentive Program Effectiveness (EPA-R5-GL2016-IPE)
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Plant-Biotic Interactions (nsf16551) | NSF - National Science Foundation - 0 views

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    The Plant-Biotic Interactions (PBI) program supports research on the processes that mediate beneficial and antagonistic interactions between plants and their viral, bacterial, oomycete, fungal, plant, and invertebrate symbionts, pathogens and pests. This joint NSF-NIFA program supports projects focused on current and emerging model and non-model systems, and agriculturally relevant plants. The program's scope extends from fundamental mechanisms to translational efforts, with the latter seeking to put into agricultural practice insights gained from basic research on the mechanisms that govern plant-biotic interactions. Projects must be strongly justified in terms of fundamental biological processes and/or relevance to agriculture and may be purely fundamental or applied, or include aspects of both perspectives. All types of symbiosis are appropriate, including commensalism, mutualism, parasitism, and host-pathogen interactions. Research may focus on the biology of the plant host, its pathogens, pests or symbionts, interactions among these, or on the function of plant-associated microbiomes.
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Plant Biotic Interactions (nsf17551) | NSF - National Science Foundation - 0 views

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    The Plant Biotic Interactions (PBI) program supports research on the processes that mediate beneficial and antagonistic interactions between plants and their viral, bacterial, oomycete, fungal, plant, and invertebrate symbionts, pathogens and pests. This joint NSF-NIFA program supports projects focused on current and emerging model and non-model systems, and agriculturally relevant plants. The program's scope extends from fundamental mechanisms to translational efforts, with the latter seeking to put into agricultural practice insights gained from basic research on the mechanisms that govern plant biotic interactions. Projects must be strongly justified in terms of fundamental biological processes and/or relevance to agriculture and may be purely fundamental or applied, or include aspects of both perspectives. All types of symbiosis are appropriate, including commensalism, mutualism, parasitism, and host-pathogen interactions. Research may focus on the biology of the plant host, its pathogens, pests or symbionts, interactions among these, or on the function of plant-associated microbiomes. The program welcomes proposals on the dynamics of initiation, transmission, maintenance and outcome of these complex associations, including studies of metabolic interactions, immune recognition and signaling, host-symbiont regulation, reciprocal responses among interacting species and mechanisms associated with self/non-self recognition such as those in pollen-pistil interactions.
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NRCS Conservation Innovation Grants (CIG) - 0 views

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    The purpose of CIG is to stimulate the development and adoption of innovative conservation approaches and technologies in conjunction with agricultural production. CIG projects are expected to lead to the transfer of conservation technologies, management systems, and innovative approaches (such as market-based systems) to agricultural producers, into NRCS technical manuals and guides, or to the private sector. CIG generally funds pilot projects, field demonstrations, and on-farm conservation research. On-farm conservation research is defined as an investigation conducted to answer a specific applied conservation question using a statistically valid design while employing farm-scale equipment on farms, ranches or private forest lands.
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Signals in the Soil - 0 views

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    The National Science Foundation (NSF) Directorates for Engineering (ENG) and Geosciences (GEO), the Divisions of Integrative Organismal Systems (IOS) and Environmental Biology (DEB), in the Directorate for Biological Sciences (BIO), the Division of Computer and Network Systems in the Directorate Computer and Information Science and Engineering (CISE/CNS), and the Division of Chemistry (CHE) in the Directorate for Mathematical and Physical Sciences, in collaboration with the US Department of Agriculture National Institute of Food and Agriculture (USDA NIFA) encourage convergent research that transforms existing capabilities in understanding dynamic soil processes, including soil formation, through advances in sensor systems and modeling. The Signals in the Soil (SitS) program fosters collaboration among the two partner agencies and the researchers they support by combining resources and funding for the most innovative and high-impact projects that address their respective missions. To make transformative advances in our understanding of soils, multiple disciplines must converge to produce environmentally-benign novel sensing systems with multiple modalities that can adapt to different environments and collect and transmit data for a wide range of biological, chemical, and physical parameters. Effective integration of sensor data will be key for achieving a better understanding of signaling interactions among plants, animals, microbes, the soil matrix, and aqueous and gaseous components. New sensor networks have the potential to inform models in novel ways, to radically change how data is obtained from various natural and managed (both urban and rural) ecosystems, and to better inform the communities that directly rely on soils for sustenance and livelihood.
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Innovations at the Nexus of Food, Energy and Water Systems (INFEWS) (nsf17530) | NSF - ... - 0 views

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    This initiative enables interagency cooperation on one of the most pressing problems of the millennium - understanding interactions across the FEW nexus - how it is likely to affect our world, and how we can proactively plan for its consequences. It allows the partner agencies - National Science Foundation (NSF) and the United States Department of Agriculture National Institute of Food and Agriculture (USDA/NIFA) and others - to combine resources to identify and fund the most meritorious and highest-impact projects that support their respective missions, while eliminating duplication of effort and fostering collaboration between agencies and the investigators they support.
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Signals in the Soil (SitS) (nsf20548) | NSF - National Science Foundation - 0 views

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    The National Science Foundation (NSF) Directorates for Engineering (ENG) and Geosciences (GEO), the Divisions of Integrative Organismal Systems (IOS) and Environmental Biology (DEB), in the Directorate for Biological Sciences (BIO), the Division of Computer and Network Systems in the Directorate Computer and Information Science and Engineering (CISE/CNS), and the Division of Chemistry (CHE) in the Directorate for Mathematical and Physical Sciences, in collaboration with the US Department of Agriculture National Institute of Food and Agriculture (USDA NIFA) encourage convergent research that transforms existing capabilities in understanding dynamic soil processes, including soil formation, through advances in sensor systems and modeling. The Signals in the Soil (SitS) program fosters collaboration among the two partner agencies and the researchers they support by combining resources and funding for the most innovative and high-impact projects that address their respective missions. To make transformative advances in our understanding of soils, multiple disciplines must converge to produce environmentally-benign novel sensing systems with multiple modalities that can adapt to different environments and collect and transmit data for a wide range of biological, chemical, and physical parameters. Effective integration of sensor data will be key for achieving a better understanding of signaling interactions among plants, animals, microbes, the soil matrix, and aqueous and gaseous components. New sensor networks have the potential to inform models in novel ways, to radically change how data is obtained from various natural and managed (both urban and rural) ecosystems, and to better inform the communities that directly rely on soils for sustenance and livelihood.
MiamiOH OARS

nsf.gov - Funding - Decadal and Regional Climate Prediction using Earth System Models -... - 0 views

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    The EaSM funding opportunity enables interagency cooperation on one of the most pressing problems of the millennium: climate change and how it is likely to affect our world. It allows the partner agencies -- National Science Foundation (NSF) and U.S. Department of Agriculture (USDA) -- to combine resources to identify and fund the most meritorious and highest-impact projects that support their respective missions, while avoiding duplication of effort and fostering collaboration between agencies and the investigators they support.
MiamiOH OARS

US NSF - Dear Colleague Letter: Belmont Forum - FACCE-JPI Multilateral International Op... - 0 views

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    The Directorate for Geosciences announces a new Multilateral Research Funding Initiative between the Belmont Forum1 and Joint Programming Initiative on Agriculture, Food Security and Climate Change (FACCE-JPI)2. This partnership will provide international collaborative research opportunities that address the Belmont Challenge: "To deliver knowledge needed for action to mitigate and adapt to detrimental environmental change and extreme hazardous events". This call of the International Opportunities Fund will focus on addressing issues "Food Security and Land Use Change that are best addressed through a coupled interdisciplinary and multinational approach. The Belmont Forum and FACCE-JPI will support on a competitive basis, collaborative, research projects co-designed by teams of researchers from at least three participating countries. These interdisciplinary teams will bring together natural scientists, social/economic scientists and research users, such as policy makers, regulators, NGOs and industry.  Proposals will be jointly reviewed by the participating funding organizations and successful projects are expected to demonstrate added value through multilateral collaboration. Support for U.S.-based researchers will be provided through awards made by the National Science Foundation.
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Middle Rio Grande Native Water Leasing and Habitat Restoration Pilot Program - 0 views

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    This Cooperative Agreement is a 5-year project for development and implementation of a Native Water Leasing Pilot Program for the Middle Rio Grande (MRG) to be developed and implemented jointly by the National Fish and Wildlife Foundation (NFWF) and the Bureau of Reclamation (Reclamation) in coordination with the Middle Rio Grande Conservancy District (MRGCD). Water acquired under the Program will be used to support implementation of the December 2016 Final Biological Opinion for Bureau of Reclamation, Bureau of Indian Affairs, and Non-Federal Water Management and Maintenance Activities on the Middle Rio Grande, New Mexico (2016 BiOp). The primary focus of the Cooperative Agreement is to develop and implement the cooperative pilot Program with MRGCD and willing sellers over a 5-year implementation period to acquire water for environmental use in the MRG. Through pilot implementation, the Program will set the stage for expanded native water leasing and other voluntary measures at scale as win-win solutions for the river, local communities, agricultural producers, and MRGCD over the long term. Further, it provides a key component of a large-scale long-term opportunity to combine instream water leasing with the restoration of riparian and upper watershed habitats along with other initiatives to advance landscape-scale restoration in the MRG. Areas where collaboration with other agencies and partner organizations will broaden the scope of the effort, leverage additional funding, and increase the prospects for long-term success will be identified throughout the effort.
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The Molly K. Macauley Award for Research Innovation and Advanced Analytics for Policy |... - 0 views

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    We are seeking proposals for new research that will support and enhance the activities of the Consortium for the Valuation of Applications Benefits Linked to Earth Science (VALUABLES), a new consortium at RFF made possible through a partnership with the National Aeronautics and Space Administration (NASA). VALUABLES is focused on advancing innovative uses of existing methods and developing new techniques for valuing the information provided by Earth observations, especially those derived from satellites and aircraft. Any area in which Earth observations play a role may be addressed, including applications relating to human health, air quality, water resources, ecosystem services, natural disasters, food security and agriculture, wildland fires, energy, urban development, and transportation and infrastructure. However, the use of remotely sensed data must be a key component of the analysis. In addition, we especially welcome proposals that focus on evaluating the socioeconomic impacts of applications of Earth observations for solving pressing societal problems and that quantify, in monetary terms, the value of Earth observations in specific applications. In so doing, proposals should clearly describe how information from Earth observations makes improvements to decision making and the value of those improvements. Applicants may propose to quantify the private and/or social benefits of applications of Earth observations, including nonmarket benefits. The Macauley Award is open to researchers at US-based universities and nonprofit research institutions. Interdisciplinary research teams are preferred, and teams that involve both economists and Earth scientists are particularly encouraged.
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nsf.gov - Funding - Integrated NSF Support Promoting Interdisciplinary Research and Edu... - 0 views

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    The INSPIRE awards program was established to address some of the most complicated and pressing scientific problems that lie at the intersection of traditional disciplines.  It is intended to encourage investigators to submit bold, exceptional proposals that some may consider to be at a disadvantage in a standard NSF review process; it is not intended for proposals that are more appropriate for existing award mechanisms.
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Development of eDNA Techniques to Detect the Endangered Hine's Emerald Dragonfly (Somat... - 0 views

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    The purpose of this project is to yield protocols for the presence/absence eDNA detection of the S. hineana and C. diogenes under a range of environmental conditions. It will provide the information critical to evaluating the probability of false negatives or positives, and the understanding the general role that eDNA detection will play in conserving this endangered insect.
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Notice of Intent: U.S. Geological Survey_ Research and Data Collection - 0 views

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    U.S. Geological Survey's (USGS) National Climate Change and Wildlife Science Center (NCCWSC) requests a three year cooperative agreement for a project titled: "Assessing the impact of future climate on Hawaii's aquatic ecosystems." NCCWSC synthesizes and integrates climate change impact data and develops tools that the Department of Interior's managers and partners can use when managing the Department's land, water, fish and wildlife, and cultural heritage resources.
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NSF revised proposal due date listing - 0 views

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    The following programs have due dates that fall between October 1 - 25, 2013, and these dates are being revised due to the Federal  government shutdown. These revised dates apply whether the proposal is being submitted via the NSF FastLane System or  Grants.gov. Due to compressed proposal deadlines resulting from the shutdown, proposers are advised that they may experience a  delay when contacting IT Help Central with technical support questions. Frequently asked questions regarding these date changes  are available on the Resumption of Operations page on the NSF website at: http://www.nsf.gov/bfa/dias/policy/postshutdown.jsp. 
MiamiOH OARS

Underground Agricultural Waste Management Tank Design - 0 views

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    The overarching goal of this cooperative effort is to maximize the application of NRCS program funding to address Rhode Island's resource concerns and improve watershed health and ecology by implementing best animal waste management practices. Competition for this project is intended to provide the best value for government and citizens; promote innovation opportunities for accomplishing agency goals; create more partnershipopportunities; and balance workload demands.
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Landscape Change Detection with National Inventory and Monitoring Networks in support o... - 0 views

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    he objectives of this Agreement are to further development of change detection research using an existing methodology developed at Oregon State University by Robert Kennedy termed LandTrendr. The two networks both utilize this approach as part of their respective long-term monitoring programs and rely on its development as technology changes. In addition to LandTrendr, OSU has also developed a companion stand-alone program called TimeSync which is crucial during the validation of the LandTrendr-delineated disturbances. This tool also needs to be upgraded to be compatible with current Windows operating systems. This agreement would allow the I&M networks to work collaboratively with OSU to ensure I&M networks receive the specific tools they need to continue their respective long-term monitoring programs without interruption. Oregon State University will also facilitate easier use of LandTrendr for the public and other researchers because this service is being moved to cloud computing which will greatly increase compute speed, decrease the amount of data storage necessary at the network offices, and remove the need for high level computing within the office. STATEMENT OF WORK RECIPIENT AGREES TO: 1. Provide computer code on running LandTrendr through Google Earth Engine 2. Provide documented workflow on Google Earth Engine 3. Provide computer code to process output rasters of changes to polygons of change 4. Provide updated version of TimeSync compatible with Windows 10 5. Provide documented workflow on installing and running TimeSync
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