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NSPIRES - Solicitations Summary - 0 views

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    For this opportunity, the objective of O2R is broadly defined as the joint pursuit of improvements of operational capabilities and advancements in related fundamental research. NASA's role is to implement and support a national research program to understand the Sun and its interactions with Earth and the Solar System to advance space weather modeling and prediction capabilities applicable to space weather forecasting; develop and operate space-weather-related research missions, instrument capabilities, and models; and support the transition of space weather models and technology from research to operations and from operations to research. Proposers interested in this program element are encouraged to see the overview of the Heliophysics Research Program in B.1 of this ROSES NRA. NOAA's role is to provide timely and accurate operational space weather forecasts, watches, warnings, alerts, and real-time space weather monitoring for the government, civilian, and commercial sectors, exclusive of the responsibilities of the Secretary of Defense; and to ensure the continuous improvement of operational space weather services, utilizing partnerships, as appropriate, with the research community, including academia and the private sector, and relevant agencies to develop, validate, test, and transition space weather observation platforms and models from research to operations and from operations to research. For this opportunity, NASA and NOAA have identified the following focus area for research and development to advance specification and/or forecast models of energetic particles and plasma in Earth's magnetosphere:
MiamiOH OARS

Climate and Large-Scale Dynamics - 0 views

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    The goals of the Program are to: (i) advance knowledge about the processes that force and regulate the atmosphere’s synoptic and planetary circulation, weather and climate, and (ii) sustain the pool of human resources required for excellence in synoptic and global atmospheric dynamics and climate research. Research topics include theoretical, observational and modeling studies of the general circulation of the stratosphere and troposphere; synoptic scale weather phenomena; processes that govern climate; the causes of climate variability and change; methods to predict climate variations; extended weather and climate predictability; development and testing of parameterization of physical processes; numerical methods for use in large-scale weather and climate models; the assembly and analysis of instrumental and/or modeled weather and climate data; data assimilation studies; development and use of climate models to diagnose and simulate climate and its variations and change. Some Climate and Large Scale Dynamics (CLD) proposals address multidisciplinary problems and are often co-reviewed with other NSF programs, some of which, unlike CLD, use panels in addition to mail reviewers, and thus have target dates or deadlines. Proposed research that spans in substantive ways topics appropriate to programs in other divisions at NSF, e.g., ocean sciences, ecological sciences, hydrological sciences, geography and regional sciences, applied math and statistics, etc., must be submitted at times consistent with target dates or deadlines established by those programs. If it's not clear whether your proposed research is appropriate for co-review, please contact CLD staff.
MiamiOH OARS

Climate and Large-Scale Dynamics - 0 views

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    The goals of the Program are to: (i) advance knowledge about the processes that force and regulate the atmosphere’s synoptic and planetary circulation, weather and climate, and (ii) sustain the pool of human resources required for excellence in synoptic and global atmospheric dynamics and climate research.Research topics include theoretical, observational and modeling studies of the general circulation of the stratosphere and troposphere; synoptic scale weather phenomena; processes that govern climate; the causes of climate variability and change; methods to predict climate variations; extended weather and climate predictability; development and testing of parameterization of physical processes; numerical methods for use in large-scale weather and climate models; the assembly and analysis of instrumental and/or modeled weather and climate data; data assimilation studies; development and use of climate models to diagnose and simulate climate and its variations and change.Some Climate and Large Scale Dynamics (CLD) proposals address multidisciplinary problems and are often co-reviewed with other NSF programs, some of which, unlike CLD, use panels in addition to mail reviewers, and thus have target dates or deadlines. Proposed research that spans in substantive ways topics appropriate to programs in other divisions at NSF, e.g., ocean sciences, ecological sciences, hydrological sciences, geography and regional sciences, applied math and statistics, etc., must be submitted at times consistent with target dates or deadlines established by those programs. If it's not clear whether your proposed research is appropriate for co-review, please contact CLD staff (listed above) or the potential co-reviewing program staff (including but not limited to)Eric Itsweire (Physical Oceanography), eitsweir@nsf.govL. Douglas James (Hydrological Sciences), ldjames@nsf.govThomas Baerwald (Geography and Regional Sciences), tbaerwal@nsf.govTom Russell (Applied and Computational Math),
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Weather Program Office Research Programs - 0 views

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    NOAA's Weather Program Office (WPO; formerly OWAQ, the Office of Weather and Air Quality) is soliciting proposals for weather, air quality, and earth-system modeling and observations research reflecting multiple science objectives spanning time scales from hours to seasons, and from weather and water observations and earth system modeling to social, and behavioral, and economic science. There will be three grant competitions from this notification valued at approximately $7,750,000 as follows: 1) Joint Technology Transfer Initiative (JTTI), 2) Observations, and 3) Social, Behavioral, and Economic Sciences (SBES).
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Management and Operation of the National Center for Atmospheric Research (NCAR) (nsf161... - 0 views

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    In collaboration with the university science community, NCAR scientists focus on fundamental research aimed at improving our ability to predict meteorological, air quality and space weather hazards and increasing our understanding of the variability in and changes to the Earth's climate system at regional and global scales. These research themes are enabled by NCAR-operated facilities such as two highly modified aircraft (a C-130Q Hercules and a Gulfstream-V); a petascale supercomputing center in Cheyenne, Wyoming; and state-of-the-art community models, including the Community Earth System Model (CESM), the Weather Research and Forecasting Model (WRF) and the Whole Atmosphere Community Climate Model (WACCM). Partnerships with researchers in complementary fields, such as hydrology, cryospheric science, oceanography, terrestrial biology, public health and social sciences, to name a few, broaden NCAR's activities beyond the traditional atmospheric and geospace sciences. Details about NCAR's research activities can be found on the website at ncar.ucar.edu and in NCAR's current strategic plan.
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    In collaboration with the university science community, NCAR scientists focus on fundamental research aimed at improving our ability to predict meteorological, air quality and space weather hazards and increasing our understanding of the variability in and changes to the Earth's climate system at regional and global scales. These research themes are enabled by NCAR-operated facilities such as two highly modified aircraft (a C-130Q Hercules and a Gulfstream-V); a petascale supercomputing center in Cheyenne, Wyoming; and state-of-the-art community models, including the Community Earth System Model (CESM), the Weather Research and Forecasting Model (WRF) and the Whole Atmosphere Community Climate Model (WACCM). Partnerships with researchers in complementary fields, such as hydrology, cryospheric science, oceanography, terrestrial biology, public health and social sciences, to name a few, broaden NCAR's activities beyond the traditional atmospheric and geospace sciences. Details about NCAR's research activities can be found on the website at ncar.ucar.edu and in NCAR's current strategic plan.
MiamiOH OARS

FY 2016 Joint Technology Transfer Initiative - 0 views

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    Through the U.S. Weather Research Program (USWRP), OAR's Office of Weather and Air Quality (OWAQ) is soliciting proposals to conduct research and development activities related to advancing the storm-scale modeling and Integrated Water Prediction over the coming 1 to 2 years.
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    Through the U.S. Weather Research Program (USWRP), OAR's Office of Weather and Air Quality (OWAQ) is soliciting proposals to conduct research and development activities related to advancing the storm-scale modeling and Integrated Water Prediction over the coming 1 to 2 years.
MiamiOH OARS

Next Generation Software for Data-driven Models of Space Weather with Quantified Uncert... - 0 views

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    This solicitation addresses the overlapping objectives of the National Space Weather Strategy and Action Plan (NSW-SAP) and the National Strategic Computing Initiative (NSCI) Update through a pilot program. The goal of this pilot program is to transform development of predictive modeling of the coupled evolution of the magnetized solar atmosphere and the solar wind, and their interaction with the Earth's magnetosphere and upper atmosphere. This requires advancing our understanding of the necessary and sufficient requirements of model complexity, computational performance, and observational inputs. The pilot program is also expected to directly contribute to the long-term goal of creating space weather models with quantifiable predictive capability.
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FY 2018 Joint Technology Transfer Initiative - 0 views

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    Through the Joint Technology Transfer Initiative (JTTI) Program, OAR's Office of Weather and Air Quality (OWAQ) is soliciting proposals to conduct research and development activities related to advancing data assimilation of new observations and data assimilation techniques for convective-scale weather prediction, improving water prediction capabilities through enhancements to National Water Model, improving daily to subseasonal scale prediction of Arctic sea ice, and communicating forecast uncertainty.
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Competition for a Cooperative Institute for Modeling the Earth System - 0 views

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    The NOAA Office of Oceanic and Atmospheric Research (OAR) invites applications for the establishment of a Cooperative Institute (CI) for Modeling the Earth System. This new cooperative institute supports the Office of Oceanic and Atmospheric Research's Geophysical Fluid Dynamics Laboratory (GFDL) as it works toward advancing NOAA's ability to understand and predict variations and changes in weather, climate, oceans and coastal systems on a spectrum of timescales, through advanced numerical modeling of the Earth System's physical, dynamical, chemical, biogeochemical, and ecological processes. The scope of the new Cooperative Institute incorporates explicitly the consideration of the unforced variability of the Earth System, natural and anthropogenic forcings that include regional contributions and feedbacks, which together govern the response and temporal evolution of the Earth system (IPCC, 2001, 2013). Current state-of-the-art coupled climate models used to forecast weather-to-climate conditions particularly from sub-seasonal to seasonal to inter-annual to decadal and longer timescales must be improved dramatically. Fundamental research is needed to improve the representation of many processes and interactions of importance if these models are to fulfill their promise of advancing the scientific understanding and prediction and addressing NOAA's goals.
MiamiOH OARS

View Opportunity | GRANTS.GOV - 0 views

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    NOAA's National Weather Service (NWS) Office of Science and Technology Integration (OSTI) is soliciting research proposals to support NOAA's development of the community-based, coupled, comprehensive earth modeling system, the Unified Forecast System (UFS). The UFS is designed to provide more accurate forecast guidance through operational numerical weather prediction applications. These applications span local and global domains, and predictive time scales from sub-hourly to seasonal. This solicitation favors projects at specific stages of maturity as signified by their readiness level as described in Section 1.A. There are three competitions from this notification valued at approximately $2,800,000 for the first year of multi-year (2-year) projects that will advance development of the UFS: 1) Next Generation Global Prediction System (NGGPS); 2) Weeks 3-4 Program; and 3) Hurricane Forecast Improvement Program (HFIP).
MiamiOH OARS

Collaborative Science, Technology, and Applied Research (CSTAR) Program - 0 views

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    The CSTAR Program represents a NWS effort to create a cost-effective transition from basic and applied research to operations and services through collaborative research between operational forecasters and academic institutions which have expertise in the environmental sciences. These activities will engage researchers and students in applied research of interest to the operational meteorological community and will improve the accuracy of forecasts and warnings of environmental hazards by applying scientific knowledge and information to operational products and services. The CSTAR Program addresses NOAA's Mission Goal 3: Weather Ready Nation. NOAA's Oceanic and Atmospheric Research (OAR) office is announcing a separate federal funding opportunity that is a companion to this funding opportunity. Please search for funding opportunity number NOAA-OAR-OWAQ-2017-2005004 in grants.gov. The OAR funding opportunity supports projects that require NOAA testbed collaborations and demonstrations, while this funding opportunity does not have this requirement.
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    The CSTAR Program represents a NWS effort to create a cost-effective transition from basic and applied research to operations and services through collaborative research between operational forecasters and academic institutions which have expertise in the environmental sciences. These activities will engage researchers and students in applied research of interest to the operational meteorological community and will improve the accuracy of forecasts and warnings of environmental hazards by applying scientific knowledge and information to operational products and services. The CSTAR Program addresses NOAA's Mission Goal 3: Weather Ready Nation. NOAA's Oceanic and Atmospheric Research (OAR) office is announcing a separate federal funding opportunity that is a companion to this funding opportunity. Please search for funding opportunity number NOAA-OAR-OWAQ-2017-2005004 in grants.gov. The OAR funding opportunity supports projects that require NOAA testbed collaborations and demonstrations, while this funding opportunity does not have this requirement.
MiamiOH OARS

FY 2016 Verification of the Origins of Rotation in Tornadoes Experiment in the Southeas... - 0 views

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    This research funding opportunity is being jointly issued by the NOAA OAR Office and Weather and Air Quality (OWAQ) and the National Severe Storms Laboratory (NSSL). It seeks to obtain new knowledge of the meteorological and infrasound aspects of tornadoes in the southeastern U.S. and the social and behavioral aspects of the public response to tornado forecasts and tornado events. This new knowledge will improve our ability to understand, forecast and warn the public of tornadoes and elicit appropriate responses to mitigate damage, injuries, and loss of life.
MiamiOH OARS

FY 2017 Joint Technology Transfer Initiative - 0 views

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    Through the Joint Technology Transfer Initiative (JTTI) Program, OAR's Office of Weather and Air Quality (OWAQ) is soliciting proposals to conduct research and development activities related to advancing the convective scale modeling and water prediction over the coming 1 to 2 years.
MiamiOH OARS

FY 2017 Verification of the Origins of Rotation in Tornadoes Experiment in the Southeas... - 0 views

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    This research funding opportunity is being jointly issued by the NOAA OAR Office and Weather and Air Quality (OWAQ) and the National Severe Storms Laboratory (NSSL). It seeks to obtain new knowledge of the meteorological and infrasound aspects of tornadoes in the southeastern United States (U.S.) and the social and behavioral aspects of the public response to tornado forecasts and tornado events. This new knowledge will improve our ability to understand, forecast and warn the public of tornadoes and elicit appropriate responses to mitigate damage, injuries, and loss of life.
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FA-FON0015-0001 Joint Fire Science Program (JFSP) Primary Announcement (7 Statements) - 0 views

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    Joint Fire Science Program (JFSP) Primary Announcement (7 Task Statements) 1. Fuels Mapping for Emissions Inventories 2. Smoke Hazard Warning Signs 3. Implications of Changing Fuels and Fire Regimes 4. Fire Ember Production 5. Fire Effects on Soil Heating 6. Fire Weather and Decision Making 7. Re-measurement-Long Term Effects on Vegetation/Fuels. See Section IV of announcement for proposal submission requirements.
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Solar Terrestrial - 0 views

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    Supports research on the processes by which energy in diverse forms is generated by the Sun, transported to the Earth, and ultimately deposited in the terrestrial environment. Major topics include space weather impacts, helioseismology, the solar dynamo, the solar activity cycle, magnetic flux emergence, solar flares and eruptive activity, coronal mass ejections, solar wind heating, solar energetic particles, interactions with cosmic rays, and solar wind/magnetosphere boundary problems.
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Home Depot Foundation Community Impact Program - 0 views

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    The Home Depot Foundation is accepting applications from nonprofit organizations using volunteers to address the physical needs of their communities. Through its Community Impact Grants program, the foundation will award grants of up to $5,000 (in the form of Home Depot gift cards that can be used to purchase tools, materials, and services) for projects aimed at repairing, modifying, weatherizing, or otherwise improving low-income and/or transitional housing or community facilities. Priority will be given to programs that use volunteers to serve veterans with home-improvement needs. Only IRS-registered 501(c)(3) nonprofit organizations and tax-exempt public service agencies (e.g., police/fire departments) in the United States are eligible to apply. In addition, grants must support work completed by community volunteers in the U.S., and projects must be completed within six months following notification that the grant has been awarded.
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Climate Program Office 2018 - 0 views

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    The National Oceanic and Atmospheric Administration (NOAA) is focused on providing the essential and highest quality environmental information vital to our Nation's safety, prosperity and resilience. Toward this goal, the agency conducts and supports weather and climate research, oceanic and atmospheric observations, modeling, information management, assessments, interdisciplinary decision-support research, outreach, education, and partnership development. Climate variability and change present society with significant economic, health, safety, and security challenges and opportunities. In meeting these challenges, and as part of NOAA's climate portfolio within the Office of Oceanic and Atmospheric Research (OAR), the Climate Program Office (CPO) advances scientific understanding, monitoring, and prediction of climate and its impacts, to enable effective decisions. Within this context, CPO manages competitive research programs through which NOAA funds high-priority climate science, assessments, decision support research, outreach, education, and capacity-building activities designed to advance our understanding of the Earth's climate system, and to foster the application and use of this knowledge to improve the resilience of our Nation and its partners. CPO supports research that is conducted across the United States and internationally. CPO's climate research portfolio is designed to achieve a fully integrated research and applications program. We meet this objective through a focus on climate intelligence and climate resilience, in support of NOAA's goals.
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Broad Agency Announcement (BAA) Announcement Type: Initial - 0 views

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    This notice is not a mechanism to fund existing NOAA awards. The purpose of this notice is to request applications for special projects and programs associated with NOAA's strategic plan and mission goals, as well as to provide the general public with information and guidelines on how NOAA will select applications and administer discretionary Federal assistance under this Broad Agency Announcement (BAA). This Broad Agency Announcement is a mechanism to encourage research, education and outreach, innovative projects, or sponsorships that are not addressed through NOAA's competitive discretionary programs. This announcement is not soliciting goods or services for the direct benefit of NOAA. Funding for activities described in this notice is contingent upon the availability of Fiscal Year 2018, Fiscal Year 2019, and Fiscal Year 2020 appropriations. Applicants are hereby given notice that funds have not yet been appropriated for any activities described in this notice. Publication of this announcement does not oblige NOAA to review an application beyond an initial administrative review, or to award any specific project, or to obligate any available funds. In furtherance of this objective, NOAA issues this BAA for extramural research, innovative projects, and sponsorships (e.g., conferences, newsletters, etc.) that address one or more of the following four mission goal descriptions contained in the NOAA Strategic Plan: 1. Long-term mission goal: Climate Adaptation and Mitigation 2. Long-term mission goal: Weather-Ready Nation 3. Long-term mission goal: Healthy Oceans 4. Long-term mission goal: Resilient Coastal Communities and Economies
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The origin, character, and mineral potential of Proterozoic-age basement rocks and the ... - 0 views

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    The U.S. Geological Survey, Crustal Geophysics and Geochemistry Science Center, requires a cooperative agreement to Utah State University in support of joint research on the origin, character, and mineral potential of Proterozoic-age basement rocks and the nature of the Proterozoic-Paleozoic unconformity in northeastern Iowa.The Northeast Iowa Intrusive Complex (NEIIC) is composed of mafic Proterozoic rocks that may be related to the Midcontinent Rift System, and may have nationally significant mineral potential. However, the rocks are completely buried under hundreds of meters of younger sedimentary rocks, and very few boreholes penetrate the overlying sedimentary section. Studies of the NEIIC to date have relied almost entirely on geophysical data, but rigorous control on the geophysical interpretations is lacking. Further, the fundamental nature of the closely related Proterozoic-Paleozoic unconformity is weakly constrained in this region, specifically in relation to its hydrogeologic character, state of stress, thermal regime, and state of weathering.
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