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MiamiOH OARS

Natural Experiments of Policy and Built Environment Impact on Diabetes Risk - 0 views

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    This FOA has two components, A and B. Component A: To support a 5-year multi-center research network of innovative, non-health system-based, natural experiments approaches to alter the diabetogenic characteristics of US communities. Priority areas include population-level approaches to the promotion of healthy eating and active living by evaluating the impact of environmental and policy interventions on population-level risk factors for diabetes. Component B: To fund a Central Coordinating Center (CCC) to provide organizational, logistic and communication support to enhance the efficiency, productivity, and impact of the Natural Experiments research centers that are funded as part of Component A.
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    This FOA has two components, A and B. Component A: To support a 5-year multi-center research network of innovative, non-health system-based, natural experiments approaches to alter the diabetogenic characteristics of US communities. Priority areas include population-level approaches to the promotion of healthy eating and active living by evaluating the impact of environmental and policy interventions on population-level risk factors for diabetes. Component B: To fund a Central Coordinating Center (CCC) to provide organizational, logistic and communication support to enhance the efficiency, productivity, and impact of the Natural Experiments research centers that are funded as part of Component A.
MiamiOH OARS

Catalysis | NSF - National Science Foundation - 0 views

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    The goal of the Catalysis program is to advance research in catalytic engineering science and promote  fundamental understanding and the development of catalytic materials and reactions that are of benefit to society.  Research in this program should focus on new basic understanding of catalytic materials and reactions, utilizing synthetic, theoretical, and experimental approaches.  Target applications include fuels, specialty and bulk chemicals, environmental catalysis, biomass conversion to fuels and chemicals, conversion of greenhouse gases, and generation of solar hydrogen, as well as efficient routes to energy utilization.
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    The goal of the Catalysis program is to advance research in catalytic engineering science and promote  fundamental understanding and the development of catalytic materials and reactions that are of benefit to society.  Research in this program should focus on new basic understanding of catalytic materials and reactions, utilizing synthetic, theoretical, and experimental approaches.  Target applications include fuels, specialty and bulk chemicals, environmental catalysis, biomass conversion to fuels and chemicals, conversion of greenhouse gases, and generation of solar hydrogen, as well as efficient routes to energy utilization.
MiamiOH OARS

Electronics, Photonics and Magnetic Devices | NSF - National Science Foundation - 0 views

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    The Electronics, Photonics, and Magnetic Devices (EPMD) Program seeks to improve the fundamental understanding of devices and components based on the principles of micro- and nano-electronics, optics and photonics, optoelectronics, magnetics, electromechanics, electromagnetics, and related physical phenomena. The Electronics & Magnetic Devices component of EPMD enables discovery and innovation advancing the frontiers of nanoelectronics, spin electronics, molecular and organic electronics, bioelectronics, biomagnetics, non-silicon electronics, and flexible electronics. It also addresses advances in energy-efficient electronics, sensors, low-noise, power electronics, and mixed signal devices. The Optic & Photonic Devices component of EPMD supports research and engineering efforts leading to significant advances in novel optical sources and photodetectors, optical communication devices, photonic integrated circuits, single-photon quantum devices, and nanophotonics. It also addresses novel optical imaging and sensing applications and solar cell photovoltaics.
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    The Electronics, Photonics, and Magnetic Devices (EPMD) Program seeks to improve the fundamental understanding of devices and components based on the principles of micro- and nano-electronics, optics and photonics, optoelectronics, magnetics, electromechanics, electromagnetics, and related physical phenomena. The Electronics & Magnetic Devices component of EPMD enables discovery and innovation advancing the frontiers of nanoelectronics, spin electronics, molecular and organic electronics, bioelectronics, biomagnetics, non-silicon electronics, and flexible electronics. It also addresses advances in energy-efficient electronics, sensors, low-noise, power electronics, and mixed signal devices. The Optic & Photonic Devices component of EPMD supports research and engineering efforts leading to significant advances in novel optical sources and photodetectors, optical communication devices, photonic integrated circuits, single-photon quantum devices, and nanophotonics. It also addresses novel optical imaging and sensing applications and solar cell photovoltaics.
MiamiOH OARS

'Marine and Hydrokinetic Energy Conversion and Environmental Monitoring Technology Adva... - 0 views

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    The Office of Energy Efficiency and Renewable Energy (EERE) intends to issue, on behalf of the Wind and Water Power Technologies Office, a Funding Opportunity Announcement- FOA- entitled Marine and Hydrokinetic Energy Conversion and Environmental Monitoring Technology Advancement. This FOA is soliciting applications that propose projects supporting the marine and hydrokinetic MHK industry in two Topic Areas. Topic Area 1 will help advance wave and current energy- ocean, tidal, river- technologies by supporting projects that integrate advanced MHK components into system designs and then demonstrate the improved systems in full-scale open-water tests. Topic Area 2 will support the innovation, testing and validation of instrumentation for monitoring potential environmental impacts of MHK devices. The complete Notice of Intent can be viewed on the EERE Exchange website - https://eere-exchange.energy.gov This is a Notice of Intent only. EERE may issue a FOA as described herein, may issue a FOA that is significantly different from the FOA described herein, or EERE may not issue a FOA at all. NO APPLICATIONS WILL BE ACCEPTED THROUGH THIS NOI. Please do not submit questions or respond to this NOI. Prospective applicants to the FOA should begin developing partnerships, formulating ideas, and gathering data in anticipation of the issuance of this FOA. It is anticipated that this FOA will be posted to the EERE Exchange website in the near term.
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    The Office of Energy Efficiency and Renewable Energy (EERE) intends to issue, on behalf of the Wind and Water Power Technologies Office, a Funding Opportunity Announcement- FOA- entitled Marine and Hydrokinetic Energy Conversion and Environmental Monitoring Technology Advancement. This FOA is soliciting applications that propose projects supporting the marine and hydrokinetic MHK industry in two Topic Areas. Topic Area 1 will help advance wave and current energy- ocean, tidal, river- technologies by supporting projects that integrate advanced MHK components into system designs and then demonstrate the improved systems in full-scale open-water tests. Topic Area 2 will support the innovation, testing and validation of instrumentation for monitoring potential environmental impacts of MHK devices. The complete Notice of Intent can be viewed on the EERE Exchange website - https://eere-exchange.energy.gov This is a Notice of Intent only. EERE may issue a FOA as described herein, may issue a FOA that is significantly different from the FOA described herein, or EERE may not issue a FOA at all. NO APPLICATIONS WILL BE ACCEPTED THROUGH THIS NOI. Please do not submit questions or respond to this NOI. Prospective applicants to the FOA should begin developing partnerships, formulating ideas, and gathering data in anticipation of the issuance of this FOA. It is anticipated that this FOA will be posted to the EERE Exchange website in the near term.
MiamiOH OARS

Enhancing Access to the Radio Spectrum (EARS) (nsf16537) | NSF - National Science Found... - 0 views

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    The National Science Foundation's Directorates for Computer and Information Science and Engineering (CISE), Engineering (ENG), and Mathematical and Physical Sciences (MPS) are coordinating efforts to identify bold new concepts with the potential to contribute towards significant improvements in the efficiency of radio spectrum utilization, protection of passive sensing services, and the ability for traditionally underserved Americans to benefit from current and future wireless-enabled goods and services. This EARS program solicitation seeks to fund innovative collaborative research addressing large-scale challenges that transcend the traditional boundaries of existing programs.
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    The National Science Foundation's Directorates for Computer and Information Science and Engineering (CISE), Engineering (ENG), and Mathematical and Physical Sciences (MPS) are coordinating efforts to identify bold new concepts with the potential to contribute towards significant improvements in the efficiency of radio spectrum utilization, protection of passive sensing services, and the ability for traditionally underserved Americans to benefit from current and future wireless-enabled goods and services. This EARS program solicitation seeks to fund innovative collaborative research addressing large-scale challenges that transcend the traditional boundaries of existing programs.
MiamiOH OARS

CENTER OF EXCELLENCE: Efficient and Robust Machine Learning (ERML) - 0 views

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    The Air Force Office of Scientific Research (AFOSR) seeks unclassified proposals from educational institutions in the United States for a University Center of Excellence (UCoE) in Efficient and Robust Machine Learning (ERML). Proposals must not contain any proprietary information. This center is a joint project between AFOSR and the Air Force Research Laboratory, Information Directorate (AFRL/RI; http://www.wpafb.af.mil/afrl/ri.aspx). The center will extend the research capabilities of the Air Force Research Laboratory, and provide opportunities for a new generation of United States scientists and engineers to address the basic research needs of the Air Force. We will consider proposals for up to five (5) years with a three-year (3) base period and a two-year (2) option period. The total anticipated amount for the award is $4M. Each of the three (3) years base is anticipated to be funded at $1M each and $500K each for option years. All funding projections are based on availability of funds. We will evaluate proposals using peer review panels and the criteria specified in section F. Application Review Information. While AFOSR reserves the right to selected and fund all, some, or none of the proposals, we anticipate making one Corporative Agreement award under this competition.
MiamiOH OARS

CENTER OF EXCELLENCE: Efficient and Robust Machine Learning (ERML) - 0 views

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    AFOSR seeks unclassified proposals from educational institutions in the United States for a University Center of Excellence (UCoE) in Efficient and Robust Machine Learning (ERML). Proposals must not contain any proprietary information.
MiamiOH OARS

Advanced Building Construction with Energy Efficient Technologies & Practices (ABC) - 0 views

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    The U.S. Department of Energy's (DOE) Building Technologies Office (BTO) Advanced Building Construction with Energy-Efficient Technologies & Practices (ABC) FOA supports research and development of solutions that can be applied to many segments of the building sector, including existing and new buildings, residential and commercial, and across multiple climate zones. BTO is seeking applications aimed at developing deep energy retrofit and new construction technologies that holistically tackle a combination of envelope, heating, cooling, water heating, and ventilation issues, and hold appeal for both building owners and occupants. BTO is interested in three topic areas: Topic 1: Integrated Building Retrofits Topic 2: New Construction Technologies Topic 3: Advanced Technology Integration
MiamiOH OARS

Efficient Drilling for Geothermal Energy - 0 views

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    Complete information on this FOA can be found on the EERE Exchange website - https://eere-exchange.energy.gov. DE-FOA-0001880: Efficient Drilling for Geothermal Energy, contains three Topic Areas. The first two involve early stage research and development (R&D), while the third solicits projects that incentivize the risk-averse geothermal industry to adopt innovations earlier in the R&D cycle. Topic Area 1: Reducing Non-Drilling Time Topic Area 2: Advanced Drilling Technologies Topic Area 3: Innovative Partnership Models Complete information on this FOA can be found on the EERE Exchange website - https://eere-exchange.energy.gov.
MiamiOH OARS

Critical Resilient Interdependent Infrastructure Systems and Processes FY17 (CRISP) (ns... - 0 views

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    The CRISP solicitation seeks to fund projects likely to produce new knowledge that can contribute to making ICI services more effective, efficient, dependable, adaptable, resilient, safe, and secure, taking into account the human systems in which they are embedded. Successful proposals are expected to study multiple infrastructures focusing on them as interdependent systems that deliver services, enabling a new interdisciplinary paradigm in infrastructure research. To meet the interdisciplinary criterion, proposals must broadly integrate across engineering, computer, information and computational science, and the social, behavioral and economic sciences.
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    The CRISP solicitation seeks to fund projects likely to produce new knowledge that can contribute to making ICI services more effective, efficient, dependable, adaptable, resilient, safe, and secure, taking into account the human systems in which they are embedded. Successful proposals are expected to study multiple infrastructures focusing on them as interdependent systems that deliver services, enabling a new interdisciplinary paradigm in infrastructure research. To meet the interdisciplinary criterion, proposals must broadly integrate across engineering, computer, information and computational science, and the social, behavioral and economic sciences.
MiamiOH OARS

Grants.gov - Find Grant Opportunities - Opportunity Synopsis - 0 views

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    Proposals for potential FY14 Exploratory Development/Applied Research (Budget category 6.2) projects are sought under the following focus areas: 1. Low-profile conformal multi-band (e.g., X/Ku/Ka) multi-beam digital phased array antennas with reduced beam squint and low side lobes and scan loss; 2. Transformative concepts/designs (arrays, waveform, signal processing etc.) to enhance performance and aperture size/power efficiency in high bandwidth troposcatter communications; 3. Passive wavelength filter technologies for the 450-550 nm blue-green underwater communications receiver (band-pass widths as applicable to a variety of laser/LED sources), with wide field-of-view (> +-20 degrees), low insertion loss and high isolation; 4. Innovative concepts and approaches for spectrum co-existence (underlay/overlay, spatio-temporal/spectral management and deconfliction) of military waveforms with commercial wireless communications; 5. Dynamic network (traffic) scheduling, throughput and robustness enhancement codes/algorithms/protocols under nonstationary channel conditions; and 6. Machine learning algorithm/protocol and techniques for autonomous network management ONR is also receptive to highly innovative ideas in other general communications and networking areas that are not within the designated focus areas above, but nonetheless are important to the Navy/Marine Corps, as determined under the synopsis section above.
MiamiOH OARS

Superlattice Technology Arrays for Midwave Photon Excited Detector Enhancement (STAMPED... - 0 views

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    AFRL is soliciting proposals under Space Focal Plane Arrays, Topic 1, of Broad Agency Announcement BAA-RV-12-01, posted on 5 June 2012. Under this CALL the Air Force Research Laboratory is seeking to develop high performance, high functionality, large format, radiation hardened, high operating temperature medium wavelength infrared (MWIR) sensor chip arrays (SCA) for Persistent Surveillance applications suitable for space Intelligence, Surveillance, and Reconnaissance (ISR). The objective is to demonstrate a higher operating temperature MWIR SCA technology, operating at 130 Kelvin or higher, that efficiently detects low to moderate photon irradiances. Known performance limitations include detector noise, defects, background carrier concentration, passivation and processing.
MiamiOH OARS

The Ray Anderson Foundation - 0 views

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    The Foundation is promoting Ray's legacy through its inspiration and funding of innovative, educational and project-based initiatives that advance the revolution in sustainable production and consumption. Through its Gray Notes Grants program, the foundation awards grants of between $2,000 and $25,000 for environmental conservation, preservation, education, and restoration initiatives; urban agriculture programs; clean water and clean air projects; environmental and economic think tanks; and grassroots initiatives that inform and inspire people to collaborate and take positive action to protect the planet. In addition, the program supports organizations and programs that are working with industry, government, and businesses to create environmentally sound planning practices to reduce the environmental footprint of urban development through energy efficiency, increased use of renewable energy, and the reduction of carbon intensity. We award grants in two categories: Grants to Environmental Initiatives and Nonprofits   Inquiries taken throughout 2013. Grants to Higher Education Research Programs (by invitation only).   Inquiries due March 28, 2013.
MiamiOH OARS

Grants.gov - Find Grant Opportunities - Opportunity Synopsis - 0 views

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    The Particulate and Multiphase Processes program supports fundamental and applied research on phenomena governing particulate and multiphase processes, including flows of suspensions of particles, drops or bubbles, granular and granular-fluid flows, flow behavior of micro or nano-structured fluids, aerosol science and technology, and self- and directed-assembly processes involving particulates. Innovative research is sought that contributes to improving the basic understanding, design, predictability, efficiency, and control of particulate and multiphase processes with particular emphasis on: novel manufacturing techniques, multiphase systems of relevance to energy harvesting, multiphase transport in biological systems or biotechnology, and environmental sustainability.
MiamiOH OARS

Grants.gov - Find Grant Opportunities - Opportunity Synopsis - 0 views

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    The Fluid Dynamics program supports fundamental research and education on mechanisms and phenomena governing fluid flow. Proposed research should contribute to basic understanding; thus enabling the better design; predictability; efficiency; and control of systems that involve fluids. Encouraged are proposals that address innovative uses of fluids in materials development; manufacturing; biotechnology; nanotechnology; clinical diagnostics and drug delivery; sensor development and integration; energy and the environment. While the research should focus on fundamentals, a clear connection to potential application should be outlined.
MiamiOH OARS

Financial Opportunities: Funding Opportunity Exchange - 0 views

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    The objective of the Marine and Hydrokinetic System Performance Advancement FOA is to advance technology performance of existing marine and hydrokinetic systems through the development and application of innovative components that are designed and built specifically for MHK applications.  This FOA will focus on improving the cost competitiveness of systems already in development, with the goal of advancing the technology performance of these systems.   This FOA will support component development projects in three topic areas that have the greatest potential to impact power to weight ratio and availability:   Topic Area 1:  Advanced Controls - to improve energy capture, availability, and safety. Topic Area 2:  Next-Gen Power Take-Off (PTO) - to increase energy efficiency, reduce weight, and improve reliability.   Topic Area 3:  Optimized Structures - to improve energy capture, reduce weight, and improve reliability.
MiamiOH OARS

Grants.gov - Find Grant Opportunities - Opportunity Synopsis - 0 views

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    The Concentrating Solar Power: Efficiently Leveraging Equilibrium Mechanisms for Engineering New Thermochemical Storage (CSP: ELEMENTS) Funding Opportunity Announcement (FOA) that is being issued by the U.S. Department of Energy (DOE) is seeking applications that integrate Thermochemical Energy Storage (TCES) systems with a minimum of 6 hours of thermal storage to be used in ≥1 Megawatt-electric (≥1 MWe) scale CSP electricity generation that have promise to achieve a cost target of ≤$15 per kilowatt-hour-thermal (≤$15/kWhth) are the focus of this FOA. Successful projects will culminate in an on-sun demonstration of the thermochemical reactor along with reliable projections of the full scale performance of the integrated storage system through the utilization of validated performance models developed as part of the research and development effort.
MiamiOH OARS

nsf.gov - Funding - Engineering Research Centers - US National Science Foundation (NSF) - 0 views

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    The goal of the Generation Three (Gen-3) Engineering Research Centers (ERC) Program is to create a culture in engineering research and education that integrates discovery with technological innovation to advance technology and produce graduates who will be creative U.S. innovators in a globally competitive economy. These ERCs are at the forefront as the U.S. competes in the 21st century global economy where R&D resources and engineering talent are internationally distributed. Recognizing that optimizing efficiency and product quality are no longer sufficient for U.S. industry to remain competitive, these ERCs integrate transformational academic engineering research and education to stimulate increased U.S. innovation in a global context.
MiamiOH OARS

Grants.gov - Find Grant Opportunities - Opportunity Synopsis - 0 views

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    With this Funding Opportunity Announcement (FOA), the Department of Energy (DOE) SunShot Initiative is soliciting collaborative research teams to define and fabricate model systems that utilize a single p-n junction device structure and have the potential to approach Shockley-Queisser power conversion efficiency limits (for a chosen bandgap and absorber material). The emphasis of this FOA is assembling cohesive and highly diverse teams of experts within and outside the PV community who can achieve the goals of creating a model system concept and a subsequent device that can approach theoretical limits. DOE SunShot anticipates significant collaboration between experts in fundamental materials, characterization, device physics, ab-initio simulations, and PV device integration to adequately address these issues.
MiamiOH OARS

nsf.gov - Funding - Combustion, Fire, and Plasma Systems - US National Science Foundati... - 0 views

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    The Combustion, Fire, and Plasma Systems program supports fundamental research and education relevant to these subjects.  Among the broader societal impacts of the program are cleaner global and local environments, enhanced public safety, improved energy and homeland security, useful new materials, and more efficient manufacturing. This program is not an applied program, but rather it endeavors to provide basic knowledge that is needed to develop useful combustion and plasma applications and for mitigating the effects of fire.  Broad-based tools - experimental, diagnostic, and computational - that can be applied to a variety of problems in combustion, fires, and plasma systems are the major products of this program. 
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