[No authors listed]
UIID-NSF: 1530
Rice University will host two annual two-day workshops titled "Capacity Building for Competitive S-STEM Proposals" with the broad goal of improving the competitiveness of submissions to the National Science Foundation Scholarships in Science, Technology, Engineering and Mathematics (NSF S-STEM)...
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Capacity Building for Competitive S-STEM Proposals. ;
(). Capacity Building for Competitive S-STEM Proposals. .
"Capacity Building for Competitive S-STEM Proposals." vol. ().
Capacity Building for Competitive S-STEM Proposals. UIID-NSF: 1530.
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UIID-NSF: 547
This CAREER awardee at Utah State University is investigating the learning that can take place when elementary school students are directly involved in the collection, sense-making, and analysis of real, personally-meaningful data sets. The project responds to increasing attention...
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CAREER: Engaging Elementary Students in Data Analysis through Study of Physical Activities. ;
(). CAREER: Engaging Elementary Students in Data Analysis through Study of Physical Activities. .
"CAREER: Engaging Elementary Students in Data Analysis through Study of Physical Activities." vol. ().
CAREER: Engaging Elementary Students in Data Analysis through Study of Physical Activities. UIID-NSF: 547.
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UIID-NSF: 516
w:\awards\awards96\num.doc 9702690 DiTusa This experimental CAREER grant, supported by the Division of Materials Research and the Experimental Program to Stimulate Competitive Research (EPSCoR) will advance the state of knowledge of the properties of lightly doped semiconductors and insulators, with...
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Career: From Strongly Correlated Insulator to Metal: Transport and Magnetic Properties of Carrier Doped Insulators. ;
(). Career: From Strongly Correlated Insulator to Metal: Transport and Magnetic Properties of Carrier Doped Insulators. .
"Career: From Strongly Correlated Insulator to Metal: Transport and Magnetic Properties of Carrier Doped Insulators." vol. ().
Career: From Strongly Correlated Insulator to Metal: Transport and Magnetic Properties of Carrier Doped Insulators. UIID-NSF: 516.
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UIID-NSF: 864
*** Technical Abstract *** The overarching goal of the proposed CAREER effort will be to understand the correlations between excitons, magnetic properties, spin exchange mechanisms and molecular stacking in discotic crystalline molecular thin films with long range order. This...
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CAREER: Imaging Excitons, Spin Coupling and Magnetism in Discotic Crystalline Organic Semiconductors. ;
(). CAREER: Imaging Excitons, Spin Coupling and Magnetism in Discotic Crystalline Organic Semiconductors. .
"CAREER: Imaging Excitons, Spin Coupling and Magnetism in Discotic Crystalline Organic Semiconductors." vol. ().
CAREER: Imaging Excitons, Spin Coupling and Magnetism in Discotic Crystalline Organic Semiconductors. UIID-NSF: 864.
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UIID-NSF: 373
With the support of the Organic and Macromolecular Chemistry Program in the Chemistry Division and the NSF EPSCoR Program, Professor Stevenson, of the Chemistry Department at the University of Southern Mississippi, will explore the chemistry of metallic nitride caged...
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CAREER: Investigations of Newly Discovered Metallic Nitride Caged Nanomaterials. ;
(). CAREER: Investigations of Newly Discovered Metallic Nitride Caged Nanomaterials. .
"CAREER: Investigations of Newly Discovered Metallic Nitride Caged Nanomaterials." vol. ().
CAREER: Investigations of Newly Discovered Metallic Nitride Caged Nanomaterials. UIID-NSF: 373.
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UIID-NSF: 772
This project is jointly funded by the Polymers Program in the Division of Materials Research and the Experimental Program to Stimulate Competitive Research (EPSCoR). NON-TECHNICAL SUMMARY: The research objective of this CAREER project is to gain fundamental knowledge of...
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CAREER: Morphology and Property Correlations of Chemically Doped 1D Conjugated Polymer Aggregates. ;
(). CAREER: Morphology and Property Correlations of Chemically Doped 1D Conjugated Polymer Aggregates. .
"CAREER: Morphology and Property Correlations of Chemically Doped 1D Conjugated Polymer Aggregates." vol. ().
CAREER: Morphology and Property Correlations of Chemically Doped 1D Conjugated Polymer Aggregates. UIID-NSF: 772.
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[No authors listed]
UIID-NSF: 1546
This award by the Inorganic, Bioinorganic and Organometallic Chemistry Program and the Experimental Program to Stimulate Competitive Research (EPSCoR) to Professor James P. Donahue of Tulane University addresses the synthetic and thermodynamic challenges of reducing carbon dioxide (CO2). Carbon...
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CAREER: Studies of Catalytic Carbon Dioxide Reduction, Metallodithiolene Chemistry and Community Outreach to Build the Chemical Workforce. ;
(). CAREER: Studies of Catalytic Carbon Dioxide Reduction, Metallodithiolene Chemistry and Community Outreach to Build the Chemical Workforce. .
"CAREER: Studies of Catalytic Carbon Dioxide Reduction, Metallodithiolene Chemistry and Community Outreach to Build the Chemical Workforce." vol. ().
CAREER: Studies of Catalytic Carbon Dioxide Reduction, Metallodithiolene Chemistry and Community Outreach to Build the Chemical Workforce. UIID-NSF: 1546.
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UIID-NSF: 410
The University of South Dakota's CC*IIE Networking Infrastructure: Science DMZ for Campus Bridging and Computationally Assisted Research project aims to improve scientific data movement by isolating research network traffic from the friction of the traditional campus network. Traditional enterprise...
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CC*IIE Networking Infrastructure: Science DMZ for Campus Bridging and Computationally Assisted Research. ;
(). CC*IIE Networking Infrastructure: Science DMZ for Campus Bridging and Computationally Assisted Research. .
"CC*IIE Networking Infrastructure: Science DMZ for Campus Bridging and Computationally Assisted Research." vol. ().
CC*IIE Networking Infrastructure: Science DMZ for Campus Bridging and Computationally Assisted Research. UIID-NSF: 410.
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UIID-NSF: 426
Unprecedented thinning and retreat of the Arctic sea ice cover together with recent climate modeling studies that predict the Arctic could be free or nearly free of sea ice in summertime within the next few decades have raised concern...
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CDI-Type I: Collaborative Research: A Computational Thinking Approach to Mapping Critical Marine Mammal Habitat Through Readily-Deployable Video Systems. ;
(). CDI-Type I: Collaborative Research: A Computational Thinking Approach to Mapping Critical Marine Mammal Habitat Through Readily-Deployable Video Systems. .
"CDI-Type I: Collaborative Research: A Computational Thinking Approach to Mapping Critical Marine Mammal Habitat Through Readily-Deployable Video Systems." vol. ().
CDI-Type I: Collaborative Research: A Computational Thinking Approach to Mapping Critical Marine Mammal Habitat Through Readily-Deployable Video Systems. UIID-NSF: 426.
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UIID-NSF: 1579
The investigators will coordinate operations between the Kodiak High Frequency (HF) radar and the Advanced Modular Incoherent Scatter Radar (AMISR) in Alaska for the purpose of investigating the factors that affect the spectral width of HF radar coherent ionospheric...
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CEDAR: High-Spectral Width High Frequency (HF) Radar Ionospheric Backscatter with Coordinated Incoherent Scatter Radar (ISR) Diagnostic Observations. ;
(). CEDAR: High-Spectral Width High Frequency (HF) Radar Ionospheric Backscatter with Coordinated Incoherent Scatter Radar (ISR) Diagnostic Observations. .
"CEDAR: High-Spectral Width High Frequency (HF) Radar Ionospheric Backscatter with Coordinated Incoherent Scatter Radar (ISR) Diagnostic Observations." vol. ().
CEDAR: High-Spectral Width High Frequency (HF) Radar Ionospheric Backscatter with Coordinated Incoherent Scatter Radar (ISR) Diagnostic Observations. UIID-NSF: 1579.
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UIID-NSF: 226
The Center for NanoBiotechnology Research (CNBR) was established at Alabama State University in 2007 as a NSF Center of Research Excellence in Science and Technology (CREST). The Phase II Center will expand and strengthen a major research activity at...
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Center for NanoBiotechnology Research. ;
(). Center for NanoBiotechnology Research. .
"Center for NanoBiotechnology Research." vol. ().
Center for NanoBiotechnology Research. UIID-NSF: 226.
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UIID-NSF: 427
This proposal is to study the critical medical area of ex-vivo expansion of bone-marrow stem cells into mature blood cells useful for a variety of therapies, e.g., neutrophils to fight infection, platelets for clotting, etc. The research team, which...
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Characterization of Hematopoietic Cell Cultures. ;
(). Characterization of Hematopoietic Cell Cultures. .
"Characterization of Hematopoietic Cell Cultures." vol. ().
Characterization of Hematopoietic Cell Cultures. UIID-NSF: 427.
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