#spacetechnologyresearchgrants — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #spacetechnologyresearchgrants, aggregated by home.social.
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Stabilized Z-Pinch Fusion Driven Electromagnetic Propulsion https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/stabilized-z-pinch-fusion-driven-electromagnetic-propulsion/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Stabilized Z-Pinch Fusion Driven Electromagnetic Propulsion https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/stabilized-z-pinch-fusion-driven-electromagnetic-propulsion/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Stabilized Z-Pinch Fusion Driven Electromagnetic Propulsion https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/stabilized-z-pinch-fusion-driven-electromagnetic-propulsion/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Stabilized Z-Pinch Fusion Driven Electromagnetic Propulsion https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/stabilized-z-pinch-fusion-driven-electromagnetic-propulsion/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Power on the Dark Side: Stimulus-Responsive Adsorbents for Low-Energy Controlled Storage and Delivery of Low Boiling Fuels to Mobile Assets in Permanently Shaded Regions https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/power-on-the-dark-side-stimulus-responsive-adsorbents-for-low-energy-controlled-storage-and-delivery-of-low-boiling-fuels-to-mobile-assets-in-permanently-shaded-regions/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Origami-inspired Diffractive Sail for Directed Energy Propulsion https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/origami-inspired-diffractive-sail-for-directed-energy-propulsion/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Piezoelectric-Based Power Conversion for Lunar Surface Systems https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/piezoelectric-based-power-conversion-for-lunar-surface-systems/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Development of a MW-Scale High-Voltage Multiphase Dual-Rotor Generator and Rectifier for a PMAD in an NEP System https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/development-of-a-mw-scale-high-voltage-multiphase-dual-rotor-generator-and-rectifier-for-a-pmad-in-an-nep-system/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Developing Oxychalcogenide Membranes for Superconducting Power Transmission https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/developing-oxychalcogenide-membranes-for-superconducting-power-transmission/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Concept Demonstration of Directed Energy Propulsion with Metasurface Lightsails https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/concept-demonstration-of-directed-energy-propulsion-with-metasurface-lightsails/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Power on the Dark Side: Stimulus-Responsive Adsorbents for Low-Energy Controlled Storage and Delivery of Low Boiling Fuels to Mobile Assets in Permanently Shaded Regions https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/power-on-the-dark-side-stimulus-responsive-adsorbents-for-low-energy-controlled-storage-and-delivery-of-low-boiling-fuels-to-mobile-assets-in-permanently-shaded-regions/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Origami-inspired Diffractive Sail for Directed Energy Propulsion https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/origami-inspired-diffractive-sail-for-directed-energy-propulsion/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Piezoelectric-Based Power Conversion for Lunar Surface Systems https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/piezoelectric-based-power-conversion-for-lunar-surface-systems/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Development of a MW-Scale High-Voltage Multiphase Dual-Rotor Generator and Rectifier for a PMAD in an NEP System https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/development-of-a-mw-scale-high-voltage-multiphase-dual-rotor-generator-and-rectifier-for-a-pmad-in-an-nep-system/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Developing Oxychalcogenide Membranes for Superconducting Power Transmission https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/developing-oxychalcogenide-membranes-for-superconducting-power-transmission/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Concept Demonstration of Directed Energy Propulsion with Metasurface Lightsails https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/concept-demonstration-of-directed-energy-propulsion-with-metasurface-lightsails/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Power on the Dark Side: Stimulus-Responsive Adsorbents for Low-Energy Controlled Storage and Delivery of Low Boiling Fuels to Mobile Assets in Permanently Shaded Regions https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/power-on-the-dark-side-stimulus-responsive-adsorbents-for-low-energy-controlled-storage-and-delivery-of-low-boiling-fuels-to-mobile-assets-in-permanently-shaded-regions/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Origami-inspired Diffractive Sail for Directed Energy Propulsion https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/origami-inspired-diffractive-sail-for-directed-energy-propulsion/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Piezoelectric-Based Power Conversion for Lunar Surface Systems https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/piezoelectric-based-power-conversion-for-lunar-surface-systems/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Development of a MW-Scale High-Voltage Multiphase Dual-Rotor Generator and Rectifier for a PMAD in an NEP System https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/development-of-a-mw-scale-high-voltage-multiphase-dual-rotor-generator-and-rectifier-for-a-pmad-in-an-nep-system/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Developing Oxychalcogenide Membranes for Superconducting Power Transmission https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/developing-oxychalcogenide-membranes-for-superconducting-power-transmission/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Concept Demonstration of Directed Energy Propulsion with Metasurface Lightsails https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/concept-demonstration-of-directed-energy-propulsion-with-metasurface-lightsails/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Power on the Dark Side: Stimulus-Responsive Adsorbents for Low-Energy Controlled Storage and Delivery of Low Boiling Fuels to Mobile Assets in Permanently Shaded Regions https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/power-on-the-dark-side-stimulus-responsive-adsorbents-for-low-energy-controlled-storage-and-delivery-of-low-boiling-fuels-to-mobile-assets-in-permanently-shaded-regions/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Origami-inspired Diffractive Sail for Directed Energy Propulsion https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/origami-inspired-diffractive-sail-for-directed-energy-propulsion/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Piezoelectric-Based Power Conversion for Lunar Surface Systems https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/piezoelectric-based-power-conversion-for-lunar-surface-systems/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Development of a MW-Scale High-Voltage Multiphase Dual-Rotor Generator and Rectifier for a PMAD in an NEP System https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/development-of-a-mw-scale-high-voltage-multiphase-dual-rotor-generator-and-rectifier-for-a-pmad-in-an-nep-system/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Developing Oxychalcogenide Membranes for Superconducting Power Transmission https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/developing-oxychalcogenide-membranes-for-superconducting-power-transmission/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Concept Demonstration of Directed Energy Propulsion with Metasurface Lightsails https://www.nasa.gov/directorates/stmd/space-tech-research-grants/ecf/concept-demonstration-of-directed-energy-propulsion-with-metasurface-lightsails/ #NASA #EarlyCareerFacultyECF #SpaceTechnologyResearchGrants
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Integrated Computational Materials Modelling Framework for Investigating the Process-Structure-Property Linkage of the Lunar Metal Welding with Internal Defects https://www.nasa.gov/directorates/stmd/space-tech-research-grants/integrated-computational-materials-modelling-framework-for-investigating-the-process-structure-property-linkage-of-the-lunar-metal-welding-with-internal-defects/ #NASA #SpaceTechnologyResearchGrants
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Integrated Computational Materials Modelling Framework for Investigating the Process-Structure-Property Linkage of the Lunar Metal Welding with Internal Defects https://www.nasa.gov/directorates/stmd/space-tech-research-grants/integrated-computational-materials-modelling-framework-for-investigating-the-process-structure-property-linkage-of-the-lunar-metal-welding-with-internal-defects/ #NASA #SpaceTechnologyResearchGrants
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Integrated Computational Materials Modelling Framework for Investigating the Process-Structure-Property Linkage of the Lunar Metal Welding with Internal Defects https://www.nasa.gov/directorates/stmd/space-tech-research-grants/integrated-computational-materials-modelling-framework-for-investigating-the-process-structure-property-linkage-of-the-lunar-metal-welding-with-internal-defects/ #NASA #SpaceTechnologyResearchGrants
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Integrated Computational Materials Modelling Framework for Investigating the Process-Structure-Property Linkage of the Lunar Metal Welding with Internal Defects https://www.nasa.gov/directorates/stmd/space-tech-research-grants/integrated-computational-materials-modelling-framework-for-investigating-the-process-structure-property-linkage-of-the-lunar-metal-welding-with-internal-defects/ #NASA #SpaceTechnologyResearchGrants
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Engineering the Adhesion Mechanisms of Hierarchical Dust-Mitigating Nanostructures https://www.nasa.gov/directorates/stmd/space-tech-research-grants/engineering-the-adhesion-mechanisms-of-hierarchical-dust-mitigating-nanostructures/ #NASA #SpaceTechnologyResearchGrants
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Studying Passive Dust Mitigation on Anisotropic Structured Surface https://www.nasa.gov/directorates/stmd/space-tech-research-grants/studying-passive-dust-mitigation-on-anisotropic-structured-surface/ #NASA #SpaceTechnologyResearchGrants
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Studying Passive Dust Mitigation on Anisotropic Structured Surface https://www.nasa.gov/directorates/stmd/space-tech-research-grants/studying-passive-dust-mitigation-on-anisotropic-structured-surface/ #NASA #SpaceTechnologyResearchGrants
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Engineering the Adhesion Mechanisms of Hierarchical Dust-Mitigating Nanostructures https://www.nasa.gov/directorates/stmd/space-tech-research-grants/engineering-the-adhesion-mechanisms-of-hierarchical-dust-mitigating-nanostructures/ #NASA #SpaceTechnologyResearchGrants
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Engineering the Adhesion Mechanisms of Hierarchical Dust-Mitigating Nanostructures https://www.nasa.gov/directorates/stmd/space-tech-research-grants/engineering-the-adhesion-mechanisms-of-hierarchical-dust-mitigating-nanostructures/ #NASA #SpaceTechnologyResearchGrants
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Studying Passive Dust Mitigation on Anisotropic Structured Surface https://www.nasa.gov/directorates/stmd/space-tech-research-grants/studying-passive-dust-mitigation-on-anisotropic-structured-surface/ #NASA #SpaceTechnologyResearchGrants
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Studying Passive Dust Mitigation on Anisotropic Structured Surface https://www.nasa.gov/directorates/stmd/space-tech-research-grants/studying-passive-dust-mitigation-on-anisotropic-structured-surface/ #NASA #SpaceTechnologyResearchGrants
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Engineering the Adhesion Mechanisms of Hierarchical Dust-Mitigating Nanostructures https://www.nasa.gov/directorates/stmd/space-tech-research-grants/engineering-the-adhesion-mechanisms-of-hierarchical-dust-mitigating-nanostructures/ #NASA #SpaceTechnologyResearchGrants
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Deformable Crumpled Nano-ball Coatings with Adaptable Adhesion and Mechanical Energy Absorption for Lunar Dust Mitigation https://www.nasa.gov/directorates/stmd/space-tech-research-grants/deformable-crumpled-nano-ball-coatings-with-adaptable-adhesion-and-mechanical-energy-absorption-for-lunar-dust-mitigation/ #NASA #SpaceTechnologyResearchGrants
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Developing High-Performance Bioinspired Surface Textures for Repelling Lunar Dust https://www.nasa.gov/directorates/stmd/space-tech-research-grants/developing-high-performance-bioinspired-surface-textures-for-repelling-lunar-dust/ #NASA #SpaceTechnologyResearchGrants
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Developing High-Performance Bioinspired Surface Textures for Repelling Lunar Dust https://www.nasa.gov/directorates/stmd/space-tech-research-grants/developing-high-performance-bioinspired-surface-textures-for-repelling-lunar-dust/ #NASA #SpaceTechnologyResearchGrants
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Deformable Crumpled Nano-ball Coatings with Adaptable Adhesion and Mechanical Energy Absorption for Lunar Dust Mitigation https://www.nasa.gov/directorates/stmd/space-tech-research-grants/deformable-crumpled-nano-ball-coatings-with-adaptable-adhesion-and-mechanical-energy-absorption-for-lunar-dust-mitigation/ #NASA #SpaceTechnologyResearchGrants
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Deformable Crumpled Nano-ball Coatings with Adaptable Adhesion and Mechanical Energy Absorption for Lunar Dust Mitigation https://www.nasa.gov/directorates/stmd/space-tech-research-grants/deformable-crumpled-nano-ball-coatings-with-adaptable-adhesion-and-mechanical-energy-absorption-for-lunar-dust-mitigation/ #NASA #SpaceTechnologyResearchGrants
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Developing High-Performance Bioinspired Surface Textures for Repelling Lunar Dust https://www.nasa.gov/directorates/stmd/space-tech-research-grants/developing-high-performance-bioinspired-surface-textures-for-repelling-lunar-dust/ #NASA #SpaceTechnologyResearchGrants
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Developing High-Performance Bioinspired Surface Textures for Repelling Lunar Dust https://www.nasa.gov/directorates/stmd/space-tech-research-grants/developing-high-performance-bioinspired-surface-textures-for-repelling-lunar-dust/ #NASA #SpaceTechnologyResearchGrants
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Deformable Crumpled Nano-ball Coatings with Adaptable Adhesion and Mechanical Energy Absorption for Lunar Dust Mitigation https://www.nasa.gov/directorates/stmd/space-tech-research-grants/deformable-crumpled-nano-ball-coatings-with-adaptable-adhesion-and-mechanical-energy-absorption-for-lunar-dust-mitigation/ #NASA #SpaceTechnologyResearchGrants