| A | B | C | D | E | F | G | H | I | J | K | L | M | N | O | P | Q | R | S | T | U | V | W | X | Y | Z | |
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1 | p | NOI Deadline | Proposal Deadline | Link to solicitation | ||||||||||||||||||||||
2 | A.8 PHYSICAL OCEANOGRAPHY | new awards ~ $1.5M : ~6-10 | 4/26/2024 | 5/29/2024 | https://nspires.nasaprs.com/external/solicitations/summary.do?solId={02622166-5DBC-DABA-97C2-BA460781F101}&path=&method=init | |||||||||||||||||||||
3 | 2.1 Ocean physics of a warming Earth | |||||||||||||||||||||||||
4 | Priority will be given to proposals that quantify the ocean’s integral role in driving rapidly-evolving climate-change process within the global Earth system. | |||||||||||||||||||||||||
5 | 2.2 Interpreting future climate projections with NASA data | |||||||||||||||||||||||||
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7 | A.3 OCEAN BIOLOGY AND BIOGEOCHEMISTRY | new awards ~ $3M : ~10 | 4/10/2024 | 7/3/2024 | https://nspires.nasaprs.com/external/solicitations/summary.do?solId={BFA7BFA1-0B2E-D760-514E-10B01B0D7D6A}&path=&method=init | |||||||||||||||||||||
8 | • Tipping points and episodic events, and their impacts to aquatic ecosystems. • Advancing the remote detection of floating debris. • Refining our predictive understanding of the ocean biological pump. • Successor studies. | |||||||||||||||||||||||||
9 | Episodic: Proposals that investigate the purposeful manipulation of an ecosystem that creates a measurable episodic disturbance over scales of over multiple square kilometers can also be considered in support of potential marine carbon dioxide removal (mCDR) activities, enabling assessments of ecosystem health before, during, and after mCDR activities and for testing and refining ocean climate models that will inform further mCDR efforts. | |||||||||||||||||||||||||
10 | Successor: follow-on research from past NASA OBB research projects submitted to this sub-element must (1) offer demonstrable scientific advances beyond the earlier study, and (2) explain the continuing relevance and priority of the research to be pursued within the framework of the OBB Program. | |||||||||||||||||||||||||
11 | A.15 MODELING, ANALYSIS, AND PREDICTION | new awards ~ $7M : ~30 | 5/31/2024 | 7/1/2024 | https://nspires.nasaprs.com/external/solicitations/summary.do?solId={BF63B83F-3FB3-4CA0-9587-50349CAD0D38}&path=&method=init | |||||||||||||||||||||
12 | NASA GEOS chemistry/climate and transport modeling. | |||||||||||||||||||||||||
13 | Modeling, Analysis, and Prediction Research Themes | • Clouds in Earth System Models | ||||||||||||||||||||||||
14 | • Extremes in the Earth System | |||||||||||||||||||||||||
15 | • Constituents in the Climate System (aerosols and chemical species) | |||||||||||||||||||||||||
16 | A.19 ATMOSPHERIC COMPOSITION: MODELING AND ANALYSIS PROGRAM | new awards ~ $3.4M : ~16-22 | N/A | 8/16/2024 | https://nspires.nasaprs.com/external/solicitations/summary.do?solId={E31F54DC-CB26-735E-2278-C02900A1C793}&path=&method=init | |||||||||||||||||||||
17 | Atmospheric Composition Modeling and Analysis Program (ACMAP) Activities | |||||||||||||||||||||||||
18 | • Tropospheric air quality and oxidation efficiency, • Pollution sourced aerosols where they impact cloud properties, • Stratospheric chemistry, including ozone depletion, and • Chemistry/climate interactions. | |||||||||||||||||||||||||
19 | A.16 CRYOSPHERIC SCIENCE | new awards ~ $1.5M : ~10 | 9/13/2024 | 10/16/2024 | https://nspires.nasaprs.com/external/solicitations/summary.do?solId={A7EEA728-6627-A7AC-24F4-9E1F9B779C1E}&path=&method=init | |||||||||||||||||||||
20 | The Cryospheric Sciences Program supports investigations of polar ice, including the Antarctic and Greenland ice sheets, polar glaciers, and sea ice in the Arctic and Southern Oceans, that are based on satellite and airborne remote sensing. The program seeks to improve our understanding of cryospheric processes, link the cryosphere to the global climate system, and/or advance predictive capabilities. | |||||||||||||||||||||||||
21 | - Improve our understanding of cryospheric processes using remote sensing data - Develop new or enhanced algorithms for extracting cryospheric information. Utilizing multi-sensor or multi-mission data sets to constrain or reconcile retrievals is especially encouraged. - Explore the synergistic use of interdisciplinary (ice – ocean – atmosphere) data sets. | |||||||||||||||||||||||||
22 | A.26 RAPID RESPONSE AND NOVEL RESEARCH IN EARTH SCIENCE | no specific budget; available funds; no due date | N/A | No deadline | https://nspires.nasaprs.com/external/solicitations/summary.do?solId={7CBDCC1F-94AF-8E8E-17E0-8F5D3CA1B1E7}&path=&method=init | |||||||||||||||||||||
23 | to consider proposals for exceptionally novel scientific research that includes remote sensing of the Earth which is not responsive to any other current or recent NASA solicitation (see below). ESD recognizes that such proposals offer the possibility for major scientific breakthroughs and new approaches to remote sensing and knowledge of the Earth system. ESD offers this subelement as a mechanism for researchers to develop their ideas and justify near-term investment through an A.26-3 important new capability or scientific application that will advance ESD goals and objectives. | |||||||||||||||||||||||||
24 | Topical Workshops, Symposiums, and Conferences (TWSC-24) | no dedicated funding; no due date | N/A | No deadline | https://nspires.nasaprs.com/external/solicitations/summary.do?solId={805EEF3B-DC64-A447-3EAD-66D23A9501EE}&path=&method=init | |||||||||||||||||||||
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26 | A.36 THE SCIENCE OF PACE | ROSES suppliment call for proposals pending: | TBD | TBD | https://nspires.nasaprs.com/external/solicitations/summary.do?solId={027B9977-DC14-0CF8-61F2-3DEF17980BE7}&path=&method=init | |||||||||||||||||||||
27 | climate-quality global ocean color measurements that are essential for understanding the carbon cycle and global ocean ecology and determining how the ocean’s role in global biogeochemical cycling and ocean ecology both affects and is affected by climate change. PACE is also anticipated to enable and expand aerosol and cloud studies focused on reducing the largest uncertainty in radiative forcing of the Earth System. The polarimetric measurements will provide extended data records on clouds and aerosols, as well as complement the aforementioned ocean color observations, provide better quantitative estimates of aerosol type and height, improve our understanding of atmospheric dynamics and radiative sciences, and advance the atmospheric correction capabilities for ocean color remote sensing. | |||||||||||||||||||||||||
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30 | ROSES supplement call for proposals pending: | |||||||||||||||||||||||||
31 | U.S. universities and other eligible organizations for graduate student- designed and performed research projects that contribute to SMD's science, technology, and exploration goals. The Future Investigator (FI), i.e., the student, shall have the primary initiative to define the proposed FINESST research project and must be the primary author, with input or supervision from the proposal's Principal Investigator (PI), as appropriate. | |||||||||||||||||||||||||
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