Rocket Ecology

Practical guides for greener everyday living

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  • Human-Related Microbes May Survive Moon’s South Pole, NASA Finds

    The gray-brown, heavily cratered Moon dominates the frame against black space, with a partially lit crescent Earth setting behind its upper-left edge.
    This image was taken by an Artemis II astronaut from the Orion capsule in April 2026, as the spacecraft traveled past the Moon and back over 10 days. The gray-brown, heavily cratered Moon dominates the frame against black space, with a partially lit crescent Earth setting behind its upper-left edge.
    NASA

    Lee esta historia en español aquí.

    Some of Earth’s microbes likely to hitch a ride to space with human explorers could survive in the shaded nooks and crannies of the Moon’s South Pole region, NASA scientists say. 

    Published on Aug. 19, 2026, in Science Advances, these findings highlight a need to better understand microbial persistence in extreme lunar environments. As humans build a permanent presence on the Moon, it may become difficult to distinguish ancient lunar chemistry from contamination delivered by visiting astronauts. The concern extends beyond the Moon and on to Mars, scientists say. 

    “Humans are natural explorers, and with them come their voices, their memories … and their microbes,” said Prabal Saxena, a planetary scientist who led the study from NASA’s Goddard Space Flight Center in Greenbelt, Maryland. “For some scientists, myself included, that reality can be unsettling. But it also creates an opportunity to turn an imperfect situation into a useful experiment.”

    Bringing microbes along is unavoidable: Humans have, on average, 1 million bacteria living on each patch of skin the size of a pencil eraser, for example. These bacteria vent from spacesuits and habitats. Though the paper’s authors worry about contamination interfering with the search for chemical clues to ancient geology or biology, they also argue that the Moon should be used as a natural lab. In shaded areas around the South Pole, scientists could carefully test the real-life limits of microbial survival in an environment that can’t easily be reproduced on Earth. 

    The Apollo program landed six pairs of astronauts on the Moon between 1969 and 1972. All six landing sites are near the lunar equator. In this visualization, the Apollo sites are contrasted with the South Pole, an area with enormous potential for future exploration. Time passes as we zoom toward Shackleton crater at the South Pole, revealing illumination conditions quite different from those near the equator. While many craters remain in permanent shadow, some nearby mountains and ridges are in persistent sunshine, making them attractive candidates for solar power and long-term habitation.
    NASA’s Scientific Visualization Studio/Ernie Wright

    Before any surface science can happen, scientists need a baseline measurement of what contaminants humans bring, the authors say.

    “We need to understand what was there before us, because when we go to Mars to search for signs of life beyond our planet, we will want to make sure it’s not stuff we brought,” said Andrew Needham, a NASA Goddard-based paper co-author who is an Artemis contamination‑control scientist for lunar samples.

    Even with strict sterilization procedures, some organisms are stubbornly resilient. A good example is Aspergillus niger, which is a fungus that thrives in warm, damp places like household bathrooms and heating, ventilation, and air conditioning systems. Astronauts have sampled it inside the International Space Station, and experiments demonstrate that the fungus can survive outside the station as well. Aspergillus niger was one of five microbes, including bacteria and fungi, selected for this study because of its known toughness in spaceflight environments. 

    That microbes survived on the space station’s exterior surprised scientists. These species are typically not considered “extremophiles” that can withstand harsh conditions, such as the vacuum of space, according to Aaron Regberg, a geomicrobiologist at NASA’s Johnson Space Center in Houston.

    “I would have expected these microbes to have dried out,” said Regberg, who studies space station bacteria and was a co-author on the paper.

    Astronaut conducts scientific work aboard the International Space Station, floating in microgravity surrounded by equipment and research tools.
    NASA astronaut Kate Rubins on Oct. 14, 2016, collecting microbes in the Japanese Experiment Module aboard the International Space Station.
    JAXA/Takuya Onishi

    He pointed out that NASA often bakes robotic spacecraft at temperatures above 400 degrees Fahrenheit to reduce the number of living organisms on them. But that’s not possible with astronauts, so contamination concerns take on new meaning in crewed exploration of the Moon’s south polar environment.

    A clearer picture of where microbes might survive comes from understanding how sunlight behaves at the poles. Survival in this study means the microbe can stay alive for at least one Earth day, which does not mean that it can grow and reproduce.

    Because the Moon has a very small tilt on its axis, the view from its poles is of a Sun that appears to hover just above the horizon, skimming the surface like a flashlight laying on a table. As a result, elevated parts of the surface, including crater ridges, mountains, and even small bumps, block light from reaching low-lying terrain. This produces pockets of shadowed areas that can remain cold and preserve water, as well as shield fragile molecules and possible microorganisms from lethal radiation.

    With that scientific context in mind, the team set out to test which Earth microbes could survive extreme polar conditions. They focused on organisms commonly found in spaceflight environments and those common on human skin. Besides Aspergillus niger, these included Bacillus subtilis, Staphylococcus aureus, Deinococcus radiodurans, and several species of Fusarium. Based on an analysis of previous studies, the scientists noted the maximum amount of heat and ultraviolet (UV) radiation each organism can withstand.

    Then, the organisms were tested in simulations of three regions near the lunar South Pole — Nobile Rim, Connecting Ridge, and De Gerlache Rim. Those simulations used detailed environmental maps built from elevation and temperature data collected by instruments aboard NASA’s Lunar Reconnaissance Orbiter, combined with models of how radiation strikes the surface.

    The models showed maps of “survivable niches” that range in size from a miles-wide crater floor to an astronaut’s boot print. Aspergillus niger, which was most resistant to UV radiation, was able to survive even in areas with some sunlight exposure. UV radiation is so deadly to most microbes that it’s used for sterilization in hospitals. 

    “When we think of the Moon, we don’t typically think of biology,” said Heather Graham, a paper co-author at NASA Goddard who helps develop tools and techniques for detecting biology that may look nothing like Earth’s. “But the Moon is a place where a cell can survive, so our first exploration of these sites should pay extra attention to our microbial hitchhikers and work hard to characterize lunar chemistry before our visits change what we will find.”

    The authors note that while some microbes can survive in a dormant state in regions around the South Pole, and thereby confuse some future scientific investigations, there is no evidence the Moon has key ingredients to sustain growth and replication. Such ingredients include liquid water, which typically requires an atmosphere and moderate temperatures.  

    For more information, visit:

    https://science.nasa.gov/astrobiology

    About the Author

    Lonnie Shekhtman

    Lonnie Shekhtman

    Senior Science Writer

    Shekhtman helps communicate NASA planetary science to the world through news and feature stories on NASA.gov, videos for NASA+ and YouTube, and by working with the media. She reports on lunar and Mars science and exploration; NASA’s search for life; missions to Venus, Titan, and Jupiter’s Trojan asteroids; and many other topics related to NASA’s exploration of our solar system and beyond.

    Source: science.nasa.gov

  • NASA Astronaut Reid Wiseman at Freedom 250 Grand Prix

    NASA astronaut Reid Wiseman looks up at another person speaking. He is sitting in the second seat of a racecar. He's wearing a white helmet with his last name on the visor.
    NASA/Joel Kowsky

    NASA astronaut and Artemis II commander Reid Wiseman is seen in the two-seat IndyCar as he prepares for driver Conor Daly to take him on a lap ahead of the start of the Freedom 250 Grand Prix, Sunday, Aug. 23, 2026, in Washington, D.C.

    Image credit: NASA/Joel Kowsky

    Source: www.nasa.gov

  • Astronauts Anil Menon and Sophie Adenot on Spacewalk

    From left, Expedition 75 flight engineers Anil Menon of NASA (partially obscured and wearing the spacesuit with a red stripe on the legs) and Sophie Adenot of ESA (European Space Agency) work outside the International Space Station.
    NASA

    From left, Expedition 75 flight engineers Anil Menon of NASA (partially obscured and wearing the spacesuit with a red stripe on the legs) and Sophie Adenot of ESA (European Space Agency) work together during a six‑hour and 23‑minute spacewalk outside the International Space Station on Aug. 18, 2026. The pair will finish installing a high-speed communications antenna on Aug. 25, 2026.

    Watch the spacewalk live.

    Image credit: NASA

    Source: www.nasa.gov

  • NASA Sets Spacewalk for Station Maintenance, Live Coverage Planned

    Expedition 74 flight engineers Sophie Adenot of ESA (European Space Agency) and Jessica Meir of NASA work together inside the International Space Station’s Quest airlock. Adenot is wearing a spacesuit in a powered and pressurized configuration to test its mobility, comfort, and optimal fit. Meir also assisted Adenot in conducting suit leak and pressure checks while verifying the suit’s communications hardware and life‑support systems.
    NASA astronaut Jessica Meir and ESA (European Space Agency) astronaut Sophie Adenot work together inside the International Space Station’s Quest airlock during spacesuit fit and leak checks.
    Credit: NASA

    NASA will provide coverage as two astronauts step outside the International Space Station on Tuesday, Sept. 1, to replace a spacecraft navigational aid and complete several maintenance tasks in support of space station operations.

    Watch live coverage beginning at 7 a.m. EDT. The spacewalk is expected to start at approximately 8:30 a.m. and last about six and a half hours. NASA’s spacewalk coverage will stream through a variety of platforms. Learn where to watch online:

    https://nasa.gov/live

    During U.S. spacewalk 99, NASA astronaut Jessica Meir and ESA (European Space Agency) astronaut Sophie Adenot will replace a retroreflector on the forward port of the space station’s Harmony module to support spacecraft navigation during rendezvous and docking operations. After installing the reflector, the crew will work to install jumper cables for the data-relay systems, prepare the Alpha Magnetic Spectrometer’s radiator for future maintenance, and replace a high-definition camera on the station’s truss.

    Adenot will serve as spacewalk crew member 1 and will wear a suit with red stripes. Meir will serve as crew member 2 and will wear an unmarked suit.

    This will be Meir’s seventh spacewalk and Adenot’s third. Meir will move into third all-time for total spacewalks among women at NASA, trailing Peggy Whitson (10) and Suni Williams (9). The excursion also marks the 284th spacewalk supporting space station assembly, maintenance, and upgrades.

    To learn more about International Space Station research, operations, and its crews, visit:

    https://www.nasa.gov/station

    -end-

    Jimi Russell
    Headquarters, Washington
    202-358-1100
    [email protected]

    Sandra Jones / Anna Schneider
    Johnson Space Center, Houston 
    281-483-5111
    [email protected] / [email protected] 

    Details

    Last Updated

    Aug 26, 2026

    Editor
    Jennifer M. Dooren

    Source: www.nasa.gov

  • NASA Astronaut Jonny Kim Departs Agency to Continue Military Service

    NASA astronaut Jonny Kim poses for a portrait at NASA’s Johnson Space Center in Houston, Texas.
    NASA astronaut Jonny Kim poses for a portrait at NASA’s Johnson Space Center in Houston.
    Credit: NASA/Josh Valcarcel

    After nearly a decade of service to NASA, including an eight-month science expedition aboard the International Space Station, astronaut Jonny Kim’s last day at the agency is Thursday. He will continue serving as lieutenant commander in the U.S. Navy.

    Kim launched to the space station in April 2025 aboard the Soyuz MS‑27 spacecraft to conduct scientific research as a flight engineer during Expeditions 72/73. During the mission, he orbited Earth 3,920 times, traveled nearly 104 million miles, and contributed to a broad range of scientific investigations spanning technology development, Earth science, biology, and human research critical for future exploration.

    “Jonny Kim represents the very best of NASA, a person who continually pushed the boundaries of exploration while inspiring countless others,” said NASA Administrator Jared Isaacman. “His contributions aboard the International Space Station advanced critical science that will shape NASA’s future missions for decades to come. We are grateful for his dedication to our nation and to the pursuit of knowledge, and we wish him success as he continues his service in the U.S. Navy.”

    Serving as the U.S. Operating Segment lead for the second half of Expedition 73, Kim oversaw operations across the station’s international modules. During the expedition, the station achieved a historic milestone when every available docking port was occupied for the first time in 25 years. He also commanded the Canadarm2 robotic arm during the first capture of Northrop Grumman’s new Cygnus XL spacecraft, securing 11,000 pounds of supplies for the station. Kim and his Roscosmos crewmates landed safely in Kazakhstan in December 2025.

    “Jonny has been an integral part of the agency, and his immeasurable impact will be felt for generations to come,” said Vanessa Wyche, director of NASA’s Johnson Space Center in Houston. “From advancing groundbreaking science to inspiring the next generation, Jonny has been an incredible source of inspiration to our nation. His exceptional talent, determination, and grit will leave a lasting legacy at NASA.”

    Kim was selected as a NASA astronaut in 2017 and completed two years of astronaut candidate training, which included instruction in space station systems, Russian language, robotics, T‑38 flight operations, geology, survival training, and spacewalk preparation.

    He later supported station operations as a capsule communicator, or capcom, in NASA’s Mission Control Center at Johnson. Kim also contributed to Artemis program development through his work in the astronaut exploration branch, leading the astronaut crew operations branch, and serving as increment lead for Expedition 65. His experiences as a Navy SEAL, physician, and naval aviator provided unique perspectives in mission operations and crew support.

    “Jonny approached every assignment with humility, precision, and steadfast commitment to the mission,” said Scott Tingle, chief of the Astronaut Office at NASA Johnson. “His combination of medical training, operational experience, and engineering insight strengthened our team and contributed to advancements in exploration and space station operations.”

    Born in Los Angeles, Kim enlisted in the U.S. Navy after graduating high school in 2002. He trained as a hospital corpsman and completed Basic Underwater Demolition/SEAL training before joining SEAL Team Three. Over the course of more than 100 combat operations, he served as a medic, sniper, navigator, and point man, earning the Silver Star, Bronze Star with Combat “V,” and numerous additional commendations.

    He earned a bachelor’s degree in mathematics from the University of San Diego and a doctor of medicine from Harvard Medical School. He completed his internship at Massachusetts General Hospital and Brigham and Women’s Hospital in Boston. Kim became a dual-designated naval aviator and flight surgeon, completing flight training at Naval Air Stations Corpus Christi in Texas and Whiting Field in Florida, and aerospace medical training at the Naval Aerospace Medical Institute at Naval Air Station Pensacola.

    Kim is returning to active duty to finish out the remainder of his military career within naval aviation training.

    “Contributing to space exploration and serving NASA has been the honor of a lifetime,” said Kim. “Throughout my career, I’ve learned that beyond the missions, the training, and the hardware, success always comes down to the people. They are our greatest asset, and leading with love and empathy is how we achieve the impossible. I look forward to carrying my commitment to service, my enduring love for space and technology, and the hard-earned lessons of this past decade into my next chapter to make a meaningful impact on humanity’s future.”

    To learn more about NASA’s astronauts and human space exploration, visit:

    https://www.nasa.gov/astronauts

    -end-

    Jimi Russell
    Headquarters, Washington
    202-358-1100
    [email protected]

    Anna Schneider
    Johnson Space Center, Houston
    281-483-5111
    [email protected]

    Details

    Last Updated

    Aug 27, 2026

    Editor
    Jessica Taveau

    Source: www.nasa.gov

  • NASA’s Artemis II Crew Receives Congressional Space Medal of Honor

    The four members of the Artemis II mission stand on stage after receiving the Congressional Space Medal of Honor. To their right is President Trump.
    President Donald J. Trump awarded NASA astronauts Victor Glover and Christina Koch, CSA (Canadian Space Agency) astronaut Jeremy Hansen, and NASA astronaut Reid Wiseman with the Congressional Space Medal of Honor on Aug. 28, 2026, at NASA’s Johnson Space Center in Houston.
    NASA/John Kraus

    From left to right: NASA astronauts Victor Glover and Christina Koch, CSA (Canadian Space Agency) astronaut Jeremy Hansen, and NASA astronaut Reid Wiseman receive the Congressional Space Medal of Honor from President Donald J. Trump on Aug. 28, 2026, for their service during the Artemis II mission.

    The Congressional Space Medal of Honor was authorized by Congress in 1969 to recognize an astronaut who in the performance of duties has distinguished himself or herself by exceptionally brave and meritorious efforts, and contributions to the welfare of the nation and humanity. There now are 34 recipients of the award since the beginning of the space program, including the crews of Apollo 1, Challenger, and Columbia who received the award posthumously.

    Image credit: NASA/John Kraus

    Source: www.nasa.gov

  • NASA Invites Media to Turkey Artemis Accords Signing Ceremony

    NASA insignia
    Credit: NASA

    Turkey will sign the Artemis Accords during a ceremony at 2:30 p.m. EDT Monday, Aug. 31, at NASA Headquarters in Washington, becoming the 71st country signatory.

    NASA Administrator Jared Isaacman will host Turkish Minister of Industry and Technology Mehmet Fatih Kacır for the ceremony, together with U.S. Department of State officials.

    This event is in person only. Media interested in attending must RSVP no later than 11 a.m. on Aug. 31, to: [email protected]. NASA’s media accreditation policy is online.

    In 2020, during the first Trump Administration, the United States, led by NASA and the State Department, joined with seven other founding nations to establish the Artemis Accords, responding to the growing interest in lunar activities by both governments and private companies.

    The Artemis Accords introduced the first set of practical principles aimed at enhancing the safety, transparency, and coordination of civil space exploration on the Moon, Mars, and beyond.

    Learn more about the Artemis Accords at:

    https://www.nasa.gov/artemis-accords

    -end-

    Camille Gallo / Elizabeth Shaw 
    Headquarters, Washington 
    202-358-1600 
    [email protected] / [email protected] 

    Details

    Last Updated

    Aug 27, 2026

    Editor
    Jennifer M. Dooren

    Source: www.nasa.gov

  • The Forested Floodplains of Congaree National Park

    A brown, meandering river cuts through a band of dark green forest in Congaree National Park. Labels point out an oxbow lake and meander in the river. Former river channels called paleochannels appear lighter green than other forested areas.
    The OLI on Landsat 9 captured this image of the Congaree River winding through floodplain forests in Congaree National Park on August 18, 2025.
    NASA Earth Observatory/Michala Garrison

    Among the 63 U.S. national parks, few are as defined by a single river’s floodplain as Congaree National Park in South Carolina. While the features are also prominent in other parks, a full 80 percent of Congaree National Park lies within the Congaree River floodplain.

    It’s a place home to one of the largest intact tracts of old-growth bottomland hardwood forests in the United States. In this image captured by the OLI (Operational Land Imager) on Landsat 9, the river winds through the forested plain, along with curving bands of green that trace old channels, ridges, and swales left behind as the river gradually migrated across it. Slight differences in elevation in these paleochannels and other landforms affect how frequently they flood, producing distinct ecosystems that appear in contrasting shades of green.

    The river flows through flat, soft terrain, which encourages the formation of bends and meanders. Water typically flows faster on the outside of bends, leading to more rapid erosion as the channel carves into the outer riverbank. It moves more slowly on the inside of bends, resulting in the deposition of sediment and the growth of sandy features called point bars. Over time, this process can cut off a bend from the main river channel, forming U-shaped oxbow lakes.

    The National Park Service lists Weston Lake, 1.2 miles (1.9 kilometers) from the visitor center, as one of the park’s most permanent oxbow lakes, noting that it is relatively deep and lacks the shallow clay and silt layer found in most of the park’s other oxbow lakes, such as Devil’s Elbow. On the right side of the image is Bates Old River, a roughly 4-mile-long abandoned channel of the Congaree River and one of the longest oxbow lakes in South Carolina. Over time, abandoned channels and oxbow lakes can fill with sediment and become shallow wetlands. Some of these low-lying, water-filled features are known as sloughs, where flood-tolerant cypress-tupelo forests tend to grow.

    While loggers targeted forests along the Congaree in the 1880s, challenges such as frequent flooding, interminably muddy roads, and mosquito-plagued conditions meant that most of the floodplain forests escaped the widespread logging that transformed other parts of the Southeast. By the 1950s, conservationists had begun to recognize how rare old-growth forests of this type had become in the region. Congress designated the area a national monument in 1976, and it became a national park in 2003.

    As the river snakes its way through the park’s mostly flat terrain, it overflows its banks several times per year, usually in the winter and early spring but also in the summer and fall after hurricanes and major rainstorms. These floods distribute broad layers of nutrient-rich silt throughout the floodplain, nourishing the forests and contributing to the high concentration of unusually large trees in the park.

    Over the decades, Congaree National Park has harbored a remarkable array of giant “champion” trees that have held national and state size records for their species. Though individual trees have gained and lost champion status as they have been damaged, have died, or been surpassed by newly measured trees elsewhere, Congaree trees such as the possumhaw (Ilex decidua), water hickory (Carya aquatica), loblolly pine (Pinus taeda), laurel oak (Quercus laurifolia), swamp tupelo (Nyssa biflora), and sweetgum (Liquidambar styraciflua) have held records at times.

    During this National Park Week, celebrate by exploring Earth Observatory’s U.S. National Parks from Space collection. You can also check out the offerings of Earth to Sky, a collaborative program that connects NASA science with park service rangers across the nation.   

    NASA Earth Observatory image by Michala Garrison, using Landsat data from the U.S. Geological Survey. Story by Adam Voiland.

    References & Resources

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    Source: science.nasa.gov

  • APOD: 2026 August 28 – The Sky Turns Above Paranal

    APOD

    Astronomy Picture of the Day

    Discover the cosmos! Each day a different image or photograph of our fascinating universe is featured, along with a brief explanation written by a professional astronomer.

    A picture of star trails in the night sky above a telescope.

    The Sky Turns Above Paranal

    Explanation: At the latitude of ESO’s Paranal Observatory in Chile, about 25 degrees south, Earth’s rotation moves the planet’s surface eastward at over 1,500 kilometers per hour. And while that’s faster than the speed of sound at sea level, the motion is imperceptible. Still, that motion can be revealed in the apparent rotation of the night sky by photographing star trails. This star trail image was composed from a digital stack of 300 consecutive 25-second exposures made with a camera fixed to a tripod to trace the star trail arcs. The graceful arcs are concentric and centered at the south celestial pole, the southern hemisphere extension of Earth’s axis of rotation into space. One of the observatory’s operating 1.8 meter auxiliary telescopes, AT 3, appears beneath the south celestial pole, faintly illuminated in the foreground of this well-planned scene from a rotating planet.

    APOD’s main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod

    Tomorrow’s picture: pixels in space

    Date August 28, 2026
    Credit & Copyright: Osvaldo Castillo
    Authors & editors: Jerry Bonnell, Cecilia Chirenti, Robert Nemiroff, Keighley Rockcliffe
    A service of: ASD at NASA / GSFC,
    NASA Science Activation & Michigan Tech. U.

    Source: science.nasa.gov

  • Grants

    6 Min Read

    Grants

    The NSSC supports the Agency’s internal effort to create an environment conducive to streamlining and simplifying grants and cooperative agreements. The National Aeronautics and Space Administration (NASA), through the establishment of the NSSC, has transitioned to a consolidated model for the award and administration of all Agency grants and cooperative agreements. The consolidation is designed to achieve efficient and effective service, improve data quality, standardize processes, leverage skills and investments, and provide economies of scale.

    *Notice*

    The Payment Management System (PMS) is currently experiencing issues affecting Federal Financial Report (FFR) generation. Impacted NASA grant recipients will not be considered noncompliant. NASA is working with PMS to resolve the issue. Updates will be posted here.

    Grants Status Requests

    To submit a request, visit NASA General Information Request Form and complete the form. You will receive an automated email with the most commonly requested grant status information.

    Important Instructions:

    • Ensure you enter a valid email address, as replies will only be sent via email.
    • The confirmation email may take a few minutes to arrive in your inbox.

    How to Fill Out the Form:

    1. Category: Select “Procurement including Grants & Cooperative Agreements.”
    2. Procurement Area: Choose “Grants/Agreements.”
    3. Grants/Agreements Activity: Select “Grant Status.”
    4. Required Information: Provide either a Grant Number, Purchase Requisition Number, or both.

    Memorandum for NASA Grantee Community

    Guidance Regarding OMB Memorandum M-25-14 and Recent Temporary Restraining Orders

    Update on Diversity, Equity, Inclusion, and Accessibility (DEIA) Executive Orders – January 29, 2025
    On January 23, 2025, NASA’s Office of Procurement (OP) released a memorandum for the NASA contractor and grant community regarding Executive Order “Initial Rescission of Harmful Executive Orders and Actions” and the Office of Personnel Management’s (OPM) memorandum “Initial Guidance Regarding DEIA Executive Orders.”

    Per OP’s memo, NASA grant and cooperative agreement recipients shall immediately cease and desist all DEIA activities required for their grant. This work may include but is not limited to: DEIA plan requirements, training, workshops, reporting, considerations for staffing, or any other direct or indirect grant activity related to DEIA. All grant recipients shall notify their cognizant Grant Officer if they identify requirements within their grants that are in violation of this guidance. Your Grant Officer’s contact information can be found on your NF 1687, Notice of Award for Grant and Cooperative Agreement (NOA).

    Thank you for your work and partnership with NASA. 

    NASA Grant and Cooperative Agreement Terms and Conditions

    In FY2025, NASA separated the Terms and Conditions from the GCAM to create a standalone document. This document outlines both the general and specific terms and conditions and applies to all awards issued under 2 CFR 1800 (NASA’s adoption of 2 CFR 200.)
    NASA Grant and Cooperative Agreement Terms and Conditions 7-15-2026

    Request for Supplemental Grant and Cooperative Agreement Actions

    Administrative Supplement Requests Templates :

    No Cost Extension (NCE) Request Form

    Other Administrative Supplement Request Form

    Principal Investigator (PI) Change Request Form

    Period of Performance (POP) Change Form

    Submit via email to NSSC-ADMIN-SUPPLEMENT REQUEST

    PI Transfer Requests:

    Submit via email to NSSC-Grants-PI-Transfer

    NASA Insignia Guidelines

    Grantees are strongly encouraged to use the NASA Insignia Format identified in the guidelines at NASA Insignia Guidelines for NASA Grantees. These guidelines aim to increase awareness of NASA’s mission activities via Grantee partnerships for a broader and more diverse population.

    Payment Management System

    NASA uses a service provider, currently the Department of Health and Human Services (HHS) Payment Management System (PMS), to provide Federal funds to recipients. PMS will provide instructions to the recipients for registering and requesting funds through the system.
     

    Routine Monitoring

    NASA is responsible for routine post-award monitoring on all awards, regardless of the award’s risk determination. At a minimum, routine monitoring includes reviewing award recipients’ annual performance reports, semi-annual Federal Financial Report (FFR), and Transactions Testing Review.

    Research Performance Progress Reports

    All NASA award recipients must submit annual performance reports. Annual reports are due to NASA 60 days prior to the annual anniversary of the award’s POP start date (e.g., if the POP of an award is October 1 – September 30, the report would be due 60 days prior to October 1.)

    Federal Financial Reports (SF-425)

    Recipients will submit their semi-annual FFRs in PMS:

    Period 1 (October 1 – March 31): Due by April 30 each year.

    Period 2 (April 1 – September 30): Due by October 30 of each year.

    Final FFRs are due 120 days after the end of the POP

    Additional information and training are available on the Payment Management System website at https://pms.psc.gov/. The PMS help desk number is 1-877-614-5533. 

    Forms

    Post-Award Certifications and Representations

    NASA Biographical Sketch Form

    Current and Pending Support (CPS) Form

    NASA Pre-Award and Post-Award Disclosure Requirements

    Regulations and Guidance

    Regulations

    Electronic Code of Federal Regulations

    Guidance

    NASA Grant and Cooperative Agreement Manual (GCAM): NASA’s Grant Manual for Proposers and Recipients

    The NASA Grant and Cooperative Agreement Manual (GCAM) provides pre and post award policy guidance to NASA proposers and award-managing personnel and award recipients to implement government-wide and NASA-specific regulations for applying for, awarding and administering grants and cooperative agreements with educational and non-profit organizations; State, local, and Indian tribal governments; and for-profit organizations.

    NASA Grant and Cooperative Agreement Terms and Conditions

    In FY2025, NASA separated the Terms and Conditions from the GCAM to create a standalone document. This document outlines both the general and specific terms and conditions and applies to all awards issued under 2 CFR 1800 (NASA’s adoption of 2 CFR 200.)

    Research Terms and Conditions (For Research Awards Issued Prior to October 1, 2024)

    NASA implemented the Federal-wide research terms and conditions for all research and research-related grant and cooperative agreement awards issued under 2 CFR 1800 (NASA’s adoption of 2 CFR 200). The Research Terms and Conditions implement the requirements of the Uniform Guidance and includes three companion documents:

    RTC Appendix A: Prior Approval Matrix, RTC Appendix B: Subaward Requirements, and RTC Appendix C: National Policy Requirements).

    The Research Terms and Conditions and companion documents are accessible on the NSF website.

    NASA Office of Inspector General

    To file a complaint regarding denial of equal opportunity or discrimination based on race, color, national origin, sex, disability, or age; go to

    https://oig.nasa.gov/hotline.html
    1-800-424-9183
    300 E Street, S.W. Suite 8V39
    Washington, DC 20546-0001
    NASA OIG Hotline
     http://missionstem.nasa.gov/filing-a-complaint.html​​​​​​​

    Resources

    Grants.gov
    NSSC Grants Payment Package
    NASA Research Opportunities Online (NSPIRES)
    System for Award Management (SAM)

    Source: www.nasa.gov