Packet identity

Packet ID
resources:bucket-15
Packet SHA-256 identity
798cc33e0deede1d2e9143c38ac975d86cc7da9fc66ef8adb829281571e51f13
Corpus SHA-256 identity
8fa944604ca189f5a9216ca59f640ad2ca20972ad512f2f4970764716782e18d
Release ID
public-alpha-2026-07-26-research-visuals-r14
Source commit
3eb036fce3d711336c8c605625895e8a2e799ab0
Frozen corpus date
2026-07-25
Primary records
27
Reference sources
27

Questions and exclusions

Required questions

  1. Required question 1 (exact ID: question-1)
    Is each canonical record correctly identified, deduplicated, classified, dated, and scoped?
  2. Required question 2 (exact ID: question-2)
    Does the selection note explain relevance without automatically treating the resource as claim support?
  3. Required question 3 (exact ID: question-3)
    Are access, source class, version, retraction, rights, and transfer limits represented accurately?

Explicit exclusions

  • Atlas inclusion is not endorsement and does not make a source evidence for a claim.
  • Metadata review does not certify the full text, methods, data, or conclusions.

Requested controlled scopes: information-science, systems-engineering

Frozen-evidence decision window: 365 days from the packet freeze. Not applicable to this packet family.

Complete primary record set

Every record below has one primary packet owner. Decisions must bind to the exact record and packet fingerprints; a changed lesson body, evidence grade, citation, locator, source snapshot, requirement, policy, release, or commit expires the old packet.

  1. atlas-resource · core-20-7

    COSMIC Capstone Challenge 2026–27

    Record fingerprint
    dda51a665d292c19283bd99532d75bb9d8932fbe147b8483cf41684c25822d22
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    core-20-7
    Title
    COSMIC Capstone Challenge 2026–27
    Topic
    institutions-workforce
    Year
    2026
    Authors
    None recorded
    Publisher
    COSMIC
    Resource Type
    Official student challenge and professional-service opportunity
    Access
    official link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Verified At
    2026-07-26
    Selection Note
    Current official source for C3 challenge tracks, student, university, mentor, and judge pathways, deadlines, and published eligibility boundaries. Inclusion does not establish eligibility, registration, service, membership, sponsorship, affiliation, or a relationship.
  2. atlas-resource · ntrs-19720048512

    Navigation requirements for advanced deep space missions.

    Record fingerprint
    96cc1377e4013a38f0903f6911719c8762929f5f655ee7c73242c17eb24112f2
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-19720048512
    Title
    Navigation requirements for advanced deep space missions.
    Topic
    communications-navigation
    Year
    1972
    Published At
    1972-01-01T00:00:00.0000000+00:00
    Authors
    1. Friedman, L. D.
    2. Sohn, R. L.
    3. Moore, J. W.
    Publisher
    Legacy CDMS
    Resource Type
    Conference Proceedings
    Access
    open metadata
    Abstract
    Study of the navigation system requirements and capabilities for potential advanced deep space missions of the 1978 to 1990 era. Following a review of these potential missions, the mission-by-mission assessments of the critical navigation system requirements for a mission set selected are presented. The requirements are related to subsystem research and development implications and are used to formulate recommendations for future developments in navigation systems. Programmatic directions required for deep space navigation are presented.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Navigation requirements for advanced deep space missions.” covers Study of the navigation system requirements and capabilities for potential advanced deep space missions of the 1978 to; it materially informs GShips work on autonomous deep space navigation.
    Verified At
    2026-07-25
    Curation Topic
    autonomous-deep-space-navigation
    Evidence Boundary
    NTRS provides metadata and an abstract, not reviewed full text; methods, results, and current applicability remain unverified. Inclusion is contextual, not automatic claim evidence.
  3. atlas-resource · ntrs-19930018529

    Environmental Control and Life Support System

    Record fingerprint
    508acdbfd36b25d94c0181f95746c3baa815d121d34c95420cebdc53aa754c32
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-19930018529
    Title
    Environmental Control and Life Support System
    Topic
    life-support
    Year
    1990
    Published At
    1990-01-01T00:00:00.0000000+00:00
    Authors
    1. Ray, Charles
    2. Adams, Alan
    Publisher
    Legacy CDMS
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    Viewgraphs on the Environmental Control and Life Support System (ECLSS) for the space station are presented. The ECLSS is divided into six subsystems: temperature and humidity control (THC), atmosphere control and supply (ACS), atmosphere revitalization (AR), fire detection and suppression (FDS), water recovery management (WRM), and waste management (WM). Topics covered include: ECLSS subsystem functions; ECLSS distributed system; ECLSS functional distribution; CO2 removal; CO2 reduction; oxygen generation; urine processor; and potable water recovery.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 1990 conference paper from Legacy CDMS specifically covers “Environmental Control and Life Support System”; its abstract describes Viewgraphs on the Environmental Control and Life Support System (ECLSS) for the space station are presented. The ECLSS is divided into six subsystems: temperature and… This materially informs GShips regenerative life support.
    Verified At
    2026-07-25
    Curation Topic
    regenerative life support
    Evidence Boundary
    NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim.
  4. atlas-resource · ntrs-20000067639

    Transportation System Options For The Interstellar Probe Mission

    Record fingerprint
    d8019069f0360e441669cee898fd4318a8dcab44e6e0a4b2e22c3014e81fb147
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20000067639
    Title
    Transportation System Options For The Interstellar Probe Mission
    Topic
    mission-architecture
    Year
    2000
    Published At
    2000-05-22T00:00:00.0000000+00:00
    Authors
    1. Johnson, Charles Les
    Publisher
    Marshall Space Flight Center
    Resource Type
    Abstract
    Access
    open metadata
    Abstract
    NASA is considering a mission to explore near-interstellar space early in the next decade as the first step toward a vigorous interstellar exploration program. A key enabling technology for such an ambitious science and exploration effort is the development of propulsion systems capable of providing fast trip times. Advanced propulsion technologies that might support an interstellar precursor mission early in the next century include some combination of solar sails, nuclear electric propulsion systems, and aerogravity assists. For years, the scientific community has been interested in the development of solar sail technology to support exploration of the inner and outer planets. Progress in thin-film technology and the development of technologies that may enable the remote assembly of lar2e sails in space are only now maturing to the point where ambitious interstellar precursor missions can be considered. Electric propulsion is now being demonstrated for planetary exploration by the Deep Space I mission. The primary issues for it's adaptation to interstellar precursor applications include the nuclear reactor that would be required and the engine lifetime. A propulsion system concept for the proposed Interstellar Probe mission will be described for each.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for its comparison of solar sails, nuclear-electric propulsion, and aerogravity assists for a fast heliopause or near-interstellar precursor mission.
    Verified At
    2026-07-25
    Curation Topic
    interstellar precursors
    Evidence Boundary
    Only NTRS metadata and an abstract are open here; performance calculations and dated schedule assumptions were not reproduced. It is historical option-space context, not evidence that any propulsion system is ready.
  5. atlas-resource · ntrs-20000067685

    Manufacturing and NDE of Large Composite Structures for Space Transportation at MSFC

    Record fingerprint
    373537de35520466978e784614d2032a724818cbcf9b462167b1a7e5192c09c8
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20000067685
    Title
    Manufacturing and NDE of Large Composite Structures for Space Transportation at MSFC
    Topic
    ethics-alternatives
    Year
    2000
    Published At
    2000-01-01T00:00:00.0000000+00:00
    Authors
    1. McGill, Preston
    2. Russell, Sam
    Publisher
    Marshall Space Flight Center
    Resource Type
    Preprint (Draft being sent to journal)
    Access
    open full text
    Abstract
    This paper presents the Marshall Space Flight Center's (MSFC's) vision to manufacture, increase safety and reduce the cost of launch vehicles. Nondestructive evaluations of large composite structures are tested for space transportation at MSFC. The topics include: 1) 6 1/2 Generations of Airplanes in a Century; 2) Shuttle Safety Upgrades; 3) Generations of Reusable Launch Vehicles; 4) RLV Technology Demonstration Path; 5) Second Generation; 6) Key NASA Requirements; 7) X-33 Elements; 8) Future-X Pathfinder Projects and Experiments; 9) Focus Area Technical Goals; 10) X-34 Expanded View; 11) X-38 Spacecraft with De-Orbit Propulsion Stage (DPS); 12) Deorbit Module (DM) Critical Design Review (CDR) Design; 13) Forward Structural Adapter (FSA) CDR Design; 14) X-38 DPS CDR Design; 15) RLV Focused Propulsion Technologies; and 16) Challenges in Technology. This paper is presented in viewgraph form.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2000 preprint (draft being sent to journal) from Marshall Space Flight Center specifically covers “Manufacturing and NDE of Large Composite Structures for Space Transportation at MSFC”; its abstract describes This paper presents the Marshall Space Flight Center's (MSFC's) vision to manufacture, increase safety and reduce the cost of launch vehicles. Nondestructive evaluations of… This materially informs GShips ethics and alternatives.
    Verified At
    2026-07-25
    Curation Topic
    ethics and alternatives
    Evidence Boundary
    NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim.
  6. atlas-resource · ntrs-20030065746

    Principles for Integrating Mars Analog Science, Operations, and Technology Research

    Record fingerprint
    e996d6d40c411d00489640b0280f6d748952670c76da2ed9e40313b4a9e2e46c
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20030065746
    Title
    Principles for Integrating Mars Analog Science, Operations, and Technology Research
    Topic
    analogs-verification
    Year
    2003
    Published At
    2003-04-21T00:00:00.0000000+00:00
    Authors
    1. Clancey, William J.
    Publisher
    Ames Research Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    During the Apollo program, the scientific community and NASA used terrestrial analog sites for understanding planetary features and for training astronauts to be scientists. Human factors studies (Harrison, Clearwater, & McKay 1991; Stuster 1996) have focused on the effects of isolation in extreme environments. More recently, with the advent of wireless computing, we have prototyped advanced EVA technologies for navigation, scheduling, and science data logging (Clancey 2002b; Clancey et al., in press). Combining these interests in a single expedition enables tremendous synergy and authenticity, as pioneered by Pascal Lee's Haughton-Mars Project (Lee 2001; Clancey 2000a) and the Mars Society s research stations on a crater rim on Devon Island in the High Canadian Arctic (Clancey 2000b; 2001b) and the Morrison Formation of southeast Utah (Clancey 2002a). Based on this experience, the following principles are proposed for conducting an integrated science, operations, and technology research program at analog sites: 1) Authentic work; 2) PI-based projects; 3) Unencumbered baseline studies; 4) Closed simulations; and 5) Observation and documentation. Following these principles, we have been integrating field science, operations research, and technology development at analog sites on Devon Island and in Utah over the past five years. Analytic methods include work practice simulation (Clancey 2002c; Sierhuis et a]., 2000a;b), by which the interaction of human behavior, facilities, geography, tools, and procedures are formalized in computer models. These models are then converted into the runtime EVA system we call mobile agents (Clancey 2002b; Clancey et al., in press). Furthermore, we have found that the Apollo Lunar Surface Journal (Jones, 1999) provides a vast repository or understanding astronaut and CapCom interactions, serving as a baseline for Mars operations and quickly highlighting opportunities for computer automation (Clancey, in press).
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because it sets principles for integrating science, operations, and technology in Mars analogs, useful for designing testbeds without overstating transfer.
    Verified At
    2026-07-25
    Curation Topic
    human-analog-methods
    Evidence Boundary
    NTRS provides open full text, but this conference paper was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence.
  7. atlas-resource · ntrs-20070018852

    Promoting Lifelong Ocean Education: Shaping Tomorrow's Earth Stewards and the Science and Technology Workforce

    Record fingerprint
    e60e2efc99799bd1972480307dd5746e32cf44a7ccaa57657c114928a79e1941
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20070018852
    Title
    Promoting Lifelong Ocean Education: Shaping Tomorrow's Earth Stewards and the Science and Technology Workforce
    Topic
    institutions-workforce
    Year
    2006
    Published At
    2006-01-01T00:00:00.0000000+00:00
    Authors
    1. Meeson, Blanche
    Publisher
    Goddard Space Flight Center
    Resource Type
    Abstract
    Access
    open metadata
    Abstract
    The coming ocean observing systems provide an unprecedented opportunity to change both the public perception of our oceans, and to inspire, captivate and motivate our children, our young adults and even our fellow adults to pursue careers allied with the oceans and to become stewards of our Planet's last unexplored environment. Education plans for the operational component, the Integrated Ocean Observing System (IOOS), and for the research component, Ocean Research Interactive Observatory Networks (ORION), are designed to take advantage of this opportunity. In both cases, community recommendations were developed within the context of the following assumptions: 1. Utilize research on how people learn, especially the four-pronged model of simultaneous learner-centered, knowledge-center, assessment-centered and community-centered learning 2. Strive for maximum impact on national needs in science and technology learning 3. Build on the best of what is already in place 4. Pay special attention to quality, sustainability, and scalability of efforts 5. Use partnerships across federal, state and local government, academia, and industry. Community recommendations for 100s and ORION education have much in common and offer the opportunity to create a coherent education effort allied with ocean observing systems. Both efforts focus on developing the science and technology workforce of the future, and the science and technology literacy of the public within the context of the Earth system and the role of the oceans and Great Lakes in that system. Both also recognize that an organized education infrastructure that supports sustainability and scalability of education efforts is required if ocean observing education efforts are to achieve a small but measurable improvement in either of these areas. Efforts have begun to develop the education infrastructure by beginning to form a community of educators from existing ocean and aquatic education networks and by exploring needs and issues associated with using ocean observing information assets in education. Likewise efforts are underway to address workforce issues by a systematic analysis of current and future workforce and educational needs. These activities will be described as will upcoming opportunities for the community to participate in these efforts.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2006 abstract from Goddard Space Flight Center specifically covers “Promoting Lifelong Ocean Education: Shaping Tomorrow's Earth Stewards and the Science and Technology Workforce”; its abstract describes The coming ocean observing systems provide an unprecedented opportunity to change both the public perception of our oceans, and to inspire, captivate and motivate our… This materially informs GShips institutions and workforce.
    Verified At
    2026-07-25
    Curation Topic
    institutions and workforce
    Evidence Boundary
    Only NTRS metadata and abstract are open here; full-text methods and results were unavailable for this pass. Inclusion is contextual discovery support, not automatic evidence for a GShips claim.
  8. atlas-resource · ntrs-20070034204

    Future Mission Trends and their Implications for the Deep Space Network

    Record fingerprint
    f306a23034c5794937f6efbc2261114c16665c75b6eedb12b5acd5184b085444
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20070034204
    Title
    Future Mission Trends and their Implications for the Deep Space Network
    Topic
    mission-architecture
    Year
    2006
    Published At
    2006-09-19T00:00:00.0000000+00:00
    Authors
    1. Abraham, Douglas S.
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Conference Paper
    Access
    open metadata
    Abstract
    This viewgraph presentation discusses the direction of future missions and it's significance to the Deep Space Network. The topics include: 1) The Deep Space Network (DSN); 2) Past Missions Driving DSN Evolution; 3) The Changing Mission Paradigm; 4) Assessing Future Mission Needs; 5) Link Support Trends; 6) Downlink Rate Trends; 7) Uplink Rate Trends; 8) End-to-End Link Difficulty Trends; 9) Summary: Future Mission Trend Drivers; and 10) Conclusion: Implications for the DSN.
    Keywords
    1. mission trends
    2. mission demographics
    3. Deep Space Network (DSN)
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for its DSN demand-forecasting categories, including mission demographics, downlink and uplink trends, end-to-end link difficulty, and implications for network evolution.
    Verified At
    2026-07-25
    Curation Topic
    communications and navigation
    Evidence Boundary
    Only NTRS metadata and an abstract are open here; the viewgraphs, forecasts, and current relevance were not validated. Inclusion is historical planning context, not automatic claim evidence.
  9. atlas-resource · ntrs-20080016497

    Assessment of the NASA Astrobiology Institute

    Record fingerprint
    a61b5e914b76133ca6af2be33563f9010a60c37c2333e6add0ad6e742f42d519
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20080016497
    Title
    Assessment of the NASA Astrobiology Institute
    Topic
    destinations-astrobiology
    Year
    2008
    Published At
    2008-01-01T00:00:00.0000000+00:00
    Authors
    None recorded
    Publisher
    Headquarters
    Resource Type
    Book
    Access
    open metadata
    Abstract
    Astrobiology is a scientific discipline devoted to the study of life in the universe--its origins, evolution, distribution, and future. It brings together the physical and biological sciences to address some of the most fundamental questions of the natural world: How do living systems emerge? How do habitable worlds form and how do they evolve? Does life exist on worlds other than Earth? As an endeavor of tremendous breadth and depth, astrobiology requires interdisciplinary investigation in order to be fully appreciated and examined. As part of a concerted effort to undertake such a challenge, the NASA Astrobiology Institute (NAI) was established in 1998 as an innovative way to develop the field of astrobiology and provide a scientific framework for flight missions. Now that the NAI has been in existence for almost a decade, the time is ripe to assess its achievements. At the request of NASA's Associate Administrator for the Science Mission Directorate (SMD), the Committee on the Review of the NASA Astrobiology Institute undertook the assignment to determine the progress made by the NAI in developing the field of astrobiology. It must be emphasized that the purpose of this study was not to undertake a review of the scientific accomplishments of NASA's Astrobiology program, in general, or of the NAI, in particular. Rather, the objective of the study is to evaluate the success of the NAI in achieving its stated goals of: 1. Conducting, supporting, and catalyzing collaborative interdisciplinary research; 2. Training the next generation of astrobiology researchers; 3. Providing scientific and technical leadership on astrobiology investigations for current and future space missions; 4. Exploring new approaches, using modern information technology, to conduct interdisciplinary and collaborative research among widely distributed investigators; and 5. Supporting outreach by providing scientific content for use in K-12 education programs, teaching undergraduate classes, and communicating directly with the public. The committee s assessment of the NAI's progress in these five areas is presented in Chapters 2 to 6, respectively.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Assessment of the NASA Astrobiology Institute” covers Astrobiology is a scientific discipline devoted to the study of life in the universe--its origins, evolution, distribution, and; it materially informs GShips work on astrobiology research coordination.
    Verified At
    2026-07-25
    Curation Topic
    astrobiology-research-coordination
    Evidence Boundary
    NTRS provides metadata and an abstract, not reviewed full text; methods, results, and current applicability remain unverified. Inclusion is contextual, not automatic claim evidence.
  10. atlas-resource · ntrs-20090041666

    Radiation-Shielding Polymer/Soil Composites

    Record fingerprint
    4fe64a06acd6677ee95a2096958023f2ba2c4ebf60f9e0f4d031afa4f30b8f0e
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20090041666
    Title
    Radiation-Shielding Polymer/Soil Composites
    Topic
    structures-shielding
    Year
    2007
    Published At
    2007-05-01T00:00:00.0000000+00:00
    Authors
    1. Sen, Subhayu
    Publisher
    Marshall Space Flight Center
    Resource Type
    Other - NASA Tech Brief
    Access
    open full text
    Abstract
    It has been proposed to fabricate polymer/ soil composites primarily from extraterrestrial resources, using relatively low-energy processes, with the original intended application being that habitat structures constructed from such composites would have sufficient structural integrity and also provide adequate radiation shielding for humans and sensitive electronic equipment against the radiation environment on the Moon and Mars. The proposal is a response to the fact that it would be much less expensive to fabricate such structures in situ as opposed to transporting them from Earth.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for polymer-and-soil composite concepts combining structural or construction roles with radiation shielding and possible in-situ material use.
    Verified At
    2026-07-25
    Curation Topic
    multifunctional shielding materials
    Evidence Boundary
    NTRS metadata and abstract describe material concepts; mechanical properties, outgassing, fire safety, radiation tests, manufacturability, and durability were not validated. It is materials context, not qualified habitat evidence.
  11. atlas-resource · ntrs-20160011567

    Autonomous Operations Mission Development Suite

    Record fingerprint
    2716affeaa1df69bcfc7cd8327577c01c67bec8867a0819ec089b362f2515a40
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20160011567
    Title
    Autonomous Operations Mission Development Suite
    Topic
    ai-autonomy
    Year
    2016
    Published At
    2016-09-27T00:00:00.0000000+00:00
    Authors
    1. Toro Medina, Jaime A.
    Publisher
    Kennedy Space Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    This is a presentation related to the development of Autonomous Operations Systems at NASA Kennedy Space Center. It covers a high level description of the work of FY14, FY15, FY16 for the AES IGODU and APL projects.
    Keywords
    1. Ground Support Equipment
    2. Autonomous Systems
    3. Autonomous Software
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Autonomous Operations Mission Development Suite” covers Ground Support Equipment, Autonomous Systems, Autonomous Software; it materially informs GShips work on autonomous mission operations.
    Verified At
    2026-07-25
    Curation Topic
    autonomous-mission-operations
    Evidence Boundary
    NTRS provides open full text, but this presentation was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence.
  12. atlas-resource · ntrs-20170011131

    Enabling Autonomous Space Mission Operations with Artificial Intelligence

    Record fingerprint
    cdd4520695510b243a949ea510eb056fec50ffecb8645181079c386e9e56878e
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20170011131
    Title
    Enabling Autonomous Space Mission Operations with Artificial Intelligence
    Topic
    ai-autonomy
    Year
    2017
    Published At
    2017-08-15T00:00:00.0000000+00:00
    Authors
    1. Frank, Jeremy
    Publisher
    Ames Research Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    For over 50 years, NASA's crewed missions have been confined to the Earth-Moon system, where speed-of-light communications delays between crew and ground are practically nonexistent. This ground-centered mode of operations, with a large, ground-based support team, is not sustainable for NASAs future human exploration missions to Mars. Future astronauts will need smarter tools employing Artificial Intelligence (AI) techniques make decisions without inefficient communication back and forth with ground-based mission control. In this talk we will describe several demonstrations of astronaut decision support tools using AI techniques as a foundation. These demonstrations show that astronauts tasks ranging from living and working to piloting can benefit from AI technology development.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because it frames onboard AI and autonomy as responses to deep-space latency and reduced ground support, a central long-duration operations constraint.
    Verified At
    2026-07-25
    Curation Topic
    autonomous-mission-operations
    Evidence Boundary
    NTRS provides open full text, but this presentation was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence.
  13. atlas-resource · ntrs-20205009571

    Adaptation of Metal Additive Manufacturing Processes for the International Space Station

    Record fingerprint
    ab696e7ff68ede920c148bb149db98988066fc2eaaeb2aed486879575666a0ef
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20205009571
    Title
    Adaptation of Metal Additive Manufacturing Processes for the International Space Station
    Topic
    manufacturing-isru
    Year
    2021
    Published At
    2021-11-30T06:00:00.0000000+00:00
    Authors
    1. T. Prater
    2. P. Hall
    3. L. Huebner
    4. K. Wheeler
    5. V. Hafiychuk
    6. D. Luchinsky
    7. F. Ledbetter
    8. C. Roberts
    Publisher
    Marshall Space Flight Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    The In-Space Manufacturing (ISM) project at NASA Marshall Space Flight Center, in a partnership with the company, Made in Space, has previously investigated 3D printing of polymer materials on-orbit. In recent years, the project has begun exploring the potential for metal additive manufacturing (AM) on future space missions to reduce logistics and enable point-of-use manufacturing for sparing and repair. This presentation will provide an overview of constraints for demonstrating a manufacturing process on the International Space Station (ISS) as well as trades of available metal AM processes and their potential for in-space use. There are currently two processes in development as payloads for an ISS technology demonstration: wire+arc additive manufacturing (the Vulcan payload from Made in Space, Inc.) and bound metal deposition (the Fabrication Laboratory from Techshot, Inc). An update on both of these systems, results to date, and future development efforts will be presented. Relevant modeling work to evaluate operation of certain aspects of the processes in a microgravity environment will also be summarized.
    Keywords
    1. manufacturing
    2. in-space manufacturing
    3. materials
    4. additive manufacturing
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2021 presentation from Marshall Space Flight Center specifically covers “Adaptation of Metal Additive Manufacturing Processes for the International Space Station”; its abstract describes The In-Space Manufacturing (ISM) project at NASA Marshall Space Flight Center, in a partnership with the company, Made in Space, has previously investigated 3D printing of… This materially informs GShips manufacturing and ISRU.
    Verified At
    2026-07-25
    Curation Topic
    manufacturing and ISRU
    Evidence Boundary
    NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim.
  14. atlas-resource · ntrs-20205010306

    Lunar Navigation Performance Using the Deep Space Network and Alternate Solutions to Support Precision Landing

    Record fingerprint
    6da185b0631089188641e41b9a685d9f7f8f2b451e6c6f04974e94d795a07a30
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20205010306
    Title
    Lunar Navigation Performance Using the Deep Space Network and Alternate Solutions to Support Precision Landing
    Topic
    communications-navigation
    Year
    2021
    Published At
    2021-01-28T06:00:00.0000000+00:00
    Authors
    1. Bradley C. Collicott
    2. David C. Woffinden
    Publisher
    Johnson Space Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    As human exploration once again targets the surface of the Moon, questions continue to emerge regarding the necessity of Earth-based tracking systems, such as the Deep Space Network, for spacecraft navigation in support of lunar descent and landing. This paper will derive an extensive Deep Space Network sensor model for use in linear covariance analysis and demonstrate the resulting trajectory dispersions and navigation performance in comparison with alternate solutions, such as terrain relative navigation. An in-depth trade study with considerations for various trajectory profiles, time allocated to ground tracking, number of active ground stations, and interaction with other sensors will be conducted to shed significant insight into sensor suite requirements to ensure safe and precise landing on the Moon.
    Keywords
    1. Navigation
    2. LInear Covariance Analysis
    3. Deep Space Network
    4. Descent and Landing
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Lunar Navigation Performance Using the Deep Space Network and Alternate Solutions to Support Precision Landing” covers Navigation, LInear Covariance Analysis, Deep Space Network, Descent and Landing; it materially informs GShips work on autonomous deep space navigation.
    Verified At
    2026-07-25
    Curation Topic
    autonomous-deep-space-navigation
    Evidence Boundary
    NTRS provides open full text, but this conference paper was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence.
  15. atlas-resource · ntrs-20210001402

    Autonomous landmark based spacecraft navigation system

    Record fingerprint
    961d632f4c405d536907805898bf2979e88afdf5792131621764166c812c8b1e
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20210001402
    Title
    Autonomous landmark based spacecraft navigation system
    Topic
    ai-autonomy
    Year
    2003
    Published At
    2003-02-09T00:00:00.0000000+00:00
    Authors
    1. Miller, J. K.
    2. Cheng, Y.
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Other
    Access
    open metadata
    Abstract
    An autonomous landmark based spacecraft navigation scheme is presented. This new schme involves the following data processing steps: image selection and planning; landmark detection; preliminary image matching; crater matching; database management; and finally landmark based orbit determination.
    Keywords
    1. autonomous
    2. landmark
    3. spacecraft
    4. navigation
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Autonomous landmark based spacecraft navigation system” covers autonomous, landmark, spacecraft, navigation; it materially informs GShips work on autonomous navigation.
    Verified At
    2026-07-25
    Curation Topic
    autonomous-navigation
    Evidence Boundary
    NTRS provides metadata and an abstract, not reviewed full text; methods, results, and current applicability remain unverified. Inclusion is contextual, not automatic claim evidence.
  16. atlas-resource · ntrs-20220004582

    Configuration and Projected Capabilities of the Common Habitat Medical Care Facility

    Record fingerprint
    64137f959b08dddf1cfd7ec9671dfbd34ce746411d782fe11e3e9f217baf9a77
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20220004582
    Title
    Configuration and Projected Capabilities of the Common Habitat Medical Care Facility
    Topic
    structures-shielding
    Year
    2022
    Published At
    2022-10-24T05:00:00.0000000+00:00
    Authors
    1. Robert L Howard, Jr.
    2. Brady T Campbell
    Publisher
    Johnson Space Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    The Common Habitat is a large, long-duration habitat being explored as part of a conceptual study (not an active NASA program) that uses an SLS core stage Liquid Oxygen (LOX) tank as its primary structure. It is intended for use on the Moon as part of a permanently occupied outpost, on Mars as part of an outpost that will be occupied for hundreds of days at a time, and in deep space as part of the Deep Space Exploration Vehicle where it will support crewed missions up to 1200 days in duration. A study of internal orientation and crew size resulted in a Common Habitat configuration sized for a crew of eight with a three-deck horizontal orientation. Additional work outside the scope of this paper is developing a vertical translation system, a crew mobility aids system based on wearable gecko-derived grippers, and a crew seating/restraint system. These systems are all assumed for use in conjunction with the Medical Care Facility, which is needed to maintain crew well-being during these missions, where distance from Earth precludes the possibility of evacuation to Earth. This paper describes recent improvements in the Common Habitat Medical Care Facility and associated benefits for crew survivability in long duration missions beyond Earth orbit. These improvements were made with the assistance of a NASA Pathways intern whose experience includes a tour of duty in Afghanistan as an Army combat medic with the 691st GHOST-T, attached to the 1st and 7th US Special Forces Groups as part of Operation Freedom’s Sentinel, where he helped provide far-forward surgical capabilities in austere combat environments. The initial baseline Medical Care Facility was developed working in conjunction with University of Houston Space Architecture graduate students. The facility was placed on the upper deck of the Common Habitat in a location that provided privacy, operational volume, and was close to the vertical translation pathway. The notional outfitting repurposed component CAD models from unrelated studies and notionally indicated a level of care roughly equivalent to that aboard the International Space Station. The CAD modeling provided notional stowage volumes, a deployable surface, some fixed equipment, an ultrasound, and a potentially reconfigurable treatment table. While this facility is clearly a competent arrangement, it was desired to leverage available expertise and upgrade the station given the vast distances from Earth to be experienced by the Common Habitat. Key driving requirements applied to the upgrade included to provide Medical Level of Care V, offer enhanced telemedicine capabilities, provide patient physical accommodation, provide caregiver access to the patient from all sides, include sliding pocket doors for access to hygiene and to the Vertical Translation System, and to add any additional capability possible for the best achievable medical care. The first step in the facility upgrade was to quantify the current medical inventory on the International Space Station and ensure that sufficient stowage volume was present for this purpose. To that end, the ISS medical kits were reviewed, and eight full size mid deck lockers were placed in the facility. A number of additional devices were also added, based on the intern’s combat medic experience. Also, two fixed shelves and one horizontal work surface were added to the Medical Care Facility, with the shelves providing storage space for the additional devices and the work surface providing a location for the caregiver to work or stage equipment. Four display monitors were added to the wall above the horizontal work surface, supporting data display, telemedicine, conferencing, or other needs. The existing treatment table was replaced with a mobile surgical stretcher-chair. Two additional doors were added to the Medical Care Facility. One leads directly to the hygiene compartment, allowing it to support medical operations in addition to providing galley/wardroom support. The other door leads directly into the Vertical Translation System. The wall adjacent to the subsystems bay was moved, adding additional volume to the Medical Care Facility. This improved caregiver access to the patient and allowed for a larger number of caregivers to be present. It also provided options for relocation of support equipment relative to the patient as needed. In the upgraded Medical Care Facility, the Surgical Stretcher-Chair and the Vertical Translation System can work together to provide incapacitated crew member transport from a site of injury on any deck of the Common Habitat to the Medical Care Facility. It can also support patient treatment in a variety of positions including a variety of sitting postures and a supine posture at a variety of pitch angles. The facility can also support caregiver office work for review of examination results, private consultation, inventory and maintenance, and a variety of other purposes. A forward activity will be to conduct evaluations of the Medical Care Facility with different medical scenarios. Additionally, ambient and task lighting selections remain as forward work. The eight mid deck lockers can be augmented to use as portable equipment carts, similar to a manner in which maintenance facility stowage was used as portable carts during the NASA Desert Research and Technology Studies in the Constellation Program. Trash accommodation will also need forward work to assess, including provision for wet trash, dry trash, and biological waste. It will be important to assess a redesign of the surgical stretcher-chair. The commercial version used in the upgrade can only enable vertical translation in the seated configuration, requiring the patient to bend both hips and knees. A possible redesign of the chair will allow for vertical translation without requiring any bending at the hip or knees. Also, the commercial version is wheeled, making it mobile in gravity but unanchored in microgravity. Work will be needed to adapt the chair for gravity-independent performance. The hygiene compartment can be redesigned for dual-use medical scrub and galley handwash facility. Pending sufficient volume, it may also be possible to place sanitation equipment in this location to clean medical tools. Finally, most space architectures have never allowed for more than one incapacitated crew member, but several scenarios could potentially injure two or more crew in the same incident. This facility could be assessed to determine its present ability to address two or more injured crew in parallel and determine the potential upper limit for number of treatable crew in a multi-crew injury scenario, or to treat polytrauma of a single patient.
    Keywords
    1. Habitat
    2. Space Architecture
    3. Space Medicine
    4. Common Habitat
    5. Moon
    6. Mars
    7. Deep Space
    8. Human Spaceflight
    9. Human Centered Design
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for the Common Habitat medical-facility concept, linking clinical workflow, isolation, equipment, consumables, telemedicine, and flexible volume planning.
    Verified At
    2026-07-25
    Curation Topic
    habitat medical facility
    Evidence Boundary
    This is conceptual facility planning, not a validated standard of care; staffing, equipment, procedures, and outcomes were not independently reviewed. It is high-consequence architecture context, not medical guidance.
  17. atlas-resource · ntrs-20230004380

    Tools used in Space Radiation Operations

    Record fingerprint
    4e071791f3ee89e626f534ff2af62095656c08401e62b076c3d8cf312896456a
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20230004380
    Title
    Tools used in Space Radiation Operations
    Topic
    radiation-environment
    Year
    2023
    Published At
    2023-04-24T05:00:00.0000000+00:00
    Authors
    1. Kathryn Whitman
    2. Phil Quinn
    3. Ramona Gaza
    4. Shaowen Hu
    Publisher
    Johnson Space Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    The goal of NASA's Radiation Health Program is to achieve human exploration and development of space without exceeding acceptable risk from exposure to ionizing radiation. The Space Radiation Analysis Group (SRAG) at NASA Johnson Space Center carries out this mission by following the philosophy of ALARA – As Low as Reasonably Achievable. SRAG utilizes a variety of tools to maintain awareness of space weather and to monitor the space radiation environment, both internal and external to the vehicle. SRAG develops and manages a wide variety of detectors that are located on the exterior and throughout the interior of the International Space Station and worn by crew. During Artemis I, SRAG provided detectors distributed within Orion’s interior and participated in the MARE experiment, which outfitted female phantoms with thousands of thermoluminescence detectors (TLD) and other dosimeters to better constrain the total dose accrued inside the human during a mission to the Moon. Motivated by the Artemis Exploration Class missions, SRAG and collaborators are developing forecasting capabilities for solar energetic particle (SEP) events and their biological impacts to crew. Tools that have come out of this work include the Acute Radiation Risk Tool (ARRT) and the SEP Scoreboards. This presentation will give an overview of the tools used in SRAG ops and currently under development to support our next steps in human space exploration.
    Keywords
    1. space weather
    2. model forecasting
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for operational radiation tools that translate environment and dosimetry models into planning, monitoring, and response support for exploration missions.
    Verified At
    2026-07-25
    Curation Topic
    radiation operations tools
    Evidence Boundary
    NTRS metadata and abstract describe the tool suite, but curation did not verify algorithms, uncertainty handling, interfaces, or operational validation. It is operations context, not guaranteed safety evidence.
  18. atlas-resource · ntrs-20230008504

    NASA Environmental Control and Life Support Technology Development for Exploration: 2022-2023 Status

    Record fingerprint
    40dce1dc59365417dbd0aaf0bc81d1e0b602a9d0b2d815171fbbf74af1d63bab
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20230008504
    Title
    NASA Environmental Control and Life Support Technology Development for Exploration: 2022-2023 Status
    Topic
    life-support
    Year
    2023
    Published At
    2023-07-20T05:00:00.0000000+00:00
    Authors
    1. Walter Schneider
    2. Arthur Brown
    3. Chris Allen
    4. Daniel Barta
    5. Daniel Gazda
    6. Melissa McKinley
    7. Alesha Ridley
    8. Imelda Stambaugh
    Publisher
    Marshall Space Flight Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    NASA is pursing Environmental Control and Life Support System (ECLSS) technology development and hardware upgrades to support Gateway, lunar surface, Mars transit, and Mars surface missions. This paper will highlight 2022-2023 progress of the technologies and how they are maturing on paths to ground testing and demonstration in microgravity. Technologies NASA is trading, new developments, and particular challenging issues will be highlighted. Technologies addressed in this paper are in the areas of atmosphere revitalization, water recovery and management, waste management, and environmental monitoring.
    Keywords
    1. Environmental Control and Life Support Systems
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2023 conference paper from Marshall Space Flight Center specifically covers “NASA Environmental Control and Life Support Technology Development for Exploration: 2022-2023 Status”; its abstract describes NASA is pursing Environmental Control and Life Support System (ECLSS) technology development and hardware upgrades to support Gateway, lunar surface, Mars transit, and Mars… This materially informs GShips regenerative life support.
    Verified At
    2026-07-25
    Curation Topic
    regenerative life support
    Evidence Boundary
    NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim.
  19. atlas-resource · ntrs-20240004615

    Outfitting the In-Space Manufacturing Advancement Center (ISMAC)

    Record fingerprint
    55e24efcf68e63a0024105af44c9bbfaeb4093b154fb8246634fe8f21a9dc576
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20240004615
    Title
    Outfitting the In-Space Manufacturing Advancement Center (ISMAC)
    Topic
    manufacturing-isru
    Year
    2024
    Published At
    2024-05-16T05:00:00.0000000+00:00
    Authors
    1. Ben Rupp
    2. Brandon Phillips
    3. Steve Burlingame
    4. Jeff Sowards
    5. Chris Protz
    Publisher
    Marshall Space Flight Center
    Resource Type
    Poster
    Access
    open full text
    Abstract
    Marshall Space Flight Center has begun investment into a new collaborative workspace where ISM technologies can be advanced utilizing multidisciplinary teams. Equipment has been commissioned to explore ISM technologies related to electronics, welding, additive manufacturing, recycling, and metal extraction from Lunar or Martian regolith. This is an overview of the latest capabilities outfit to the new In-Space Manufacturing Advancement Center.
    Keywords
    1. In-Space Manufacturing
    2. ISM
    3. ISMAC
    4. Welding
    5. Levitation
    6. Powder
    7. Regolith
    8. AM
    9. Additive Manufacturing
    10. Lidar
    11. ISRU
    12. In-situ Resource Utilization
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2024 poster from Marshall Space Flight Center specifically covers “Outfitting the In-Space Manufacturing Advancement Center (ISMAC)”; its abstract describes Marshall Space Flight Center has begun investment into a new collaborative workspace where ISM technologies can be advanced utilizing multidisciplinary teams. Equipment has… This materially informs GShips manufacturing and ISRU.
    Verified At
    2026-07-25
    Curation Topic
    manufacturing and ISRU
    Evidence Boundary
    NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim.
  20. atlas-resource · ntrs-20250006085

    Connecting NASA Resources to Observe and Model Agricultural and Food Systems

    Record fingerprint
    50c1864d9e9e16d10c087c633b52b2c33d6d00adc6123fea0ed737725e008c6a
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    ntrs-20250006085
    Title
    Connecting NASA Resources to Observe and Model Agricultural and Food Systems
    Topic
    ecology-food
    Year
    2025
    Published At
    2025-06-13T04:00:00.0000000+00:00
    Authors
    1. Alex Ruane
    Publisher
    Goddard Space Flight Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    In the coming decades, the world is asking the agricultural sector to take on a quadruple challenge:
    
    1. Increase production to provide healthy food for growing and developing populations 
    2. Adapt to ongoing climate extremes
    3. Operate agricultural lands in a sustainable manner
    4. Maintain financial incentives for agriculture and food systems throughout the value chain
    Keywords
    1. computer models
    2. agriculture
    3. Food systems
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Connecting NASA Resources to Observe and Model Agricultural and Food Systems” covers computer models, agriculture, Food systems; it materially informs GShips work on earthside food system resilience.
    Verified At
    2026-07-25
    Curation Topic
    earthside-food-system-resilience
    Evidence Boundary
    NTRS provides open full text, but this presentation was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence.
  21. atlas-resource · reviewed-source-src-ak-nist-ai-rmf-100-1

    Artificial Intelligence Risk Management Framework (AI RMF 1.0)

    Record fingerprint
    cb850c25081c973366bd3ea03ed62b01d56c1e6550e39c82ca43b5fe4b93bc31
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    reviewed-source-src-ak-nist-ai-rmf-100-1
    Title
    Artificial Intelligence Risk Management Framework (AI RMF 1.0)
    Topic
    reviewed-claim-source
    Year
    2023
    Authors
    1. Elham Tabassi
    Publisher
    NIST
    Resource Type
    Government ai risk management framework (exact value: government-ai-risk-management-framework)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Voluntary sociotechnical AI risk framework defining trustworthy characteristics and the Govern, Map, Measure, and Manage functions; not a generation-ship assurance standard.
    Verified At
    2026-07-25
    Evidence Boundary
    This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending.
  22. atlas-resource · reviewed-source-src-ca-lunar-palace-reliability

    Reliability and Lifetime Estimation of Bioregenerative Life Support System Based on 370-Day Closed Human Experiment of Lunar Palace 1 and Monte Carlo Simulation

    Record fingerprint
    39d40befa7689c023741266a49f3a1b6934e53b588a9ee211c4f74ea2ddedab8
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    reviewed-source-src-ca-lunar-palace-reliability
    Title
    Reliability and Lifetime Estimation of Bioregenerative Life Support System Based on 370-Day Closed Human Experiment of Lunar Palace 1 and Monte Carlo Simulation
    Topic
    reviewed-claim-source
    Year
    2023
    Authors
    1. Jingfei Hu
    2. Shuaishuai Li
    3. Hong Liu
    4. Dawei Hu
    Publisher
    Acta Astronautica
    Resource Type
    Peer reviewed primary experiment analysis (exact value: peer-reviewed-primary-experiment-analysis)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Primary analysis of recorded unit failures during the 370-day, four-person Lunar Palace 1 ground experiment and Monte Carlo lifetime estimates under normal operation and maintenance.
    Verified At
    2026-07-25
    Evidence Boundary
    This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending.
  23. atlas-resource · reviewed-source-src-cr-cisa-sbom

    Software Bill of Materials

    Record fingerprint
    ea418baa1ba5097fadd80fa455a5fa06b21eedac5807625de1b654062de12706
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    reviewed-source-src-cr-cisa-sbom
    Title
    Software Bill of Materials
    Topic
    reviewed-claim-source
    Year
    2026
    Authors
    1. Cybersecurity and Infrastructure Security Agency
    Publisher
    CISA
    Resource Type
    Government software transparency resource (exact value: government-software-transparency-resource)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Official SBOM definition, ecosystem roles, use cases, community resources, and minimum-elements guidance; an SBOM is component evidence rather than proof of safety.
    Verified At
    2026-07-25
    Evidence Boundary
    This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending.
  24. atlas-resource · reviewed-source-src-cr-nist-scrm-800161r1u1

    Cybersecurity Supply Chain Risk Management Practices for Systems and Organizations

    Record fingerprint
    d2ee32e520bd557530111c376b7fc302c56d8565eca2f99f2818c32eefef03b3
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    reviewed-source-src-cr-nist-scrm-800161r1u1
    Title
    Cybersecurity Supply Chain Risk Management Practices for Systems and Organizations
    Topic
    reviewed-claim-source
    Year
    2024
    Authors
    1. Jon Boyens
    2. Angela Smith
    3. Nadya Bartol
    4. Kris Winkler
    5. Alex Holbrook
    6. Matthew Fallon
    Publisher
    NIST
    Resource Type
    Government supply chain risk guidance (exact value: government-supply-chain-risk-guidance)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Multilevel lifecycle guidance for identifying, assessing, and mitigating malicious functionality, counterfeit, tampering, and poor development or manufacturing practice.
    Verified At
    2026-07-25
    Evidence Boundary
    This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending.
  25. atlas-resource · reviewed-source-src-cu-who-unicef-assistive-technology

    Global Report on Assistive Technology

    Record fingerprint
    8ae69b3c2fc644bdb3d82275f35f97b744ae0ff0f2c90dbf7a2791608809fc85
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    reviewed-source-src-cu-who-unicef-assistive-technology
    Title
    Global Report on Assistive Technology
    Topic
    reviewed-claim-source
    Year
    2022
    Authors
    1. World Health Organization
    2. United Nations Children's Fund
    Publisher
    World Health Organization
    Resource Type
    Un global health evidence report (exact value: un-global-health-evidence-report)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Global evidence and recommendations concerning assistive-technology access, people, products, provision, personnel, policy, services, and persistent access gaps.
    Verified At
    2026-07-25
    Evidence Boundary
    This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending.
  26. atlas-resource · reviewed-source-src-pn-jpl-dsac

    Working Overtime: NASA's Deep Space Atomic Clock Completes Mission

    Record fingerprint
    d4998420abaa5f6a9b16d2708e7f2674d4e3cc869dbbcc0432c1b20deaf686b6
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    reviewed-source-src-pn-jpl-dsac
    Title
    Working Overtime: NASA's Deep Space Atomic Clock Completes Mission
    Topic
    reviewed-claim-source
    Year
    2021
    Authors
    1. Jet Propulsion Laboratory
    Publisher
    NASA Jet Propulsion Laboratory
    Resource Type
    Technology demonstration record (exact value: technology-demonstration-record)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Deep Space Atomic Clock mission duration, spaceflight technology-demonstration boundary, and reported timing stability over more than twenty days.
    Verified At
    2026-07-25
    Evidence Boundary
    This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending.
  27. atlas-resource · reviewed-source-src-po-unicef-crc

    Convention on the Rights of the Child

    Record fingerprint
    dc26555d229051e8bd9303bb37d3ef8d16056f22607592dba53586653a091880
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    reviewed-source-src-po-unicef-crc
    Title
    Convention on the Rights of the Child
    Topic
    reviewed-claim-source
    Year
    1989
    Authors
    1. United Nations General Assembly
    Publisher
    UNICEF
    Resource Type
    International human rights treaty (exact value: international-human-rights-treaty)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Treaty text on children's best interests, identity, expression, privacy, education, health, development, culture, protection, and participation.
    Verified At
    2026-07-25
    Evidence Boundary
    This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending.
Equivalent record table for this packet
RecordSubjectFingerprintApprovalsScope groups
atlas-resource:core-20-7 COSMIC Capstone Challenge 2026–27 dda51a665d292c19283bd99532d75bb9d8932fbe147b8483cf41684c25822d22 1 bounded-competence: information-science
atlas-resource:ntrs-19720048512 Navigation requirements for advanced deep space missions. 96cc1377e4013a38f0903f6911719c8762929f5f655ee7c73242c17eb24112f2 1 bounded-competence: information-science
atlas-resource:ntrs-19930018529 Environmental Control and Life Support System 508acdbfd36b25d94c0181f95746c3baa815d121d34c95420cebdc53aa754c32 1 bounded-competence: information-science
atlas-resource:ntrs-20000067639 Transportation System Options For The Interstellar Probe Mission d8019069f0360e441669cee898fd4318a8dcab44e6e0a4b2e22c3014e81fb147 1 bounded-competence: information-science
atlas-resource:ntrs-20000067685 Manufacturing and NDE of Large Composite Structures for Space Transportation at MSFC 373537de35520466978e784614d2032a724818cbcf9b462167b1a7e5192c09c8 1 bounded-competence: information-science
atlas-resource:ntrs-20030065746 Principles for Integrating Mars Analog Science, Operations, and Technology Research e996d6d40c411d00489640b0280f6d748952670c76da2ed9e40313b4a9e2e46c 1 bounded-competence: information-science
atlas-resource:ntrs-20070018852 Promoting Lifelong Ocean Education: Shaping Tomorrow's Earth Stewards and the Science and Technology Workforce e60e2efc99799bd1972480307dd5746e32cf44a7ccaa57657c114928a79e1941 1 bounded-competence: information-science
atlas-resource:ntrs-20070034204 Future Mission Trends and their Implications for the Deep Space Network f306a23034c5794937f6efbc2261114c16665c75b6eedb12b5acd5184b085444 1 bounded-competence: information-science
atlas-resource:ntrs-20080016497 Assessment of the NASA Astrobiology Institute a61b5e914b76133ca6af2be33563f9010a60c37c2333e6add0ad6e742f42d519 1 bounded-competence: information-science
atlas-resource:ntrs-20090041666 Radiation-Shielding Polymer/Soil Composites 4fe64a06acd6677ee95a2096958023f2ba2c4ebf60f9e0f4d031afa4f30b8f0e 1 bounded-competence: information-science
atlas-resource:ntrs-20160011567 Autonomous Operations Mission Development Suite 2716affeaa1df69bcfc7cd8327577c01c67bec8867a0819ec089b362f2515a40 1 bounded-competence: information-science
atlas-resource:ntrs-20170011131 Enabling Autonomous Space Mission Operations with Artificial Intelligence cdd4520695510b243a949ea510eb056fec50ffecb8645181079c386e9e56878e 1 bounded-competence: information-science
atlas-resource:ntrs-20205009571 Adaptation of Metal Additive Manufacturing Processes for the International Space Station ab696e7ff68ede920c148bb149db98988066fc2eaaeb2aed486879575666a0ef 1 bounded-competence: information-science
atlas-resource:ntrs-20205010306 Lunar Navigation Performance Using the Deep Space Network and Alternate Solutions to Support Precision Landing 6da185b0631089188641e41b9a685d9f7f8f2b451e6c6f04974e94d795a07a30 1 bounded-competence: information-science
atlas-resource:ntrs-20210001402 Autonomous landmark based spacecraft navigation system 961d632f4c405d536907805898bf2979e88afdf5792131621764166c812c8b1e 1 bounded-competence: information-science
atlas-resource:ntrs-20220004582 Configuration and Projected Capabilities of the Common Habitat Medical Care Facility 64137f959b08dddf1cfd7ec9671dfbd34ce746411d782fe11e3e9f217baf9a77 1 bounded-competence: information-science
atlas-resource:ntrs-20230004380 Tools used in Space Radiation Operations 4e071791f3ee89e626f534ff2af62095656c08401e62b076c3d8cf312896456a 1 bounded-competence: information-science
atlas-resource:ntrs-20230008504 NASA Environmental Control and Life Support Technology Development for Exploration: 2022-2023 Status 40dce1dc59365417dbd0aaf0bc81d1e0b602a9d0b2d815171fbbf74af1d63bab 1 bounded-competence: information-science
atlas-resource:ntrs-20240004615 Outfitting the In-Space Manufacturing Advancement Center (ISMAC) 55e24efcf68e63a0024105af44c9bbfaeb4093b154fb8246634fe8f21a9dc576 1 bounded-competence: information-science
atlas-resource:ntrs-20250006085 Connecting NASA Resources to Observe and Model Agricultural and Food Systems 50c1864d9e9e16d10c087c633b52b2c33d6d00adc6123fea0ed737725e008c6a 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-ak-nist-ai-rmf-100-1 Artificial Intelligence Risk Management Framework (AI RMF 1.0) cb850c25081c973366bd3ea03ed62b01d56c1e6550e39c82ca43b5fe4b93bc31 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-ca-lunar-palace-reliability Reliability and Lifetime Estimation of Bioregenerative Life Support System Based on 370-Day Closed Human Experiment of Lunar Palace 1 and Monte Carlo Simulation 39d40befa7689c023741266a49f3a1b6934e53b588a9ee211c4f74ea2ddedab8 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-cr-cisa-sbom Software Bill of Materials ea418baa1ba5097fadd80fa455a5fa06b21eedac5807625de1b654062de12706 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-cr-nist-scrm-800161r1u1 Cybersecurity Supply Chain Risk Management Practices for Systems and Organizations d2ee32e520bd557530111c376b7fc302c56d8565eca2f99f2818c32eefef03b3 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-cu-who-unicef-assistive-technology Global Report on Assistive Technology 8ae69b3c2fc644bdb3d82275f35f97b744ae0ff0f2c90dbf7a2791608809fc85 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-pn-jpl-dsac Working Overtime: NASA's Deep Space Atomic Clock Completes Mission d4998420abaa5f6a9b16d2708e7f2674d4e3cc869dbbcc0432c1b20deaf686b6 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-po-unicef-crc Convention on the Rights of the Child dc26555d229051e8bd9303bb37d3ef8d16056f22607592dba53586653a091880 1 bounded-competence: information-science

Frozen source snapshots

Source inclusion does not determine the disposition. Reviewers must inspect the cited locator and relation, note inaccessible material, and identify stronger or conflicting evidence.

Sources, verification dates, scope notes, and exact fingerprints
Source IDSourceCheckedScope boundaryFingerprint
official-atlas-resource-core-20-7 COSMIC Capstone Challenge 2026–27 (opens external site in a new tab) 2026-07-26 Current official source for C3 challenge tracks, student, university, mentor, and judge pathways, deadlines, and published eligibility boundaries. Inclusion does not establish eligibility, registration, service, membership, sponsorship, affiliation, or a relationship. 3dac6c15664b0a8d05aaf5b353046b2f2cd6a29efed50b54ef34ecf2fdeb2474
official-atlas-resource-ntrs-19720048512 Navigation requirements for advanced deep space missions. (opens external site in a new tab) 2026-07-25 NTRS provides metadata and an abstract, not reviewed full text; methods, results, and current applicability remain unverified. Inclusion is contextual, not automatic claim evidence. 493ad89a22bc7d2c9d6045e9891b826409cc3a53ab71e2452e3bcac000a3b660
official-atlas-resource-ntrs-19930018529 Environmental Control and Life Support System (opens external site in a new tab) 2026-07-25 NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim. 8ea39946913a3a2fc7f4293be75c3ed564ab973323a3387919f952b48ade21d8
official-atlas-resource-ntrs-20000067639 Transportation System Options For The Interstellar Probe Mission (opens external site in a new tab) 2026-07-25 Only NTRS metadata and an abstract are open here; performance calculations and dated schedule assumptions were not reproduced. It is historical option-space context, not evidence that any propulsion system is ready. f8a772b31da488ac554569f7bd046cb98b7802b6a7a2cd596994410964def494
official-atlas-resource-ntrs-20000067685 Manufacturing and NDE of Large Composite Structures for Space Transportation at MSFC (opens external site in a new tab) 2026-07-25 NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim. fa265e4a8431409e0d52d728a97302c277550d4e95b48016ea0db362e6b54afc
official-atlas-resource-ntrs-20030065746 Principles for Integrating Mars Analog Science, Operations, and Technology Research (opens external site in a new tab) 2026-07-25 NTRS provides open full text, but this conference paper was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence. aa64b3bdc1a1d1dea9eea3a38a4f95182bcaa0d27e70e3f8ae047e321099c497
official-atlas-resource-ntrs-20070018852 Promoting Lifelong Ocean Education: Shaping Tomorrow's Earth Stewards and the Science and Technology Workforce (opens external site in a new tab) 2026-07-25 Only NTRS metadata and abstract are open here; full-text methods and results were unavailable for this pass. Inclusion is contextual discovery support, not automatic evidence for a GShips claim. 68ef7aea87493066c56fd841a06358f9c2a8271172f3b08bf01302bb67bfbe99
official-atlas-resource-ntrs-20070034204 Future Mission Trends and their Implications for the Deep Space Network (opens external site in a new tab) 2026-07-25 Only NTRS metadata and an abstract are open here; the viewgraphs, forecasts, and current relevance were not validated. Inclusion is historical planning context, not automatic claim evidence. 7cce3a184d685f7f4e7ff4dae6d6ffeac2276b204d16eaa2500d96c789379637
official-atlas-resource-ntrs-20080016497 Assessment of the NASA Astrobiology Institute (opens external site in a new tab) 2026-07-25 NTRS provides metadata and an abstract, not reviewed full text; methods, results, and current applicability remain unverified. Inclusion is contextual, not automatic claim evidence. 9c4fd7a41cef746ad7af43f5989f3a1949095f6b679e96a0cfb96bacd76e83d7
official-atlas-resource-ntrs-20090041666 Radiation-Shielding Polymer/Soil Composites (opens external site in a new tab) 2026-07-25 NTRS metadata and abstract describe material concepts; mechanical properties, outgassing, fire safety, radiation tests, manufacturability, and durability were not validated. It is materials context, not qualified habitat evidence. 0f10e6c98a7fb1ff24a0a96ffb391cb5f53bce7f5ef5bcbfd9a280b349711b3c
official-atlas-resource-ntrs-20160011567 Autonomous Operations Mission Development Suite (opens external site in a new tab) 2026-07-25 NTRS provides open full text, but this presentation was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence. 7bafa6ac054abaf33e30bee806451eef9e950bfdbc805c04fae14316c3e375ad
official-atlas-resource-ntrs-20170011131 Enabling Autonomous Space Mission Operations with Artificial Intelligence (opens external site in a new tab) 2026-07-25 NTRS provides open full text, but this presentation was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence. b826e95197373a872451d5da0c0c42eaf54f2feaf3aa0c91fafbf70a967d21e5
official-atlas-resource-ntrs-20205009571 Adaptation of Metal Additive Manufacturing Processes for the International Space Station (opens external site in a new tab) 2026-07-25 NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim. 7fedebce4fd8cfd821f4ee6a4264482da9fe208de180882527610cd1f0e76bf7
official-atlas-resource-ntrs-20205010306 Lunar Navigation Performance Using the Deep Space Network and Alternate Solutions to Support Precision Landing (opens external site in a new tab) 2026-07-25 NTRS provides open full text, but this conference paper was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence. dcfa3b0d77330ec3d98f17926015dd6332578a71172f56ce77df6b123a20cbd7
official-atlas-resource-ntrs-20210001402 Autonomous landmark based spacecraft navigation system (opens external site in a new tab) 2026-07-25 NTRS provides metadata and an abstract, not reviewed full text; methods, results, and current applicability remain unverified. Inclusion is contextual, not automatic claim evidence. fe91a67e408a1562d16b6c9dd43ea95b542701694cc745594135fe76e81b68e7
official-atlas-resource-ntrs-20220004582 Configuration and Projected Capabilities of the Common Habitat Medical Care Facility (opens external site in a new tab) 2026-07-25 This is conceptual facility planning, not a validated standard of care; staffing, equipment, procedures, and outcomes were not independently reviewed. It is high-consequence architecture context, not medical guidance. d0c7267cff27f99d73d33c6b283fed3f0266c7581af5bd372a43c630ea1a8306
official-atlas-resource-ntrs-20230004380 Tools used in Space Radiation Operations (opens external site in a new tab) 2026-07-25 NTRS metadata and abstract describe the tool suite, but curation did not verify algorithms, uncertainty handling, interfaces, or operational validation. It is operations context, not guaranteed safety evidence. f38099924f88f7477a3bb9d822e7a0cd0b6807199f499cba1f68d1aadf9fb24f
official-atlas-resource-ntrs-20230008504 NASA Environmental Control and Life Support Technology Development for Exploration: 2022-2023 Status (opens external site in a new tab) 2026-07-25 NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim. eb4895c886b2f0bad44f20e342c507de2b8d51a4d7beec79c2e5cae622abd732
official-atlas-resource-ntrs-20240004615 Outfitting the In-Space Manufacturing Advancement Center (ISMAC) (opens external site in a new tab) 2026-07-25 NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim. 7e353c158ecbfe4354cdb56bb694c7ce2112f8a8dc1b1d9539d3002928d94982
official-atlas-resource-ntrs-20250006085 Connecting NASA Resources to Observe and Model Agricultural and Food Systems (opens external site in a new tab) 2026-07-25 NTRS provides open full text, but this presentation was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence. c8212d9d8584333b91048f0bf3732b10c80d8a701b40046a588803e8c3844c5c
official-atlas-resource-reviewed-source-src-ak-nist-ai-rmf-100-1 Artificial Intelligence Risk Management Framework (AI RMF 1.0) (opens external site in a new tab) 2026-07-25 This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending. d35b1c8ec63a6e2f18cdf8b00fb4e1eabd8002e8133ac9c5d839805012d4654b
official-atlas-resource-reviewed-source-src-ca-lunar-palace-reliability Reliability and Lifetime Estimation of Bioregenerative Life Support System Based on 370-Day Closed Human Experiment of Lunar Palace 1 and Monte Carlo Simulation (opens external site in a new tab) 2026-07-25 This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending. dfb207813370866194130fef5ad3705d5561653e55a37e15f480fe247d961698
official-atlas-resource-reviewed-source-src-cr-cisa-sbom Software Bill of Materials (opens external site in a new tab) 2026-07-25 This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending. 6776878a221ab511c8c10d2ceb22a670ded3da8076078cdcd692af871e83d902
official-atlas-resource-reviewed-source-src-cr-nist-scrm-800161r1u1 Cybersecurity Supply Chain Risk Management Practices for Systems and Organizations (opens external site in a new tab) 2026-07-25 This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending. 3d0fa3ef1cec4e9fe9210a17c50d76549d3bf62e108102211c1515ae33b7f2a9
official-atlas-resource-reviewed-source-src-cu-who-unicef-assistive-technology Global Report on Assistive Technology (opens external site in a new tab) 2026-07-25 This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending. 7e065dd68134408322b19cc17380f64c77dc382f46db278d9ab7721eefaf2d44
official-atlas-resource-reviewed-source-src-pn-jpl-dsac Working Overtime: NASA's Deep Space Atomic Clock Completes Mission (opens external site in a new tab) 2026-07-25 This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending. 7f33e2b21042c9bcf5a251ae0f944ffde442ba73aea293d47946fa4aaddf5027
official-atlas-resource-reviewed-source-src-po-unicef-crc Convention on the Rights of the Child (opens external site in a new tab) 2026-07-25 This stable source is used by at least one editorially assessed claim. Its claim-specific relation and locator—not Atlas inclusion—define the evidence use; independent domain review remains pending. 5774c5f4c557dc4262299e8c5c845707310925a3017b986e83b2ee2c9455e360

Offline packet and worksheet

Downloads contain no reviewer contact details. Downloading does not create an account or store a review response in the GShips application. Ordinary provider request or analytics logs may record the download request. Work locally: the public site has no review account, upload endpoint, or decision-submission API.

Frozen packet · JSON

107.5 KB · packet identity 798cc33e0deede1d…

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Blank decision worksheet · JSON

19.2 KB · template identity 530f07f80ea103c0…

Download blank JSON

Review-notes worksheet · Markdown

Readable notes companion only—not a decision-bundle equivalent. Use the closed JSON template for structural validation.

Download notes worksheet

Do not paste a completed decision, identity documents, private contact data, confidential conflict evidence, medical information, controlled material, or exploit details into a public form. Until a separately authorized private handoff exists, retain the completed worksheet locally.

Packet schema · JSON · Decision-bundle schema · JSON

Validate offline

Use Node.js 22.13.0 or later. Keep the packet, worksheet, completed decision, and all six kit files together in a local directory.

  1. Download the six kit files below. Complete a copy of the JSON template offline and preserve its templateFingerprint.
  2. Finalize a separate output file.
    node finalize-review-decision.mjs \
      --input DRAFT.json \
      --output COMPLETED.json

    This marks the copy complete and calculates an unkeyed canonical bundle fingerprint. A fingerprint detects changes; it is not a reviewer signature.

  3. Validate the packet and completed copy.
    node check-review-decisions.mjs \
      --packet PACKET.json \
      --decision COMPLETED.json

    Add another --decision for each independent reviewer.

  4. Interpret the result narrowly. A zero exit proves structural consistency only. Neither command appoints or qualifies a reviewer, establishes independence, accepts a decision, or authorizes publication.

Completion criteria

Every primary record must receive the required number of valid, current-fingerprint approvals; every complementary scope group and required domain must be covered; any unresolved revise, contest, or reject disposition blocks publication.

Named medical, reproductive, nuclear, radiation, cybersecurity, governance, and dual-use conclusions require two distinct qualified independent humans covering complementary domain-method and rights/public-interest scopes.

  • Reviewer identity, qualification, independence, conflicts, and compensation must be assessed by accountable human governance; local validation can only report structural validity.
  • Approve, revise, contest, reject, and recuse remain visible. A negative finding cannot be hidden by an aggregate approval percentage.
  • Revision creates a new record and packet fingerprint. Prior approvals do not carry forward automatically.
  • AI may assist with clerical comparison but cannot count as an independent reviewer, identity attestor, appeal authority, or second person.

Prepared review packet · 0 published human decisions · Independent review pending · Suggest a correction

Accountability record

How to inspect this page

Scope: Prepared review packet resources:bucket-15 · 798cc33e0deede1d2e9143c38ac975d86cc7da9fc66ef8adb829281571e51f13

Page citations and accountability links

  • Exact frozen packet
    Complete packet payload; SHA-256 798cc33e0deede1d2e9143c38ac975d86cc7da9fc66ef8adb829281571e51f13 · fingerprint-bound review artifact
  • Blank closed decision template
    Offline structured-decision starting point · unsubmitted local artifact
  • Review-notes worksheet
    Human-readable notes companion; not validator input · offline notes aid
  • Review corpus index
    Corpus SHA-256 8fa944604ca189f5a9216ca59f640ad2ca20972ad512f2f4970764716782e18d · release and ownership index

Assumptions and limits

  • The exact packet, record, source, policy, release, and source-commit fingerprints bound this prepared page; human review has not started.
  • Downloading, local structural validation, or completing notes does not appoint or qualify a reviewer, establish independence, accept a decision, authorize publication, or create a relationship.

What would change this page?

Staffed governance, appointed qualified reviewers, completed record-level decisions, published conflicts, minority findings, corrections, or changed review policy would change this page.

People, review, and conflicts

Prepared by
GShips Project
Editorial status
public-alpha accountability pass
Editorial reviewer
GShips Project AI-assisted editorial synthesis
Last editorial review
2026-07-26
Independent review
pending
Independent reviewer
No independent reviewer assigned
Last independent review
No independent-review date exists
Last content edit
2026-07-25

Declared conflicts

  • The maintainer intends to explore a commercial venture based on some GShips work. No entity, outside funding, customer, sponsor, or indexed-organization relationship currently exists.

Suggest a correction to this page