Packet identity

Packet ID
resources:bucket-0a
Packet SHA-256 identity
9115e2e00f6d51f4f1a551925c4ac6bda560d767507d46452709768876201b2c
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
29
Reference sources
29

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-08-2

    Minimum crew study

    Record fingerprint
    ddbaddfafdabfb7e24f1a89cbc849bd0871af946d9f8f0c384f1a13c26abaf5f
    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-08-2
    Title
    Minimum crew study
    Topic
    reproduction-genetics
    Year
    Not recorded
    Authors
    None recorded
    Publisher
    Primary or institutional source
    Resource Type
    Primary or institutional source
    Access
    official link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Verified At
    2026-07-25
    Selection Note
    Inspected as a core capability-area source. Inclusion supplies context; it is not automatically evidence for a provisional claim.
  2. atlas-resource · ntrs-20030001104

    Studies Toward Birth and Early Mammalian Development in Space

    Record fingerprint
    a49ce390477b3dc5fed415ef6cb1abd6d07c4f67dee24ca3e5485e806bec7c73
    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-20030001104
    Title
    Studies Toward Birth and Early Mammalian Development in Space
    Topic
    reproduction-genetics
    Year
    2002
    Published At
    2002-01-01T00:00:00.0000000+00:00
    Authors
    1. Ronca, April E.
    2. Dalton, Bonnie
    Publisher
    Ames Research Center
    Resource Type
    Abstract
    Access
    open metadata
    Abstract
    Successful reproduction is the hallmark of a species' ability to adapt to its environment and must be realized to sustain life beyond Earth. Before taking this immense step, we need to understand the effects of altered gravity on critical phases of mammalian reproduction, viz., those events surrounding pregnancy, birth and the early development of offspring. No mammal has yet undergone birth in space. however studies spanning the gravity continuum from 0 to 2-g are revealing insights into how birth and early postnatal development will proceed in space. In this presentation, I will report the results of behavioral studies of rat mothers and offspring exposed from mid- to late pregnancy to either hypogravity (0-g) or hypergravity (1.5 or 2-g).
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for work on birth and early mammalian development under altered-gravity or spaceflight conditions, a key unknown in multigenerational habitation.
    Verified At
    2026-07-25
    Curation Topic
    early mammalian development
    Evidence Boundary
    NTRS metadata and abstract provide experimental context, but curation did not validate study details, animal welfare, outcomes, or human translation. It is high-consequence biology context, not reproductive guidance.
  3. atlas-resource · ntrs-20030015481

    Orbital Aggregation and Space Infrastructure Systems (OASIS)

    Record fingerprint
    62660d97ac254326a1eeceed6aed77caf6ba4f04b2b6d0331669b666ee826e54
    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-20030015481
    Title
    Orbital Aggregation and Space Infrastructure Systems (OASIS)
    Topic
    assembly-logistics
    Year
    2002
    Published At
    2002-01-01T00:00:00.0000000+00:00
    Authors
    1. Troutman, Patrick A.
    2. Mazanek, Daniel D.
    3. Stillwagen, Frederic H.
    4. Antol, Jeffrey
    5. Sarver-Verhey, Timothy R.
    6. Chato, David J.
    7. Saucillo, Rudolf J.
    8. Blue, Douglas R.
    Publisher
    Langley Research Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    This paper summarizes the results of a NASA lead study performed to identify synergistic opportunities and concepts between human exploration initiatives and commercialization of space. The goal of this initiative, called Orbital Aggregation & Space Infrastructure Systems (OASIS), is to develop an in-space architecture and associated concepts that provide common infrastructure for enabling a large class of space missions. The concepts include communications, navigation and power systems, propellant modules, tank farms, habitats, and in-space transportation systems using several propulsion technologies. OASIS features in-space aggregation of systems and resources in support of mission objectives. The concepts feature a high level of reusability and are supported by inexpensive launch of propellant and logistics payloads from the Earth/moon system. Industry, NASA and other users could share infrastructure costs. The anticipated benefits of synergistic utilization of space infrastructure are reduced mission costs and increased mission flexibility for future space exploration and commercialization initiatives.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Orbital Aggregation and Space Infrastructure Systems (OASIS)” covers This paper summarizes the results of a NASA lead study performed to identify synergistic opportunities and concepts between; it materially informs GShips work on in space logistics.
    Verified At
    2026-07-25
    Curation Topic
    in-space-logistics
    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.
  4. atlas-resource · ntrs-20060034828

    Smart Executives for Autonomous Spacecraft

    Record fingerprint
    673501de010faa0d3c6abac739bc48b5bb0536f18a7eb19353938534111df2ae
    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-20060034828
    Title
    Smart Executives for Autonomous Spacecraft
    Topic
    ai-autonomy
    Year
    1998
    Published At
    1998-08-01T00:00:00.0000000+00:00
    Authors
    1. Gat, E.
    2. Pell, B.
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Reprint (Version printed in journal)
    Access
    open metadata
    Abstract
    In this article we explore the design of an executive for an autonomous spacecraft. The executive is responsible for translating high-level commands, whether they come from the ground or from an on-board planner, into the low-level commands understood directly by the spacecraft hardware.
    Keywords
    1. control system autonomous spacecraft planning functions on-board operation
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Smart Executives for Autonomous Spacecraft” covers control system autonomous spacecraft planning functions on-board operation; it materially informs GShips work on autonomous executives.
    Verified At
    2026-07-25
    Curation Topic
    autonomous-executives
    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.
  5. atlas-resource · ntrs-20100018419

    Spacecraft Design Thermal Control Subsystem

    Record fingerprint
    b344158e071a628d0a446b1719ba5d13e7fde130e4628ea5b9e64e6c5bba4137
    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-20100018419
    Title
    Spacecraft Design Thermal Control Subsystem
    Topic
    power-thermal
    Year
    2008
    Published At
    2008-01-31T00:00:00.0000000+00:00
    Authors
    1. Miyake, Robert N.
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Preprint (Draft being sent to journal)
    Access
    open metadata
    Abstract
    The Thermal Control Subsystem engineers task is to maintain the temperature of all spacecraft components, subsystems, and the total flight system within specified limits for all flight modes from launch to end-of-mission. In some cases, specific stability and gradient temperature limits will be imposed on flight system elements. The Thermal Control Subsystem of "normal" flight systems, the mass, power, control, and sensing systems mass and power requirements are below 10% of the total flight system resources. In general the thermal control subsystem engineer is involved in all other flight subsystem designs.
    Keywords
    1. Jupiter Icy Moon Orbiter (JIMO)
    2. wax pellet thermal switch
    3. passive cryogenic radiator
    4. thermal control subsystem
    5. Black Sphere spacecraft
    6. solar system data
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for a spacecraft thermal-control design overview covering flight modes, temperature limits, stability, gradients, sensing, control, mass, and power interfaces.
    Verified At
    2026-07-25
    Curation Topic
    thermal control
    Evidence Boundary
    Only NTRS metadata and an abstract are open here; the preprint text, numerical guidance, and present applicability were not validated. It is foundational design context, not claim evidence.
  6. atlas-resource · ntrs-20110012304

    Human Research Program Requirements Document. Human Research Program Revision E

    Record fingerprint
    d63f43669dd6d4b596b3bb7ba76cde353c1b45d5b8281fa23420b738f7dc495d
    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-20110012304
    Title
    Human Research Program Requirements Document. Human Research Program Revision E
    Topic
    health-medicine
    Year
    2011
    Published At
    2011-05-01T00:00:00.0000000+00:00
    Authors
    1. Vargas, Paul
    Publisher
    Johnson Space Center
    Resource Type
    Other
    Access
    open full text
    Abstract
    This document defines, documents, and allocates the Human Research Program (HRP) requirements to the HRP Program Elements. It also establishes the flow of requirements from the Human Exploration and Operations Mission Directorate (HEOMD) and the Office of the Chief Health and Medical Officer (OCHMO) down to the various HRP Program Elements to ensure that human research and technology countermeasure investments support the delivery of countermeasures and technologies that satisfy HEOMD's and OCHMO's exploration mission requirements.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2011 other from Johnson Space Center specifically covers “Human Research Program Requirements Document. Human Research Program Revision E”; its abstract describes This document defines, documents, and allocates the Human Research Program (HRP) requirements to the HRP Program Elements. It also establishes the flow of requirements from… This materially informs GShips health and autonomous medicine.
    Verified At
    2026-07-25
    Curation Topic
    health and autonomous medicine
    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.
  7. atlas-resource · ntrs-20130000290

    Autonomous Navigation for Deep Space Missions

    Record fingerprint
    cedb5b745d2ef52aabbbc6ee27c857a2c37c5958e98ba48e06a70edf56747c38
    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-20130000290
    Title
    Autonomous Navigation for Deep Space Missions
    Topic
    communications-navigation
    Year
    2012
    Published At
    2012-06-11T00:00:00.0000000+00:00
    Authors
    1. Bhaskaran, Shyam
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Conference Paper
    Access
    open metadata
    Abstract
    Navigation (determining where the spacecraft is at any given time, controlling its path to achieve desired targets), performed using ground-in- the-loop techniques: (1) Data includes 2-way radiometric (Doppler, range), interferometric (Delta- Differential One-way Range), and optical (images of natural bodies taken by onboard camera) (2) Data received on the ground, processed to determine orbit, commands sent to execute maneuvers to control orbit. A self-contained, onboard, autonomous navigation system can: (1) Eliminate delays due to round-trip light time (2) Eliminate the human factors in ground-based processing (3) Reduce turnaround time from navigation update to minutes, down to seconds (4) React to late-breaking data. At JPL, we have developed the framework and computational elements of an autonomous navigation system, called AutoNav. It was originally developed as one of the technologies for the Deep Space 1 mission, launched in 1998; subsequently used on three other spacecraft, for four different missions. The primary use has been on comet missions to track comets during flybys, and impact one comet.
    Keywords
    1. navigation
    2. autonomy
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Autonomous Navigation for Deep Space Missions” covers navigation, autonomy; 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.
  8. atlas-resource · ntrs-20130000761

    MAARSS: Magnet Architectures and Active Radiation Shielding Study

    Record fingerprint
    1680ca80446251c3955d68da04ab38ec56c9dd77fd206a6701eef2a32386fb14
    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-20130000761
    Title
    MAARSS: Magnet Architectures and Active Radiation Shielding Study
    Topic
    structures-shielding
    Year
    2012
    Published At
    2012-11-12T00:00:00.0000000+00:00
    Authors
    1. Westover, Shayne C.
    2. Meinke, Rainer B.
    3. Battiston, Roberto
    4. Burger, William J.
    5. Van Sciver, Steven
    6. Washburn, Scott
    Publisher
    Johnson Space Center
    Resource Type
    Other
    Access
    open full text
    Abstract
    Protecting humans from space radiation is a major hurdle for human exploration of the solar system and beyond. Like on Earth, large magnetic fields surrounding a spaceship would deflect charged particles away from the habitat region and reduce the radiation dose to acceptable limits. The objective of this study is to determine the feasibility of current state of the art (SOA) high temperature superconducting (HTS) magnets as a means to protect crew from space radiation exposure on long duration missions beyond Low Earth Orbit (LEO). The study will look at architecture concepts to deflect high energy Galactic Cosmic Radiation (GCR) and Solar Proton Events (SPEs). Mass, power, and shielding efficiency will be considered and compared with current passive shielding capabilities. This report will walk the reader through several designs considered over the one year study and discuss the multiple parameters that should be evaluated for magnetic shielding. The study team eventually down-selects to a scalable light weight solenoid architecture that is launchable and then deployable using magnetic pressure to expand large diameter coils. Benefitting from the low temperature and high vacuum environment of deep space, existing high-temperature superconductors make such radiation shields realistic, near-term technical developments.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for the MAARSS study of active magnetic shielding, including coil architecture, field coverage, structural mass, power, and interaction with spacecraft systems.
    Verified At
    2026-07-25
    Curation Topic
    active magnetic radiation shielding
    Evidence Boundary
    The design study is low-readiness and this pass did not validate field models, secondary radiation, quench safety, mass, or power. It is active-shielding concept context, not proof of practical protection.
  9. atlas-resource · ntrs-20160005014

    Resource Prospector Instrumentation for Lunar Volatiles Prospecting, Sample Acquisition and Processing

    Record fingerprint
    a20be334bc618f9d37f7f1d3c9a6b7b1e4283dded631adebee196e6410d2f763
    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-20160005014
    Title
    Resource Prospector Instrumentation for Lunar Volatiles Prospecting, Sample Acquisition and Processing
    Topic
    manufacturing-isru
    Year
    2016
    Published At
    2016-04-01T00:00:00.0000000+00:00
    Authors
    1. Colaprete, A.
    2. Elphic, R.
    3. Paz, A.
    4. Smith, J.
    5. Captain, J.
    6. Zacny, K.
    Publisher
    Kennedy Space Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    Data gathered from lunar missions within the last two decades have significantly enhanced our understanding of the volatile resources available on the lunar surface, specifically focusing on the polar regions. Several orbiting missions such as Clementine and Lunar Prospector have suggested the presence of volatile ices and enhanced hydrogen concentrations in the permanently shadowed regions of the moon. The Lunar Crater Observation and Sensing Satellite (LCROSS) mission was the first to provide direct measurement of water ice in a permanently shadowed region. These missions with other orbiting assets have laid the groundwork for the next step in the exploration of the lunar surface; providing ground truth data of the volatiles by mapping the distribution and processing lunar regolith for resource extraction. This next step is the robotic mission Resource Prospector (RP).Resource Prospector is a lunar mission to investigate strategic knowledge gaps (SKGs) for in-situ resource utilization (ISRU). The mission is proposed to land in the lunar south pole near a permanently shadowed crater. The landing site will be determined by the science team with input from broader international community as being near traversable landscape that has a high potential of containing elevated concentrations of volatiles such as water while maximizing mission duration. A rover will host the Regolith Environment Science and Oxygen Lunar Volatile Extraction (RESOLVE) payload for resource mapping and processing. The science instruments on the payload include a 1-meter drill, neutron spectrometer, a near infrared spectrometer, an operations camera, and a reactor with a gas chromatograph-mass spectrometer for volatile analysis.
    Keywords
    1. Lunar Crater
    2. Resource Prospector
    3. In Situ Resource Utilization
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2016 presentation from Kennedy Space Center specifically covers “Resource Prospector Instrumentation for Lunar Volatiles Prospecting, Sample Acquisition and Processing”; its abstract describes Data gathered from lunar missions within the last two decades have significantly enhanced our understanding of the volatile resources available on the lunar surface,… 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.
  10. atlas-resource · ntrs-20160005653

    Expanding NASA and Roscosmos Scientific Collaboration on the International Space Station

    Record fingerprint
    48f576a1a4d49cfdd52956bab1d611248c9e6c14487cdc09cce9705009909c33
    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-20160005653
    Title
    Expanding NASA and Roscosmos Scientific Collaboration on the International Space Station
    Topic
    institutions-workforce
    Year
    2016
    Published At
    2016-05-24T00:00:00.0000000+00:00
    Authors
    1. Hasbrook, Pete
    Publisher
    Johnson Space Center
    Resource Type
    Abstract
    Access
    open full text
    Abstract
    The International Space Station (ISS) is a world-class laboratory orbiting in space. NASA and Roscosmos have developed a strong relationship through the ISS Program Partnership, working together and with the other ISS Partners for more than twenty years. Since 2013, based on a framework agreement between the Program Managers, NASA and Roscosmos are building a joint program of collaborative research on ISS. This international collaboration is developed and implemented in phases. Initially, members of the ISS Program Science Forum from NASA and TsNIIMash (representing Roscosmos) identified the first set of NASA experiments that could be implemented in the "near term". The experiments represented the research categories of Technology Demonstration, Microbiology, and Education. Through these experiments, the teams from the "program" and "operations" communities learned to work together to identify collaboration opportunities, establish agreements, and jointly plan and execute the experiments. The first joint scientific activity on ISS occurred in January 2014, and implementation of these joint experiments continues through present ISS operations. NASA and TsNIIMash have proceeded to develop "medium term" collaborations, where scientists join together to improve already-proposed experiments. A major success is the joint One-Year Mission on ISS, with astronaut Scott Kelly and cosmonaut Mikhail Kornienko, who returned from ISS in March, 2016. The teams from the NASA Human Research Program and the RAS Institute for Biomedical Problems built on their considerable experience to design joint experiments, learn to work with each other's protocols and processes, and share medical and research data. New collaborations are being developed between American and Russian scientists in complex fluids, robotics, rodent research and space biology, and additional human research. Collaborations are also being developed in Earth Remote Sensing, where scientists will share data from imaging systems mounted on ISS as well as other orbiting spacecraft to improve our understanding of the Earth and its climate. NASA and Roscosmos continue to encourage international scientific cooperation and expanded use of the ISS Laboratory. "Long-term", larger collaborations will achieve scientific objectives that no single national science team or agency can achieve on its own. The joint accomplishments achieved so far have paved the way for a stronger international scientific community and improved results and benefits from ISS.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2016 abstract from Johnson Space Center specifically covers “Expanding NASA and Roscosmos Scientific Collaboration on the International Space Station”; its abstract describes The International Space Station (ISS) is a world-class laboratory orbiting in space. NASA and Roscosmos have developed a strong relationship through the ISS Program… This materially informs GShips institutions and workforce.
    Verified At
    2026-07-25
    Curation Topic
    institutions and workforce
    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.
  11. atlas-resource · ntrs-20190025623

    Toward a Unified Routing Framework for Delay-Tolerant Networking

    Record fingerprint
    f232f6947cdf0da46d80123ce4dbdd32baea6e763a654f58493f63818113416e
    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-20190025623
    Title
    Toward a Unified Routing Framework for Delay-Tolerant Networking
    Topic
    communications-navigation
    Year
    2016
    Published At
    2016-09-26T00:00:00.0000000+00:00
    Authors
    1. Burleigh, S.
    2. Caini, C.
    3. Messina, J. J.
    4. Rodolfi, M.
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Conference Paper
    Access
    open metadata
    Abstract
    Routing in Delay-/Disruption-Tolerant Networking (DTN) has long been recognized as a challenging research topic. The difficulty lies in the fact that link intermittency and network partitioning, possibly coupled with long delays, prevent the use of Internet solutions based on an up-to-date comprehensive knowledge of network topology, as communicated by routing protocols. In the literature on DTN routing, there is a dichotomy between solutions designed for deterministic (e.g., space flight) networks, such as Contact Graph Routing (CGR), and the wide variety of protocols designed for opportunistic terrestrial networks. After a discussion of the origin and motivations of this duality, the paper presents an opportunistic extension of CGR (OCGR). The aim is to try to resolve the DTN routing dichotomy by providing a unified approach suitable for all DTN environments.
    Keywords
    1. Routing
    2. CGR
    3. Challenged Networks
    4. Space Networks
    5. Delay-/Disruption- Tolerant Networking
    6. component
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Toward a Unified Routing Framework for Delay-Tolerant Networking” covers Routing, CGR, Challenged Networks, Space Networks; it materially informs GShips work on delay tolerant networking.
    Verified At
    2026-07-25
    Curation Topic
    delay-tolerant-networking
    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.
  12. atlas-resource · ntrs-20205006930

    In-Situ Resource Utilization Options for the Moon and Mars

    Record fingerprint
    b49ce00a6c90b66c159ae5f2a08771aa02492b06dfb4b8c2c6e69c789ac31b5a
    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-20205006930
    Title
    In-Situ Resource Utilization Options for the Moon and Mars
    Topic
    manufacturing-isru
    Year
    2020
    Published At
    2020-10-09T04:00:00.0000000+00:00
    Authors
    1. Julie Kleinhenz
    Publisher
    Glenn Research Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    In-Situ Resource Utilization (ISRU) is key to enabling extended presence at exploration locations. NASA’s focus for ISRU to date has been human exploration locations: the Moon and Mars. Likewise the primary target for ISRU has been the production of mission consumables for propulsion and life support. Producing oxygen alone from minerals on the Moon or atmosphere on Mars can provide the majority of these consumables. However, accessing water at either location allows for full propellant production (fuel and oxidizer) as well as other applications (eg life support). Current and previous study efforts have looked at mission architectures and ISRU mass payback for these options. Studies have also identified gaps in information needed to design effective ISRU hardware and choose best architectures
    Keywords
    1. In-Situ Resource Utilization
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2020 presentation from Glenn Research Center specifically covers “In-Situ Resource Utilization Options for the Moon and Mars”; its abstract describes In-Situ Resource Utilization (ISRU) is key to enabling extended presence at exploration locations. NASA’s focus for ISRU to date has been human exploration locations: the… 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.
  13. atlas-resource · ntrs-20210004919

    STARDUST: Discovery's InterStellar Dust and Cometary Sample Return Mission

    Record fingerprint
    19f421aea4a51b74e28c917c8ea5f72cd597cff17314df4eb1d94f1dc6b1a910
    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-20210004919
    Title
    STARDUST: Discovery's InterStellar Dust and Cometary Sample Return Mission
    Topic
    mission-architecture
    Year
    1997
    Published At
    1997-02-01T00:00:00.0000000+00:00
    Authors
    1. Vellinga, J. M.
    2. Tsou, P.
    3. Yen, C.
    4. Duxbury, T.
    5. Brownlee, D. E.
    6. Atkins, K. L.
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Other
    Access
    open metadata
    Abstract
    The STARDUST Discovery mission will collect samples of cometary and interstellar dust and return them to Earth. The Jet Propulsion Laboratory provides project management with Lockheed Martin Astronautics as the spacecraft industrial partner. STARDUST management is aggressively pursuing cost control through the use of Total Quality Management principles, specifically operating in a Project Engineering and Integration Team that
    Keywords
    1. STARDUST
    2. Discovery
    3. Program
    4. sample
    5. return
    6. comet
    7. dust
    8. concurrent
    9. engineering
    10. interstellar
    11. exobiology
    12. Wild
    13. 2
    14. Total
    15. Quality
    16. Management
    17. (TQM)
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for STARDUST's interstellar-dust and comet sample-return mission, industrial partnership, project integration, cost-control, and exobiology context.
    Verified At
    2026-07-25
    Curation Topic
    robotic precursors and sample return
    Evidence Boundary
    Only NTRS metadata and an abstract are open here; sample integrity, management claims, and later mission outcomes require source-specific review. Inclusion is contextual, not automatic evidence.
  14. atlas-resource · ntrs-20210004988

    Spacecraft Autonomous Navigation for Formation Flying Earth Orbiters Using GPS

    Record fingerprint
    f47b36fba63b698f22eeec087be111ecab36c53cbd274bc3cbd6b2898b166ea5
    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-20210004988
    Title
    Spacecraft Autonomous Navigation for Formation Flying Earth Orbiters Using GPS
    Topic
    ai-autonomy
    Year
    1996
    Published At
    1996-07-29T00:00:00.0000000+00:00
    Authors
    1. Guinn, J. R.
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Other
    Access
    open metadata
    Abstract
    This paper extends earlier analysis for autonomous orbit determination and control of Earth orbiting spacecraft. The earlier analysis was limited to a single spacecraft with a ground track repeat requirement. This work shows that a similar technique is applicable for two spacecraft flying in formation. Tracking and orbit determination functions are performed using the Global Positioning System (GPS).
    Keywords
    1. spacecraft
    2. autonomous
    3. navigation
    4. formation
    5. flying
    6. Earth
    7. orbiters
    8. GPS
    9. New
    10. Millennium
    11. Earth
    12. Orbiter-1
    13. autonomous
    14. formation
    15. flying
    16. mission
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Spacecraft Autonomous Navigation for Formation Flying Earth Orbiters Using GPS” covers spacecraft, autonomous, navigation, formation; 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.
  15. atlas-resource · ntrs-20210020800

    Habitability Models for Astrobiology

    Record fingerprint
    143a300b8701b9e1be19001e4eb898778cfdc189ff73ddeb46bd2f4381e71951
    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-20210020800
    Title
    Habitability Models for Astrobiology
    Topic
    destinations-astrobiology
    Year
    2021
    Published At
    2021-08-11T04:00:00.0000000+00:00
    Authors
    1. Abel Mendez
    2. Edgard G Rivera-Valentin
    3. Dirk Schulze-Makuch
    4. Justin Filiberto
    5. Ramses M Ramirez
    6. Tana E Wood
    7. Alfonso Davila
    8. Chris Mckay
    Publisher
    Mary Ann Liebert, Inc.
    Resource Type
    Accepted Manuscript (Version with final changes)
    Access
    open full text
    Abstract
    Habitability has been generally defined as the capability of an environment to support life. Ecologists have beenusing Habitat Suitability Models (HSMs) for more than four decades to study the habitability of Earth fromlocal to global scales. Astrobiologists have been proposing different habitability models for some time, with lit-tle integration and consistency among them, being different in function to those used by ecologists. Habitabilitymodels are not only used to determine whether environments are habitable, but they also are used to charac-terize what key factors are responsible for the gradual transition from low to high habitability states. Here wereview and compare some of the different models used by ecologists and astrobiologists and suggest how theycould be integrated into new habitability standards. Such standards will help improve the comparison and charac-terization of potentially habitable environments, prioritize target selections, and study correlations between habit-ability and biosignatures. Habitability models are the foundation of planetary habitability science, and the synergybetween ecologists and astrobiologists is necessary to expand our understanding of the habitability of Earth,the Solar System, and extrasolar planets.
    Keywords
    1. Habitability
    2. Biosignatures
    3. Exoplanets
    4. Astrobiology
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Habitability Models for Astrobiology” covers Habitability, Biosignatures, Exoplanets, Astrobiology; it materially informs GShips work on planetary habitability modeling.
    Verified At
    2026-07-25
    Curation Topic
    planetary-habitability-modeling
    Evidence Boundary
    NTRS provides open full text, but this accepted manuscript (version with final changes) was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence.
  16. atlas-resource · ntrs-20220016034

    Ideas For Infusing In-Space Servicing, Assembly and Manufacturing Concepts into Nuclear Electric Propulsion Architectures

    Record fingerprint
    15ff00fdcc236913cac539bfc3a2ad42abb0d3a6f72dd437d22c93cf94c25adb
    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-20220016034
    Title
    Ideas For Infusing In-Space Servicing, Assembly and Manufacturing Concepts into Nuclear Electric Propulsion Architectures
    
    
    Topic
    assembly-logistics
    Year
    2022
    Published At
    2022-12-16T05:00:00.0000000+00:00
    Authors
    1. Julia Cline
    2. John Dorsey
    3. David Kang
    4. Bill Doggett
    5. Danette Allen
    Publisher
    Langley Research Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    NASA is currently investigating nuclear electric propulsion (NEP) for human Mars transport within the space nuclear propulsion portfolio. NEP spacecraft have the following characteristics, they: 1) include very large structures (~100-meter length); 2) are comprised of many components/modules; and 3) have very long lifetimes (e.g., 50 years for fuel rods). Thus, NEP spacecraft can be classified as a “persistent asset,” which is any zero-g or planetary surface system that benefits from in-space assembly (ISA) or multiple visits for servicing, repairs, and upgrades. NEP spacecraft will benefit from taking advantage of, and incorporating, In-space Servicing, Assembly, and Manufacturing (ISAM) capabilities in the spacecraft architecture from the onset, enabling system maintenance, repair, and evolution. ISA has a long history of being proposed for, and studied as, a means for achieving large systems in space. More recently, the benefits of ISA have been recognized by NASA, the Department of Defense (DOD), other government agencies, and commercial space companies, and thus, ISAM is being actively pursued at a national level. Past and current strategies for achieving large structures in space have relied largely on two strategies; the first is to launch monolithic structures (designed to meet launch vehicle requirements for payload size and mass) that are docked or berthed to other monolithic structures on-orbit to form a larger structure (e.g., the International Space Station [ISS]); the second is folding and packaging large structures to fit inside a payload fairing and deploying the full-sized structure (unaided) once on-orbit (e.g., the James Webb Space Telescope [JWST]). To date, conceptual architecture studies performed for NEP spacecraft capable of human-rated Mars transport have only included a combination of the two previously mentioned strategies. This paper will propose ideas for infusing ISAM strategies into NEP vehicle architectures that leverage existing and near future technologies and enable the resulting NEP systems to be realized in a more time- and cost-efficient manner.
    Keywords
    1. in-space assembly
    2. nuclear electric propulsion
    3. space nuclear propulsion
    4. in-space servicing assembly manufacturing
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Ideas For Infusing In-Space Servicing, Assembly and Manufacturing Concepts into Nuclear Electric Propulsion Architectures” covers in-space assembly, nuclear electric propulsion, space nuclear propulsion, in-space servicing assembly manufacturing; it materially informs GShips work on nuclear propulsion isam.
    Verified At
    2026-07-25
    Curation Topic
    nuclear-propulsion-isam
    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.
  17. atlas-resource · ntrs-20230004199

    Human Factors Support for On-Orbit Servicing, Assembly and Manufacturing Mission 1 (OSAM-1)

    Record fingerprint
    40fa678ab84b55988aa044a03d1c04ba02266deb83af7330914aa8b0bd770940
    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-20230004199
    Title
    Human Factors Support for On-Orbit Servicing, Assembly and Manufacturing Mission 1 (OSAM-1)
    Topic
    assembly-logistics
    Year
    2023
    Published At
    2023-03-01T05:00:00.0000000+00:00
    Authors
    1. Cynthia H Null
    2. Jon B Holbrook
    3. Mary K Kaiser
    4. Bonnie B Novak
    Publisher
    Langley Research Center
    Resource Type
    Technical Memorandum (TM)
    Access
    open full text
    Abstract
    The NASA Engineering and Safety Center (NESC) Human Factors Technical Discipline Team was requested by the Satellite Servicing Projects Division at Goddard Space Flight Center to provide support in assessing the design of the On-Orbit Servicing, Assembly and Manufacturing Mission 1 (OSAM-1) Mission Operations Center in light of concerns about overcrowding and potential for distractions, as well as assistance in creating a Human-Machine Interface style guide for OSAM-1 user interface design. This report contains the outcome of the NESC assessment.
    Keywords
    1. On-Orbit Servicing, Assembly and Manufacturing Mission
    2. NASA Engineering and Safety Center
    3. Mission Operations Center
    4. Human-Machine Interface
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Human Factors Support for On-Orbit Servicing, Assembly and Manufacturing Mission 1 (OSAM-1)” covers On-Orbit Servicing, Assembly and Manufacturing Mission, NASA Engineering and Safety Center, Mission Operations Center, Human-Machine Interface; it materially informs GShips work on isam human factors.
    Verified At
    2026-07-25
    Curation Topic
    isam-human-factors
    Evidence Boundary
    NTRS provides open full text, but this technical memorandum (tm) was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence.
  18. atlas-resource · ntrs-20250000752

    Parametric Trade Space Investigation of Particle Bed Reactors for Nuclear Thermal Propulsion

    Record fingerprint
    0a53ca924532746fb9b7d9fb9d3da40304bfb2f2b6577e3c92b0e962b12ee00a
    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-20250000752
    Title
    Parametric Trade Space Investigation of Particle Bed Reactors for Nuclear Thermal Propulsion
    Topic
    power-thermal
    Year
    2025
    Published At
    2025-05-08T04:00:00.0000000+00:00
    Authors
    1. Jacob Stonehill
    2. Corey Smith
    3. Daria Nikitaeva
    4. Matthew Duchek
    Publisher
    Marshall Space Flight Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    Nuclear thermal propulsion (NTP) systems utilizing particle bed reactors (PBR) offer performance advantages over traditional NTP propulsion system designs. In addition to low pressure drop requirements through the reactor, PBRs can deliver high power density, potentially leading to lower mass designs. This work seeks to 
    investigate various design points of PBR-based NTP systems. The DOD Space Nuclear Thermal Propulsion (SNTP) PBR design is a template for the trade space investigation. Parameter sweeps of core length, particle radius, system mass flow rate, packing fraction, bed thickness, and many other variables inform point design definitions. Coupled multiphysics modeling methodology yields data on the performance of design points, while ruling out any infeasible configurations. This study captures the mass and performance trades of feasible PBR designs.
    
    A PBR trade space database is generated and reveals that for a given thrust class, the SNTP-derived designs offer low mass, critical reactor options with reduced pressure drop requirements while using high-assay low-enriched uranium fuel. A comparison of the trade space summarizes the performance capabilities of PBR NTP reactors.
    Keywords
    1. particle
    2. bed
    3. reactor
    4. nuclear
    5. thermal
    6. propulsion
    7. trade
    8. space
    9. NTP
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for its parametric particle-bed-reactor trade space spanning geometry, particle size, flow, packing, power density, mass, and performance for nuclear thermal propulsion.
    Verified At
    2026-07-25
    Curation Topic
    nuclear propulsion
    Evidence Boundary
    NTRS lists open full text, but this pass did not reproduce calculations or assess safety, proliferation, test, or licensing constraints. It is civil high-consequence concept context, not design validation.
  19. atlas-resource · ntrs-20260001265

    Evaluating a Community-Based Intervention to Advance Food Equity and Climate Resilience in the South Bronx: Findings from the LEAF Program

    Record fingerprint
    b38fab99a8fc19075b7854f493308e607ef8e9e0714cd7ddfb3bf68e33cf2d61
    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-20260001265
    Title
    Evaluating a Community-Based Intervention to Advance Food Equity and Climate Resilience in the South Bronx: Findings from the LEAF Program
    Topic
    ecology-food
    Year
    2026
    Published At
    2026-01-12T05:00:00.0000000+00:00
    Authors
    1. Natalie Greaves-Peters
    2. Pamela A Koch
    3. Carolina Saavedra
    4. Erik Mencos Contreras
    5. Cynthia Rosenzweig
    6. Wei Yin
    7. Jack Algiere
    8. Jason Grauer
    Publisher
    MDPI
    Resource Type
    Reprint (Version printed in journal)
    Access
    open full text
    Abstract
    Access to ecologically grown, nutritious food remains limited in low-income U.S. communities due to cost, structural inequities, and the dominance of industrial food systems. Stone Barns Center’s Leading an Ecological and Accessible Food System (LEAF) program—developed through a community-based participatory partnership in the South Bronx—aims to address these challenges through biweekly distributions of regeneratively grown produce, seasonal gardening kits, and culturally responsive nutrition education. This study presents findings from the first two years (2023 and 2024) of a multi-timepoint repeated cross-sectional evaluation using six household-level surveys (<i>n</i> = 79–80 families per round). The surveys captured changes in fruit and vegetable consumption, gardening comfort, emotional well-being, participation in SNAP and WIC programs, food purchasing behaviors, and unmet needs. Statistically significant (<i>p</i> < 0.05) improvements were observed across key outcomes: mean fruit and vegetable intake increased from 3.8 to 4.5 (1–5 scale), comfort with growing food increased from 3.1 to 4.6, emotional response to gardening from 4.1 to 4.6. SNAP participation increased from 15% (12 of 79 households) to 33% (26 of 79 households), and purchasing shifted toward local access points. Notably, 99% (79 of 80 households) of Year 1 families returned for Year 2, reflecting strong engagement and trust. These results highlight the potential of integrated, community-partnered, and climate-aligned interventions to advance health equity, ecological literacy, and food justice. The LEAF program offers a replicable model that may support pathways towards more sustainable and community-aligned food systems in other under-resourced settings.
    Keywords
    1. food access
    2. nutrition equity
    3. urban agriculture
    4. regenerative agriculture
    5. community-based participatory research
    6. SNAP
    7. WIC
    8. home gardening
    9. health disparities
    10. sustainable food systems
    11. climate resilience
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Evaluating a Community-Based Intervention to Advance Food Equity and Climate Resilience in the South Bronx: Findings from the LEAF Program” covers food access, nutrition equity, urban agriculture, regenerative agriculture; it materially informs GShips work on food equity and resilience.
    Verified At
    2026-07-25
    Curation Topic
    food-equity-and-resilience
    Evidence Boundary
    NTRS provides open full text, but this reprint (version printed in journal) was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence.
  20. atlas-resource · reviewed-source-src-c1517-nist-portable-dosimetry

    Electron Spin Resonance Sensor for Portable and Adaptable Retrospective Dosimetry

    Record fingerprint
    9afe160df85a04705f7e2ebca35dc08c70c0d2b6b6a64f32060d4aafa0f45b7b
    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-c1517-nist-portable-dosimetry
    Title
    Electron Spin Resonance Sensor for Portable and Adaptable Retrospective Dosimetry
    Topic
    reviewed-claim-source
    Year
    2026
    Authors
    1. Pragya Shrestha
    2. Kin Cheung
    3. Robert Gougelet
    4. Stephen Moxim
    5. Ileana Pazos
    6. Jason Campbell
    Publisher
    National Institute of Standards and Technology
    Resource Type
    Peer reviewed government metrology publication (exact value: peer-reviewed-government-metrology-publication)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Portable low-power electron-spin-resonance dosimetry demonstrated with alanine and lithium formate over a stated dose range, with applications in medical physics, radiation protection, emergency response, and environmental monitoring.
    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.
  21. atlas-resource · reviewed-source-src-c1517-spohn-exogeoscience

    Exo-Geoscience Perspectives Beyond Habitability

    Record fingerprint
    7fbcb069906a9ff0865894f75400f8f69a49ce213341a0fc7922bb9df64fdfb3
    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-c1517-spohn-exogeoscience
    Title
    Exo-Geoscience Perspectives Beyond Habitability
    Topic
    reviewed-claim-source
    Year
    2026
    Authors
    1. Tilman Spohn
    2. Aki Roberge
    3. Michael J. Way
    4. Joao C. Duarte
    5. Francesca Miozzi
    6. Charles H. Lineweaver
    Publisher
    Space Science Reviews via NASA Technical Reports Server
    Resource Type
    Peer reviewed review (exact value: peer-reviewed-review)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Review connecting exoplanet diversity with planetary interiors, tectonics, volatile cycling, atmospheres, long-term climate, biospheres, observational limits, and empirical questions relevant to Earth's geosciences.
    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-cd-nasa-open-science

    Open Science

    Record fingerprint
    d2b4593bf5604a9f7a60cae23d18d4202892831925c6eb277ae42247a2d74644
    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-cd-nasa-open-science
    Title
    Open Science
    Topic
    reviewed-claim-source
    Year
    2026
    Authors
    1. National Aeronautics and Space Administration
    Publisher
    NASA Science
    Resource Type
    Active institutional policy program (exact value: active-institutional-policy-program)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    NASA open-science policy, data, software, publication, participation, and reproducibility context.
    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-cd-nasa-partnerships

    Partnerships

    Record fingerprint
    43b9e1a962cadb74a8a5c1710188ab32cd8c2a5f9a2399356b507e722e052f22
    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-cd-nasa-partnerships
    Title
    Partnerships
    Topic
    reviewed-claim-source
    Year
    2026
    Authors
    1. National Aeronautics and Space Administration
    Publisher
    NASA
    Resource Type
    Active institutional partnership record (exact value: active-institutional-partnership-record)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Current NASA partnership pathways and agreement context; inclusion does not imply a GShips relationship or eligibility.
    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-cu-w3c-wcag22

    Web Content Accessibility Guidelines 2.2

    Record fingerprint
    384b32120c4cae6bc2c6e86eac83a0834e5b1038968313ecb85d9629124ac1ce
    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-w3c-wcag22
    Title
    Web Content Accessibility Guidelines 2.2
    Topic
    reviewed-claim-source
    Year
    2023
    Authors
    1. World Wide Web Consortium
    Publisher
    W3C
    Resource Type
    International web accessibility standard (exact value: international-web-accessibility-standard)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Technology-neutral principles, guidelines, success criteria, conformance requirements, and limits for perceivable, operable, understandable, and robust web content.
    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-gr-undrr-sendai

    Sendai Framework for Disaster Risk Reduction 2015–2030

    Record fingerprint
    a06e8ed978322cea8c621509359c7344f7b2314ea194d3e8c308f5543742a2d4
    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-gr-undrr-sendai
    Title
    Sendai Framework for Disaster Risk Reduction 2015–2030
    Topic
    reviewed-claim-source
    Year
    2015
    Authors
    1. United Nations Office for Disaster Risk Reduction
    Publisher
    UNDRR
    Resource Type
    Intergovernmental disaster risk framework (exact value: intergovernmental-disaster-risk-framework)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Risk understanding, disaster-risk governance, resilience investment, preparedness, inclusive response, recovery, rehabilitation, and reconstruction.
    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-hp-nasa-std-6001

    Flammability, Offgassing, and Compatibility Requirements and Test Procedures

    Record fingerprint
    52ba82dc59982ed3a72726c97cad8dec74e9cd28ccfb02881fa5a007888f46dc
    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-hp-nasa-std-6001
    Title
    Flammability, Offgassing, and Compatibility Requirements and Test Procedures
    Topic
    reviewed-claim-source
    Year
    2011
    Authors
    1. National Aeronautics and Space Administration
    Publisher
    NASA
    Resource Type
    Active spaceflight materials standard (exact value: active-spaceflight-materials-standard)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    NASA-STD-6001B with Change 3 provides configuration-sensitive requirements and test methods for flammability, offgassing, compatibility, smoke, heat release, and wiring evaluation for spaceflight materials and associated support equipment. It is one scoped requirements domain, not exhaustive evidence that no integrated civil-habitat standard exists.
    Verified At
    2026-07-26
    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-im-nasa-rm-8729

    NASA Reliability and Maintainability Standard for Spaceflight and Support Systems

    Record fingerprint
    f935bcbb355a4bf8d819f0603e235542c2c4ecd60779de7e056933692fe6cff4
    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-im-nasa-rm-8729
    Title
    NASA Reliability and Maintainability Standard for Spaceflight and Support Systems
    Topic
    reviewed-claim-source
    Year
    2017
    Authors
    1. National Aeronautics and Space Administration
    Publisher
    NASA
    Resource Type
    Active reliability maintainability standard (exact value: active-reliability-maintainability-standard)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Lifecycle reliability and maintainability objectives, planning, analysis, verification, validation, and evidence for NASA programs.
    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.
  28. atlas-resource · reviewed-source-src-po-nasa-propulsion-breakthroughs

    Assessing Potential Propulsion Breakthroughs

    Record fingerprint
    ee94a1635d4001ac06bca655d6d9aef3a1b45571fc49a867d052ad550329ab7d
    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-nasa-propulsion-breakthroughs
    Title
    Assessing Potential Propulsion Breakthroughs
    Topic
    reviewed-claim-source
    Year
    2005
    Authors
    1. Marc G. Millis
    Publisher
    NASA Glenn Research Center
    Resource Type
    Government technical assessment (exact value: government-technical-assessment)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Historical framework for assessing speculative propulsion claims, energy implications, evidentiary maturity, and claimed breakthrough potential.
    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.
  29. atlas-resource · reviewed-source-src-po-unesco-cultural-diversity

    UNESCO Universal Declaration on Cultural Diversity

    Record fingerprint
    156cb2a115e8e9ae85beb53ce864b47d5a9ac5d46c8388872506c885d91e73a8
    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-unesco-cultural-diversity
    Title
    UNESCO Universal Declaration on Cultural Diversity
    Topic
    reviewed-claim-source
    Year
    2001
    Authors
    1. United Nations Educational, Scientific and Cultural Organization
    Publisher
    UNESCO
    Resource Type
    International normative instrument (exact value: international-normative-instrument)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Normative principles connecting cultural diversity, pluralism, participation, cultural rights, and the non-derogation of human rights.
    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-08-2 Minimum crew study ddbaddfafdabfb7e24f1a89cbc849bd0871af946d9f8f0c384f1a13c26abaf5f 1 bounded-competence: information-science
atlas-resource:ntrs-20030001104 Studies Toward Birth and Early Mammalian Development in Space a49ce390477b3dc5fed415ef6cb1abd6d07c4f67dee24ca3e5485e806bec7c73 1 bounded-competence: information-science
atlas-resource:ntrs-20030015481 Orbital Aggregation and Space Infrastructure Systems (OASIS) 62660d97ac254326a1eeceed6aed77caf6ba4f04b2b6d0331669b666ee826e54 1 bounded-competence: information-science
atlas-resource:ntrs-20060034828 Smart Executives for Autonomous Spacecraft 673501de010faa0d3c6abac739bc48b5bb0536f18a7eb19353938534111df2ae 1 bounded-competence: information-science
atlas-resource:ntrs-20100018419 Spacecraft Design Thermal Control Subsystem b344158e071a628d0a446b1719ba5d13e7fde130e4628ea5b9e64e6c5bba4137 1 bounded-competence: information-science
atlas-resource:ntrs-20110012304 Human Research Program Requirements Document. Human Research Program Revision E d63f43669dd6d4b596b3bb7ba76cde353c1b45d5b8281fa23420b738f7dc495d 1 bounded-competence: information-science
atlas-resource:ntrs-20130000290 Autonomous Navigation for Deep Space Missions cedb5b745d2ef52aabbbc6ee27c857a2c37c5958e98ba48e06a70edf56747c38 1 bounded-competence: information-science
atlas-resource:ntrs-20130000761 MAARSS: Magnet Architectures and Active Radiation Shielding Study 1680ca80446251c3955d68da04ab38ec56c9dd77fd206a6701eef2a32386fb14 1 bounded-competence: information-science
atlas-resource:ntrs-20160005014 Resource Prospector Instrumentation for Lunar Volatiles Prospecting, Sample Acquisition and Processing a20be334bc618f9d37f7f1d3c9a6b7b1e4283dded631adebee196e6410d2f763 1 bounded-competence: information-science
atlas-resource:ntrs-20160005653 Expanding NASA and Roscosmos Scientific Collaboration on the International Space Station 48f576a1a4d49cfdd52956bab1d611248c9e6c14487cdc09cce9705009909c33 1 bounded-competence: information-science
atlas-resource:ntrs-20190025623 Toward a Unified Routing Framework for Delay-Tolerant Networking f232f6947cdf0da46d80123ce4dbdd32baea6e763a654f58493f63818113416e 1 bounded-competence: information-science
atlas-resource:ntrs-20205006930 In-Situ Resource Utilization Options for the Moon and Mars b49ce00a6c90b66c159ae5f2a08771aa02492b06dfb4b8c2c6e69c789ac31b5a 1 bounded-competence: information-science
atlas-resource:ntrs-20210004919 STARDUST: Discovery's InterStellar Dust and Cometary Sample Return Mission 19f421aea4a51b74e28c917c8ea5f72cd597cff17314df4eb1d94f1dc6b1a910 1 bounded-competence: information-science
atlas-resource:ntrs-20210004988 Spacecraft Autonomous Navigation for Formation Flying Earth Orbiters Using GPS f47b36fba63b698f22eeec087be111ecab36c53cbd274bc3cbd6b2898b166ea5 1 bounded-competence: information-science
atlas-resource:ntrs-20210020800 Habitability Models for Astrobiology 143a300b8701b9e1be19001e4eb898778cfdc189ff73ddeb46bd2f4381e71951 1 bounded-competence: information-science
atlas-resource:ntrs-20220016034 Ideas For Infusing In-Space Servicing, Assembly and Manufacturing Concepts into Nuclear Electric Propulsion Architectures 15ff00fdcc236913cac539bfc3a2ad42abb0d3a6f72dd437d22c93cf94c25adb 1 bounded-competence: information-science
atlas-resource:ntrs-20230004199 Human Factors Support for On-Orbit Servicing, Assembly and Manufacturing Mission 1 (OSAM-1) 40fa678ab84b55988aa044a03d1c04ba02266deb83af7330914aa8b0bd770940 1 bounded-competence: information-science
atlas-resource:ntrs-20250000752 Parametric Trade Space Investigation of Particle Bed Reactors for Nuclear Thermal Propulsion 0a53ca924532746fb9b7d9fb9d3da40304bfb2f2b6577e3c92b0e962b12ee00a 1 bounded-competence: information-science
atlas-resource:ntrs-20260001265 Evaluating a Community-Based Intervention to Advance Food Equity and Climate Resilience in the South Bronx: Findings from the LEAF Program b38fab99a8fc19075b7854f493308e607ef8e9e0714cd7ddfb3bf68e33cf2d61 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-c1517-nist-portable-dosimetry Electron Spin Resonance Sensor for Portable and Adaptable Retrospective Dosimetry 9afe160df85a04705f7e2ebca35dc08c70c0d2b6b6a64f32060d4aafa0f45b7b 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-c1517-spohn-exogeoscience Exo-Geoscience Perspectives Beyond Habitability 7fbcb069906a9ff0865894f75400f8f69a49ce213341a0fc7922bb9df64fdfb3 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-cd-nasa-open-science Open Science d2b4593bf5604a9f7a60cae23d18d4202892831925c6eb277ae42247a2d74644 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-cd-nasa-partnerships Partnerships 43b9e1a962cadb74a8a5c1710188ab32cd8c2a5f9a2399356b507e722e052f22 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-cu-w3c-wcag22 Web Content Accessibility Guidelines 2.2 384b32120c4cae6bc2c6e86eac83a0834e5b1038968313ecb85d9629124ac1ce 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-gr-undrr-sendai Sendai Framework for Disaster Risk Reduction 2015–2030 a06e8ed978322cea8c621509359c7344f7b2314ea194d3e8c308f5543742a2d4 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-hp-nasa-std-6001 Flammability, Offgassing, and Compatibility Requirements and Test Procedures 52ba82dc59982ed3a72726c97cad8dec74e9cd28ccfb02881fa5a007888f46dc 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-im-nasa-rm-8729 NASA Reliability and Maintainability Standard for Spaceflight and Support Systems f935bcbb355a4bf8d819f0603e235542c2c4ecd60779de7e056933692fe6cff4 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-po-nasa-propulsion-breakthroughs Assessing Potential Propulsion Breakthroughs ee94a1635d4001ac06bca655d6d9aef3a1b45571fc49a867d052ad550329ab7d 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-po-unesco-cultural-diversity UNESCO Universal Declaration on Cultural Diversity 156cb2a115e8e9ae85beb53ce864b47d5a9ac5d46c8388872506c885d91e73a8 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-08-2 Minimum crew study (opens external site in a new tab) 2026-07-25 Inspected as a core capability-area source. Inclusion supplies context; it is not automatically evidence for a provisional claim. 84c7af7fecffd9a88bdd192a9075dd414e1f9295a8b034fd5973bbcbc1bb1bbc
official-atlas-resource-ntrs-20030001104 Studies Toward Birth and Early Mammalian Development in Space (opens external site in a new tab) 2026-07-25 NTRS metadata and abstract provide experimental context, but curation did not validate study details, animal welfare, outcomes, or human translation. It is high-consequence biology context, not reproductive guidance. a18bb3698d0927683e74e95882fae6d5b7af518482f865a0322ef4dc9c926672
official-atlas-resource-ntrs-20030015481 Orbital Aggregation and Space Infrastructure Systems (OASIS) (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. 473ff59147714d7005ed2723682dbfb7b89b27e66a5b5bdaaa70e04c91a761d7
official-atlas-resource-ntrs-20060034828 Smart Executives for Autonomous Spacecraft (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. 8c6238586a26bc15d16ef93c047d93f37e761a8a514aad4daa61f0054960937b
official-atlas-resource-ntrs-20100018419 Spacecraft Design Thermal Control Subsystem (opens external site in a new tab) 2026-07-25 Only NTRS metadata and an abstract are open here; the preprint text, numerical guidance, and present applicability were not validated. It is foundational design context, not claim evidence. ff4096560ff3b6c74d17dd012d2b03fe29acf4cecc1d67da0b612a845d8aa34a
official-atlas-resource-ntrs-20110012304 Human Research Program Requirements Document. Human Research Program Revision E (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. 81ce8cc596eedbb981181b5d2d0c5f9e0855aad6ea6cced519867946900b1a94
official-atlas-resource-ntrs-20130000290 Autonomous Navigation for 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. c4b966aafe367057dee35afabb9ff22de3329b0cff338e9b3e8ecf90c42e5987
official-atlas-resource-ntrs-20130000761 MAARSS: Magnet Architectures and Active Radiation Shielding Study (opens external site in a new tab) 2026-07-25 The design study is low-readiness and this pass did not validate field models, secondary radiation, quench safety, mass, or power. It is active-shielding concept context, not proof of practical protection. 0e24b8720226c7ee437aa8319bb4572e1269c2899c92ade11b87eb62d3606b44
official-atlas-resource-ntrs-20160005014 Resource Prospector Instrumentation for Lunar Volatiles Prospecting, Sample Acquisition and Processing (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. 11c72a7939535103d0f1b08a45e54c52f0032e5223457aaffc741de186e87a93
official-atlas-resource-ntrs-20160005653 Expanding NASA and Roscosmos Scientific Collaboration on 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. 988cfaf82c97c2385b8119be009a6516569266b5868c71654cc3645d172b14f5
official-atlas-resource-ntrs-20190025623 Toward a Unified Routing Framework for Delay-Tolerant Networking (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. eced35aa1f37a2322a1fa88f7cab3cc26ce31bb5889cb0607fbfd8d06865081f
official-atlas-resource-ntrs-20205006930 In-Situ Resource Utilization Options for the Moon and Mars (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. 5ef7fca701693d0c72c563df14b1cb1d2a0c717503eaed2631f51b8d55cf6809
official-atlas-resource-ntrs-20210004919 STARDUST: Discovery's InterStellar Dust and Cometary Sample Return Mission (opens external site in a new tab) 2026-07-25 Only NTRS metadata and an abstract are open here; sample integrity, management claims, and later mission outcomes require source-specific review. Inclusion is contextual, not automatic evidence. 9df4bfc1e6874910bb485a5a8eeb4588096c45d9591d448c8905ac81174324d9
official-atlas-resource-ntrs-20210004988 Spacecraft Autonomous Navigation for Formation Flying Earth Orbiters Using GPS (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. 2e7b7884520faf62eb901159e03950104419605cbec00e99b8b8aebae2e4f4ee
official-atlas-resource-ntrs-20210020800 Habitability Models for Astrobiology (opens external site in a new tab) 2026-07-25 NTRS provides open full text, but this accepted manuscript (version with final changes) was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence. 3274b0ac4b90016728da9e6e282abef58d8181bbfa435a2f9acbbedded696486
official-atlas-resource-ntrs-20220016034 Ideas For Infusing In-Space Servicing, Assembly and Manufacturing Concepts into Nuclear Electric Propulsion Architectures (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. 948238ee3d72c6e6fedef33fa867da5d10a3513084a30b57789ecaa6a9b341ff
official-atlas-resource-ntrs-20230004199 Human Factors Support for On-Orbit Servicing, Assembly and Manufacturing Mission 1 (OSAM-1) (opens external site in a new tab) 2026-07-25 NTRS provides open full text, but this technical memorandum (tm) was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence. 33ee99ea7309b6ff4538e4ae8e0faf8e058d32b2b626c184b4825803292d2dfb
official-atlas-resource-ntrs-20250000752 Parametric Trade Space Investigation of Particle Bed Reactors for Nuclear Thermal Propulsion (opens external site in a new tab) 2026-07-25 NTRS lists open full text, but this pass did not reproduce calculations or assess safety, proliferation, test, or licensing constraints. It is civil high-consequence concept context, not design validation. 5470fbe65dcdae6a5373b961e8b48dc1540230f7d1ac95a418529087f259123b
official-atlas-resource-ntrs-20260001265 Evaluating a Community-Based Intervention to Advance Food Equity and Climate Resilience in the South Bronx: Findings from the LEAF Program (opens external site in a new tab) 2026-07-25 NTRS provides open full text, but this reprint (version printed in journal) was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence. cc18e6a840e00971f627d8fc710e1963d18d4f3905852b0eac77afdccd6ad3d5
official-atlas-resource-reviewed-source-src-c1517-nist-portable-dosimetry Electron Spin Resonance Sensor for Portable and Adaptable Retrospective Dosimetry (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. 89ed122c89e5d8aa10824e72c72be6a6325659fc0cea5dc11dc83de672da5485
official-atlas-resource-reviewed-source-src-c1517-spohn-exogeoscience Exo-Geoscience Perspectives Beyond Habitability (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. caec3ec9c0558e3218dc38d405643fdaf61ccf9bf16a07d7c70a7b4093fcf40c
official-atlas-resource-reviewed-source-src-cd-nasa-open-science Open Science (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. 07208ef99593f35b3b823b6f760fef967a0e08d380a99668577ce4ac8888e482
official-atlas-resource-reviewed-source-src-cd-nasa-partnerships Partnerships (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. e0d6350813a3d62b1da244ac16534fdf4142898e0a42a6e299ef8ef62043ade2
official-atlas-resource-reviewed-source-src-cu-w3c-wcag22 Web Content Accessibility Guidelines 2.2 (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. b0e083456fab4c09bae2148dfc5fab22ae40db53d3b65d22e2e6516f21ed005e
official-atlas-resource-reviewed-source-src-gr-undrr-sendai Sendai Framework for Disaster Risk Reduction 2015–2030 (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. a2087feaa9391ba9a47e90693546598a4ad7bdb761b038c6cc756a0ece3e4484
official-atlas-resource-reviewed-source-src-hp-nasa-std-6001 Flammability, Offgassing, and Compatibility Requirements and Test Procedures (opens external site in a new tab) 2026-07-26 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. c0ddfb1e79b004b10071958919014ad7e86f7640093fcbe09eacb38d971045e0
official-atlas-resource-reviewed-source-src-im-nasa-rm-8729 NASA Reliability and Maintainability Standard for Spaceflight and Support Systems (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. 217d5b6d8824890f1419c8b58a100c4bb7272274d23b4d82a3b81d6fbc55da82
official-atlas-resource-reviewed-source-src-po-nasa-propulsion-breakthroughs Assessing Potential Propulsion Breakthroughs (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. c10004425b0d11c4c23052dd34f103628770081f166455b71f1326a7a33df66a
official-atlas-resource-reviewed-source-src-po-unesco-cultural-diversity UNESCO Universal Declaration on Cultural Diversity (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. a722dd110a7c50cefa7f37d72320a3cd27161097c7d48b52eab4331993b455fb

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

110.1 KB · packet identity 9115e2e00f6d51f4…

Download packet

Blank decision worksheet · JSON

20.5 KB · template identity 90e7a4463ec1bfb9…

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-0a · 9115e2e00f6d51f4f1a551925c4ac6bda560d767507d46452709768876201b2c

Page citations and accountability links

  • Exact frozen packet
    Complete packet payload; SHA-256 9115e2e00f6d51f4f1a551925c4ac6bda560d767507d46452709768876201b2c · 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