Packet identity

Packet ID
resources:bucket-1d
Packet SHA-256 identity
a7539d186e1275358db1f9611f7dc24e37c433af389ac478bd9814bbe3621954
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
18
Reference sources
18

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 · ntrs-19840050758

    Deep space communication - Past, present, and future

    Record fingerprint
    74e8dccacad12185f763657012a09f7f2bdcb8865d7355265ae5f00329240c42
    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-19840050758
    Title
    Deep space communication - Past, present, and future
    Topic
    communications-navigation
    Year
    1984
    Published At
    1984-05-01T00:00:00.0000000+00:00
    Authors
    1. Posner, E. C.
    2. Stevens, R.
    Publisher
    Legacy CDMS
    Resource Type
    Reprint (Version printed in journal)
    Access
    open metadata
    Abstract
    This paper reviews the progress made in deep space communication from its beginnings until now, describes the development and applications of NASA's Deep Space Network, and indicates directions for the future. Limiting factors in deep space communication are examined using the upcoming Voyager encounter with Uranus, centered on the downlink telemetry from spacecraft to earth, as an example. A link calculation for Voyager at Uranus over Australia is exhibited. Seven basic deep space communication functions are discussed, and technical aspects of spacecraft communication equipment, ground antennas, and ground electronics and processing are considered.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Deep space communication - Past, present, and future” covers This paper reviews the progress made in deep space communication from its beginnings until now, describes the development; it materially informs GShips work on deep space communications.
    Verified At
    2026-07-25
    Curation Topic
    deep-space-communications
    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.
  2. atlas-resource · ntrs-19850021219

    Controlled Ecological Life Support System. Life Support Systems in Space Travel

    Record fingerprint
    f501b1024dfc37b6faf271871d302d1c9aa257d48bed71ae67cc45f0d34f3675
    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-19850021219
    Title
    Controlled Ecological Life Support System. Life Support Systems in Space Travel
    Topic
    ecology-food
    Year
    1985
    Published At
    1985-06-01T00:00:00.0000000+00:00
    Authors
    1. Macelroy, R. D.
    2. Smernoff, D. T.
    3. Klein, H. P.
    Publisher
    Legacy CDMS
    Resource Type
    Conference Proceedings
    Access
    open full text
    Abstract
    Life support systems in space travel, in closed ecological systems were studied. Topics discussed include: (1) problems of life support and the fundamental concepts of bioregeneration; (2) technology associated with physical/chemical regenerative life support; (3) projection of the break even points for various life support techniques; (4) problems of controlling a bioregenerative life support system; (5) data on the operation of an experimental algal/mouse life support system; (6) industrial concepts of bioregenerative life support; and (7) Japanese concepts of bioregenerative life support and associated biological experiments to be conducted in the space station.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 1985 conference proceedings from Legacy CDMS specifically covers “Controlled Ecological Life Support System. Life Support Systems in Space Travel”; its abstract describes Life support systems in space travel, in closed ecological systems were studied. Topics discussed include: (1) problems of life support and the fundamental concepts of… This materially informs GShips closed ecology and food.
    Verified At
    2026-07-25
    Curation Topic
    closed ecology and food
    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.
  3. atlas-resource · ntrs-19890056342

    Bio-regenerative life support

    Record fingerprint
    1bdad94db01ed7145e5a0ea90cd829504f18e736f0d7a125a7f4176b7ef8bac6
    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-19890056342
    Title
    Bio-regenerative life support
    Topic
    life-support
    Year
    1989
    Published At
    1989-01-01T00:00:00.0000000+00:00
    Authors
    1. Macelroy, Robert D.
    2. Wydeven, Theodore, Jr.
    Publisher
    Legacy CDMS
    Resource Type
    Conference Paper
    Access
    open metadata
    Abstract
    The basis for and the potential uses of bio-regenerative life support are examined. Bio-regenerative life support systems are an alternative to physical-chemical regeneration techniques for use when resupply of a crew in space is expensive, or when the logistics of resupply are difficult. Many of the scientific studies required for bio-regenerative life support systems have been completed and preliminary development of some components will begin within the next 12 to 18 months. The focus of the work that lies ahead will be efficient power and mass use, long-term system stability, component function, systems integration, and extensive testing in the space environment. Because of the advantages of bio-regeneration, it is anticipated that human life support for long-term space missions will evolve to include increasingly large amounts of biologically-based regeneration.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 1989 conference paper from Legacy CDMS specifically covers “Bio-regenerative life support”; its abstract describes The basis for and the potential uses of bio-regenerative life support are examined. Bio-regenerative life support systems are an alternative to physical-chemical… This materially informs GShips regenerative life support.
    Verified At
    2026-07-25
    Curation Topic
    regenerative life support
    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.
  4. atlas-resource · ntrs-19930015743

    Data availability and data archeology from the former Soviet Union

    Record fingerprint
    14df9e907d202f682e32a6f2f48666fa21b2b1c18182993f4325f811f7d9a602
    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-19930015743
    Title
    Data availability and data archeology from the former Soviet Union
    Topic
    mission-architecture
    Year
    1992
    Published At
    1992-01-01T00:00:00.0000000+00:00
    Authors
    1. Sychev, Yuri
    2. Mikhailov, Nickolai N.
    Publisher
    Legacy CDMS
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    Acquisition of data on the ocean is believed to start in 1872, when the Royal Navy ship 'Challenger' performed oceanographic stations in its round-world voyage (1872-1876). The first oceanographic studies of the World Ocean refer to the 80s second half of the 19th century. During its round-world expedition 'Vityaz' (1886-1889) headed by S.O. Markov, performed hydrological measurements in the Baltic Sea, Atlantic and Pacific Oceans. According to information available the regular expedition observations (prototype of future complex international program on the ocean research) started in the second half of 80s last century under the auspice of Kiev commission for exploration of German Seas. Systematic hydrological observations were organized by Hydrographic Department of Russia in 1876-1879 according to the program similar to the Kiev one and observations were regularly made by ships of custom service over the Russian area of the Baltic Sea. The increasing demands in oceanographic data contributed to considerable progress in exploration of the World Ocean during current century whole tendency to increase and become more significant has been observed for the last 30-40 years. Most probably various expeditions which were carried out during International Geophysical Year in different regions of the World Ocean are to be reference point in performing intensive oceanographic observations of Marine environment. In the former USSR oceanographic observations are made by research and hydrographic vessels, commercial and fishery ships as well as oil production platforms, coastal hydrometeorological station and other observing platforms. Oceanographic observations data, available from main sources of information on the ocean-research vessels, are also considered in the report.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated as Earthside data-archeology context for recovering, interpreting, and integrating long-lived ocean observations across institutions, formats, political transitions, and incomplete archives.
    Verified At
    2026-07-25
    Curation Topic
    knowledge preservation
    Evidence Boundary
    NTRS lists open full text, but this pass reviewed only metadata and abstract and did not audit the recovered datasets. Cross-domain relevance is methodological context, not evidence for a GShips preservation claim.
  5. atlas-resource · ntrs-19930033435

    Controlled Ecological Life Support System - CELSS

    Record fingerprint
    ceab6ace41c821f322126b77adb63ca7af7ba3d45d3e97d69930ab6238db2e2e
    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-19930033435
    Title
    Controlled Ecological Life Support System - CELSS
    Topic
    ecology-food
    Year
    1992
    Published At
    1992-01-01T00:00:00.0000000+00:00
    Authors
    1. Sager, John C.
    Publisher
    A. Deepak Publishing
    Resource Type
    Conference Proceedings
    Access
    open metadata
    Abstract
    The Controlled Ecological Life Support System (CELSS) Program, a NASA effort to develop bioregenerative systems which provide required life support elements for crews on long duration space missions or extraterrestrial planetary colonizations, is briefly discussed. The CELSS analytical requirements are defined in relation to the life support objectives and priorities of a CELSS. The first phase of the CELSS Breadboard Concept is shown.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because it records NASA CELSS objectives and analytical requirements for bioregenerative crew support, useful as historical program context.
    Verified At
    2026-07-25
    Curation Topic
    bioregenerative-life-support
    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.
  6. atlas-resource · ntrs-20000067640

    Propulsion Options For Interstellar Exploration

    Record fingerprint
    ab3f75c1a01ca17b20aa3343e53cbeaa8583860bd3c768e2212fc78ccce8b21b
    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-20000067640
    Title
    Propulsion Options For Interstellar Exploration
    Topic
    propulsion
    Year
    2000
    Published At
    2000-01-01T00:00:00.0000000+00:00
    Authors
    1. Johnson, Les
    2. Leifer, Stephanie
    Publisher
    Marshall Space Flight Center
    Resource Type
    Abstract
    Access
    open metadata
    Abstract
    NASA is considering missions to explore near-interstellar space (40 - 250 Astronomical Units) 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 a propulsion system capable of providing fast trip times, yet which has low enough mass to allow for the use of inexpensive launch vehicles. Advanced propulsion technologies that might support the First interstellar precursor mission by the end of the first decade of the new millennium include solar sails and nuclear electric propulsion. Solar sails and electric propulsion are two technology areas that may hold promise for the next generation of interstellar precursor missions as well - perhaps a thousand astronomical units traveled in a professional lifetime. Future missions to far beyond the Heliosphere will require the development of propulsion technologies that are only at the conceptual stage today. For years, the scientific community has been interested in solar sail and electric propulsion technologies to support robotic exploration of the solar system. Progress in thin-film materials fabrication and handling, and advancement in technologies that may enable the deployment of large sails in space are only now maturing to the point where ambitious interstellar precursor missions using sails can be considered. Xenon ion propulsion is now being demonstrated for planetary exploration by the Deep Space 1 mission. The primary issues for the adaptation of electric propulsion to interstellar precursor applications include the development of low specific mass nuclear power systems, engine lifetime, and high power operation. Recent studies of interstellar precursor mission scenarios that use these propulsion systems will be described, and the range of application of each technology will be explored.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for propulsion options intended to reach roughly 40–250 AU, including solar sails and nuclear-electric systems under mass and launch-cost constraints.
    Verified At
    2026-07-25
    Curation Topic
    interstellar precursors
    Evidence Boundary
    Only NTRS metadata and an abstract are open here; dated schedules and performance estimates were not reproduced. It is precursor trade context, not proof of readiness.
  7. atlas-resource · ntrs-20040089166

    Engineering plants for spaceflight environments

    Record fingerprint
    9b9052b0f54aabf1ee2c03156f4c825efc750a8dd24aa168c5534e8f33b7eea4
    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-20040089166
    Title
    Engineering plants for spaceflight environments
    Topic
    reproduction-genetics
    Year
    1999
    Published At
    1999-05-01T00:00:00.0000000+00:00
    Authors
    1. Bugbee, B.
    Publisher
    Legacy CDMS
    Resource Type
    Reprint (Version printed in journal)
    Access
    open metadata
    Abstract
    The conversion efficiency of radiation into biomass and yield has steadily increased for centuries because of continued improvement in both plant genetics and environmental control. Considerable effort has gone into improving the environment for plant growth in space, but work has only begun to engineer plants for spaceflight. Genetic manipulation offers tremendous potential to improve our ability to study gravitational effects. Genetic manipulation will also be necessary to build an efficient regenerative life support system. We cannot fully characterize plant response to the spaceflight environment without understanding and manipulating their genetic composition. Identification and selection of the existing germplasm is the first step. There are thousands of cultivars of each of our major crop plants, each specifically adapted to a unique environment on our planet. Thousands of additional lines are held in national germplasm collections to maintain genetic diversity. Spaceflight imposes the need to tap this diversity. Existing lines need to be evaluated in the environment that is characteristic of closed-system spaceflight conditions. Many of the plant growth challenges we confront in space can be better solved through genetic change than by hardware engineering. Ten thousand years of plant breeding has demonstrated the value of matching genetics with the environment. For example, providing continuous light can increase plant growth in space, but this often induces calcium deficiencies because Ca is not supplied by guttation during a dark period. This deficiency cannot be eliminated through increased root-zone and foliar Ca applications. It can be solved, in wheat, through genetic selection of lines that do not have the deficiency. Subsequent comparison of lines with and without the Ca deficiency has also helped us understand the nature of the problem.
    Keywords
    1. Non-NASA Center
    2. Review
    3. NASA Discipline Life Support Systems
    4. Review, Tutorial
    5. Plants/genetics/growth & development/metabolism
    6. Environment, Controlled
    7. Space Flight/instrumentation
    8. Weightlessness
    9. Triticum/genetics/growth & development/metabolism
    10. Plant Physiology
    11. Oryza sativa/genetics/growth & development/metabolism
    12. Ethylenes/metabolism
    13. Ecological Systems, Closed
    14. Light
    15. Genetic Engineering
    16. Life Support Systems/instrumentation
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for proposed genetic and physiological engineering of plants to improve food, atmosphere, waste-processing, and pharmaceutical roles in space habitats.
    Verified At
    2026-07-25
    Curation Topic
    engineered space crops
    Evidence Boundary
    This is proposal-level bioengineering context; performance, ecological stability, containment, ethics, and multigenerational consequences were not validated. It is high-consequence context, not a recommendation or evidence of safe engineered crops.
  8. atlas-resource · ntrs-20040089380

    Bioregenerative life support: not a picnic

    Record fingerprint
    18fe2face5bcf5a8bae39ab40dafa02dffc3a704ddaddd2fc6f8a8cab3c62469
    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-20040089380
    Title
    Bioregenerative life support: not a picnic
    Topic
    ecology-food
    Year
    1998
    Published At
    1998-05-01T00:00:00.0000000+00:00
    Authors
    1. Knott, W. M.
    Publisher
    Kennedy Space Center
    Resource Type
    Reprint (Version printed in journal)
    Access
    open metadata
    Abstract
    If humans are to live permanently in space, regenerative life support systems are an enabling technology and must replace the picnic approach of taking all supplies required for each mission. These systems are classified by technologies as either physical/chemical or bioregenerative. Both of these system-types can recycle water, remove carbon dioxide, produce oxygen, and recover essential elements from waste products. Bioregenerative can also produce food, thus, making it essential if humans are to exist in space independent of earth. A solely bioregenerative life support system includes plants as a biomass production module and microbial organisms in bioreactors as a resource recovery module. In the Advanced Life Support Program, bioregenerative life support systems are being investigated through a research and technology development project which includes large scale testing as part of the Breadboard Project and human tests conducted in the soon to be constructed BioPlex facility. Research and technology development efforts are directed toward optimizing biomass productivity in controlled chambers by developing light weight, energy efficient, and automated systems; recycling liquid and solid wastes; baselining the operation of bioreactors; determining system microbial stability; assessing chemical contamination; and building models required for long term system operations. The program will include space flight studies in the near future to determine if these life support technologies will function in microgravity. When a bioregenerative system is finally incorporated into a mission, the conversion from a picnic and resupply mentality to permanent recycling and independence from earth will be complete.
    Keywords
    1. NASA Center KSC
    2. NASA Discipline Life Support Systems
    3. Life Support Systems/instrumentation
    4. Waste Management/methods
    5. Weightlessness
    6. Ecological Systems, Closed
    7. Space Flight/instrumentation/trends
    8. Sodium Chloride/pharmacokinetics
    9. Biomass
    10. Human
    11. Water Purification
    12. Crops, Agricultural
    13. Evaluation Studies
    14. Hydroponics
    15. Environmental Microbiology
    16. Space Simulation
    17. Biofilms
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Bioregenerative life support: not a picnic” covers NASA Center KSC, NASA Discipline Life Support Systems, Life Support Systems/instrumentation, Waste Management/methods; it materially informs GShips work on bioregenerative life support.
    Verified At
    2026-07-25
    Curation Topic
    bioregenerative-life-support
    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.
  9. atlas-resource · ntrs-20060043263

    Navigator program: exploring new worlds

    Record fingerprint
    06d24a3c811d1f787661a9a1d6683c02e40d0fa058389754d6d24e1bea7a4451
    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-20060043263
    Title
    Navigator program: exploring new worlds
    Topic
    destinations-astrobiology
    Year
    2006
    Published At
    2006-03-01T00:00:00.0000000+00:00
    Authors
    1. Lawson, Peter R.
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Conference Paper
    Access
    open metadata
    Abstract
    NASA's Navigator Program is a series of interrelated missions to explore and characterize new worlds. Each successive mission provides an essential step toward the ultimate goal of discovering habitable planets and life around nearby stars. Are there other solar systems like our own? Are there other habitable worlds? Is there life elsewhere in the universe? these questions are timeless, but only in this generation has technology progressed to the state where we can conceive of an build a suite of missions that capable of answering them. The Navigator Program and its missions are described in this paper.
    Keywords
    1. astrobiology
    2. extrasolar planets
    3. astronomy
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Navigator program: exploring new worlds” covers astrobiology, extrasolar planets, astronomy; it materially informs GShips work on exoplanet observatories.
    Verified At
    2026-07-25
    Curation Topic
    exoplanet-observatories
    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-20070001554

    Structural and Radiation Shielding Properties of a Martian Habitat Material Synthesized From In-Situ Resources

    Record fingerprint
    68eedf0a63541be35de9f3499d5c93a8540edb05ad6788fa0857fb6f68cdf06c
    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-20070001554
    Title
    Structural and Radiation Shielding Properties of a Martian Habitat Material Synthesized From In-Situ Resources
    Topic
    structures-shielding
    Year
    2006
    Published At
    2006-01-01T00:00:00.0000000+00:00
    Authors
    1. Sen, S.
    2. Caranza, S.
    3. Bhattacharya, M.
    4. Makel, D. B.
    Publisher
    Marshall Space Flight Center
    Resource Type
    Abstract
    Access
    open metadata
    Abstract
    The 2 primary requirements of a Martian habitat structure include sufficient structural integrity and effective radiation shielding. In addition, the capability to synthesize such building materials primarily from in-situ resources would significantly reduce the cost associated with transportation of such materials and structures from earth. To demonstrate the feasibility of such an approach we have fabricated samples in the laboratory using simulated in-situ resources, evaluated radiation shielding effectiveness using radiation transport codes and radiation test data, and conducted mechanical properties testing. In this paper we will present experimental results that demonstrate the synthesis of polyethylene from a simulated Martian atmosphere and the fabrication of a composite material using simulated Martian regolith with polyethylene as the binding material. Results from radiation transport calculations and data from laboratory radiation testing using a 500 MeV/nucleon Fe beam will be discussed. Mechanical properties of the proposed composite as a function of composition and processing parameters will also be presented.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for a Martian habitat concept combining structural and shielding functions with locally sourced material, relevant to low-logistics construction and repair.
    Verified At
    2026-07-25
    Curation Topic
    in-situ habitat materials
    Evidence Boundary
    Selection rests primarily on catalog metadata; full methods, material properties, pressure design, and environmental testing were not validated. It is precursor context, not evidence of buildable or safe habitat performance.
  11. atlas-resource · ntrs-20160000442

    The AgMIP Coordinated Global and Regional Assessments (CGRA) of Climate Change Impacts on Agriculture and Food Security

    Record fingerprint
    b567f463f1ad14934cbc80cfc61cc1145bc8d356b425f1cbb97e6ee229b26d8a
    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-20160000442
    Title
    The AgMIP Coordinated Global and Regional Assessments (CGRA) of Climate Change Impacts on Agriculture and Food Security
    Topic
    ecology-food
    Year
    2015
    Published At
    2015-12-14T00:00:00.0000000+00:00
    Authors
    1. Ruane, Alex
    2. Rosenzweig, Cynthia
    3. Elliott, Joshua
    4. Antle, John
    Publisher
    Goddard Space Flight Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    The Agricultural Model Intercomparison and Improvement Project (AgMIP) has been working since 2010 to construct a protocol-based framework enabling regional assessments (led by regional experts and modelers) that can provide consistent inputs to global economic and integrated assessment models. These global models can then relay important global-level information that drive regional decision-making and outcomes throughout an interconnected agricultural system. AgMIPs community of nearly 800 climate, crop, livestock, economics, and IT experts has improved the state-of-the-art through model intercomparisons, validation exercises, regional integrated assessments, and the launch of AgMIP programs on all six arable continents. AgMIP is now launching Coordinated Global and Regional Assessments (CGRA) of climate change impacts on agriculture and food security to link global and regional crop and economic models using a protocol-based framework. The CGRA protocols are being developed to utilize historical observations, climate projections, and RCPsSSPs from CMIP5 (and potentially CMIP6), and will examine stakeholder-driven agricultural development and adaptation scenarios to provide cutting-edge assessments of climate changes impact on agriculture and food security. These protocols will build on the foundation of established protocols from AgMIPs 30+ activities, and will emphasize the use of multiple models, scenarios, and scales to enable an accurate assessment of related uncertainties. The CGRA is also designed to provide the outputs necessary to feed into integrated assessment models (IAMs), nutrition and food security assessments, nitrogen and carbon cycle models, and additional impact-sector assessments (e.g., water resources, land-use, biomes, urban areas). This presentation will describe the current status of CGRA planning and initial prototype experiments to demonstrate key aspects of the protocols before wider implementation ahead of the IPCC Sixth Assessment Report.
    Keywords
    1. models
    2. protocol (computers)
    3. agriculture
    4. climate change
    5. farm crops
    6. economics
    7. security
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “The AgMIP Coordinated Global and Regional Assessments (CGRA) of Climate Change Impacts on Agriculture and Food Security” covers models, protocol (computers), agriculture, climate change; 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.
  12. atlas-resource · ntrs-20160014658

    Bringing Exoplanet Habitability Investigations to High School

    Record fingerprint
    6135bf0d10bb96ed27fa68688ce92fd6e8e9992da53b09b4be6af486881f4101
    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-20160014658
    Title
    Bringing Exoplanet Habitability Investigations to High School
    Topic
    destinations-astrobiology
    Year
    2016
    Published At
    2016-12-12T00:00:00.0000000+00:00
    Authors
    1. Woody, Mary Anne
    2. Sohl, Linda
    Publisher
    Goddard Space Flight Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    Habitability, a.k.a. habitat suitability, is a topic typically discussed in Biology class. We present here a curriculum unit that introduces the topic of global-scale planetary habitability in a Physics classroom, allowing students to emulate the process of doing cutting-edge science and re-framing an otherwise "typical" physics unit in a more engaging and interactive way.
    Keywords
    1. termperature
    2. research practices
    3. habitability factors
    4. exoplanet
    5. habitability
    6. education
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Bringing Exoplanet Habitability Investigations to High School” covers termperature, research practices, habitability factors, exoplanet; it materially informs GShips work on astrobiology education.
    Verified At
    2026-07-25
    Curation Topic
    astrobiology-education
    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-20210001209

    Semi-Autonomous Spacecraft On-Board Ephemeris Propagation

    Record fingerprint
    199bb0d29574e61fa4a02a8d482200a092593e3e658364e78c2891cced9e5c0c
    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-20210001209
    Title
    Semi-Autonomous Spacecraft On-Board Ephemeris Propagation
    Topic
    ai-autonomy
    Year
    1995
    Published At
    1995-08-01T00:00:00.0000000+00:00
    Authors
    1. Kangas, J.
    2. Salama, A.
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Other
    Access
    open metadata
    Abstract
    Two strategies are presented for semi-autonomous on-board trajectory propagation. One implements a semi-analytic method and rectifies, when needed, a simple on-board (on-line) ephemeris. The method is called rectification in which only several parameters are uplinked to the spacecraft infrequently. The other strategy uses TOPEX/POSEIDON experience to build a data compression device for a wide range of orbits. A trade-off study is conducted to relate accuracy requirements with semi-major axis and eccentricity to minimize the frequency of uplinking.
    Keywords
    1. spacecraft
    2. navigation
    3. ephemeris
    4. autonomous
    5. spacecraft
    6. orbit
    7. determination
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Semi-Autonomous Spacecraft On-Board Ephemeris Propagation” covers spacecraft, navigation, ephemeris, autonomous; 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.
  14. atlas-resource · ntrs-20220019245

    Gecko Mobility Aids for a Common Habitat Architecture

    Record fingerprint
    751897a593a672f85da08492bdf33dc7b9068cff97d809cd2aa56be8fbf63cc6
    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-20220019245
    Title
    Gecko Mobility Aids for a Common Habitat Architecture
    Topic
    human-factors
    Year
    2023
    Published At
    2023-01-13T06:00:00.0000000+00:00
    Authors
    1. Robert L. Howard, Jr.
    2. Stephen McNierney
    3. Cade Shuck
    4. Sebastian Boal
    5. Harry L. Litaker, Jr.
    6. Denys Bulikhov
    Publisher
    Johnson Space Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    Spacecraft large enough for crew to move around inside them have traditionally used handrails and foot restraints to enable crew mobility. The mass of this hardware can become significant in large spacecraft such as the Common Habitat. Additionally, handrails and foot restraints in a multi-gravity habitat are trip hazards when the habitat is in a gravity environment. Further, ISS crew have noted risks of breaking ankles and wrists when using handrails for translation and have noted places where not enough handrails are present. Robotic gecko-derived grippers developed by JPL to retrieve satellites can be adapted to crew-worn pads that can adhere to surfaces to enable crew translation in microgravity. This
    technology will help to eliminate the need for handrails and foot restraints for mobility in crewed microgravity spacecraft cabins. It has the potential to achieve significant mass reductions in future space habitats, with application to suborbital flight, LEO, cislunar space, interplanetary space, the Moon, and Mars. Additionally, it can prevent crew injury and discomfort. Project goals and objectives are to prepare gecko uniform prototypes for use in multi-gravity testing and conduct initial investigations into human factors of postures and motions needed for intravehicular activity (IVA) translation and restraint in multiple gravity environments, without the use of handrails or foot restraints. Gecko grippers have been tested for use as robotic end effectors terrestrially, on microgravity aircraft, and aboard the ISS.
    Using the grippers as a body-mounted system to achieve IVA crew mobility is a new application that has not been pursued outside of this effort. This work will continue paper studies performed by NASA student interns by developing physical prototypes of spacecraft crew uniforms with gecko-derived body-mounted grippers. Clothing prototypes may include long sleeves, short sleeves, long pants, shorts, gloves, and/or booties equipped with gecko gripper pads. Forward work is to test these uniforms in a 1g environment to verify that the design does not introduce obstructions, trip hazards, or other consequences when used in terrestrial gravity. Based on the 1g test results, the uniform prototypes will be refined, and a test plan developed for testing at 0g, (1/6)g, and (3/8)g.
    Keywords
    1. Restraints and Mobility Aids
    2. Gecko Gripper
    3. Common Habitat
    4. Microgravity
    5. Deep Space
    6. Human Spaceflight
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2023 conference paper from Johnson Space Center specifically covers “Gecko Mobility Aids for a Common Habitat Architecture”; its abstract describes Spacecraft large enough for crew to move around inside them have traditionally used handrails and foot restraints to enable crew mobility. The mass of this hardware can… This materially informs GShips human factors and habitability.
    Verified At
    2026-07-25
    Curation Topic
    human factors and habitability
    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.
  15. atlas-resource · ntrs-20230015089

    NASA’s Galactic Cosmic Ray Simulator – How we study the effects of space radiation on Earth

    Record fingerprint
    f858f7e69a9e356b7a0ecf1dfa1325ecc8227bf65e7726eb86fc81f8d8a905ee
    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-20230015089
    Title
    NASA’s Galactic Cosmic Ray Simulator – How we study the effects of space radiation on Earth
    Topic
    radiation-environment
    Year
    2023
    Published At
    2023-10-30T04:00:00.0000000+00:00
    Authors
    1. Lisa Simonsen
    2. Tony Slaba
    Publisher
    Headquarters
    Resource Type
    Other - Journal article
    Access
    open full text
    Abstract
    Earth’s atmosphere and natural magnetic field do a good job protecting us from space radiation. Space radiation is different from radiation on Earth, which mostly comes from isotopes found in rock and soil or from medical procedures like an Xray. Ionizing space radiation comes from particles ejected from the Sun, or solar particle events, and from supernovae outside our solar 
    system making up a background of galactic cosmic radiation. These particles, representing the elements of the periodic table, have been stripped of their electrons as they are accelerated in interstellar space to almost the speed of light. One of NASA’s biggest challenges is protecting astronauts from these high energy particles of galactic cosmic radiation which can cause cancer and other diseases. To understand the biological damage imparted to living systems and to develop protective countermeasures, NASA has built a galactic cosmic ray simulator on Earth.
    Keywords
    1. Space Exploration Missions
    2. Galactic Cosmic Radiation
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for the NASA Space Radiation Laboratory galactic-cosmic-ray simulator, including its mixed-ion exposure strategy and role in improving ground-based biological risk studies.
    Verified At
    2026-07-25
    Curation Topic
    galactic cosmic ray simulation
    Evidence Boundary
    The journal record is useful method context, but curation did not reproduce beam spectra, exposures, biological analyses, or extrapolation to missions. It is simulator context, not standalone human-risk evidence.
  16. atlas-resource · ntrs-20240014771

    NASA HRP Space Radiation Element Initiatives

    Record fingerprint
    39f653e63453a8d1c797cbcd5a6851fdbb6c2086df5577f7adf4aa58c0132248
    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-20240014771
    Title
    NASA HRP Space Radiation Element Initiatives
    Topic
    radiation-environment
    Year
    2024
    Published At
    2024-12-06T06:00:00.0000000+00:00
    Authors
    1. Janapriya (JP) Saha
    2. Janice A Zawaski
    3. Jason M Weeks
    Publisher
    Johnson Space Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    The Space Radiation Element (SRE) with the Human Research Program (HRP) and NASA is tasked with the mission of characterizing and facilitating the management of the human health outcomes associated with space radiation exposure to ultimately protect astronaut health as well as enable human space exploration. To facilitate our mission, we provide funding for space radiation research but also provide several unique opportunities discussed below to educate and disseminate space radiation knowledge.
    Keywords
    1. Space radiation
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for a current overview of NASA Human Research Program radiation initiatives, including risk characterization, countermeasures, enabling models, and operational integration.
    Verified At
    2026-07-25
    Curation Topic
    space radiation program
    Evidence Boundary
    Curation screened the NTRS metadata and abstract rather than independently auditing the underlying health studies or program outcomes. It is program context, not clinical or mission-safety claim evidence.
  17. atlas-resource · reviewed-source-src-c1517-nasa-commercial-crew

    Commercial Crew Program Overview

    Record fingerprint
    276af2c9249c9404023be401f67ab1e8575dbe7557cb7db396cae2a1cb8e80fd
    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-nasa-commercial-crew
    Title
    Commercial Crew Program Overview
    Topic
    reviewed-claim-source
    Year
    2025
    Authors
    1. National Aeronautics and Space Administration
    Publisher
    NASA
    Resource Type
    Operational program overview (exact value: operational-program-overview)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Operational and certification context for commercial human transportation to low Earth orbit and the ISS, including additional research time and broader discovery opportunities; it is not a causal study of reusability.
    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.
  18. atlas-resource · reviewed-source-src-po-nasa-hidh

    Human Integration Design Handbook

    Record fingerprint
    36edb2dcfd087382b10b2e3ae269420f7e8d92747f8b44b197c2845a514904c9
    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-hidh
    Title
    Human Integration Design Handbook
    Topic
    reviewed-claim-source
    Year
    2014
    Authors
    1. National Aeronautics and Space Administration
    Publisher
    NASA
    Resource Type
    Institutional human systems handbook (exact value: institutional-human-systems-handbook)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Human-system integration, habitability, accessibility-adjacent design, workload, interfaces, task design, and human-performance guidance.
    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:ntrs-19840050758 Deep space communication - Past, present, and future 74e8dccacad12185f763657012a09f7f2bdcb8865d7355265ae5f00329240c42 1 bounded-competence: information-science
atlas-resource:ntrs-19850021219 Controlled Ecological Life Support System. Life Support Systems in Space Travel f501b1024dfc37b6faf271871d302d1c9aa257d48bed71ae67cc45f0d34f3675 1 bounded-competence: information-science
atlas-resource:ntrs-19890056342 Bio-regenerative life support 1bdad94db01ed7145e5a0ea90cd829504f18e736f0d7a125a7f4176b7ef8bac6 1 bounded-competence: information-science
atlas-resource:ntrs-19930015743 Data availability and data archeology from the former Soviet Union 14df9e907d202f682e32a6f2f48666fa21b2b1c18182993f4325f811f7d9a602 1 bounded-competence: information-science
atlas-resource:ntrs-19930033435 Controlled Ecological Life Support System - CELSS ceab6ace41c821f322126b77adb63ca7af7ba3d45d3e97d69930ab6238db2e2e 1 bounded-competence: information-science
atlas-resource:ntrs-20000067640 Propulsion Options For Interstellar Exploration ab3f75c1a01ca17b20aa3343e53cbeaa8583860bd3c768e2212fc78ccce8b21b 1 bounded-competence: information-science
atlas-resource:ntrs-20040089166 Engineering plants for spaceflight environments 9b9052b0f54aabf1ee2c03156f4c825efc750a8dd24aa168c5534e8f33b7eea4 1 bounded-competence: information-science
atlas-resource:ntrs-20040089380 Bioregenerative life support: not a picnic 18fe2face5bcf5a8bae39ab40dafa02dffc3a704ddaddd2fc6f8a8cab3c62469 1 bounded-competence: information-science
atlas-resource:ntrs-20060043263 Navigator program: exploring new worlds 06d24a3c811d1f787661a9a1d6683c02e40d0fa058389754d6d24e1bea7a4451 1 bounded-competence: information-science
atlas-resource:ntrs-20070001554 Structural and Radiation Shielding Properties of a Martian Habitat Material Synthesized From In-Situ Resources 68eedf0a63541be35de9f3499d5c93a8540edb05ad6788fa0857fb6f68cdf06c 1 bounded-competence: information-science
atlas-resource:ntrs-20160000442 The AgMIP Coordinated Global and Regional Assessments (CGRA) of Climate Change Impacts on Agriculture and Food Security b567f463f1ad14934cbc80cfc61cc1145bc8d356b425f1cbb97e6ee229b26d8a 1 bounded-competence: information-science
atlas-resource:ntrs-20160014658 Bringing Exoplanet Habitability Investigations to High School 6135bf0d10bb96ed27fa68688ce92fd6e8e9992da53b09b4be6af486881f4101 1 bounded-competence: information-science
atlas-resource:ntrs-20210001209 Semi-Autonomous Spacecraft On-Board Ephemeris Propagation 199bb0d29574e61fa4a02a8d482200a092593e3e658364e78c2891cced9e5c0c 1 bounded-competence: information-science
atlas-resource:ntrs-20220019245 Gecko Mobility Aids for a Common Habitat Architecture 751897a593a672f85da08492bdf33dc7b9068cff97d809cd2aa56be8fbf63cc6 1 bounded-competence: information-science
atlas-resource:ntrs-20230015089 NASA’s Galactic Cosmic Ray Simulator – How we study the effects of space radiation on Earth f858f7e69a9e356b7a0ecf1dfa1325ecc8227bf65e7726eb86fc81f8d8a905ee 1 bounded-competence: information-science
atlas-resource:ntrs-20240014771 NASA HRP Space Radiation Element Initiatives 39f653e63453a8d1c797cbcd5a6851fdbb6c2086df5577f7adf4aa58c0132248 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-c1517-nasa-commercial-crew Commercial Crew Program Overview 276af2c9249c9404023be401f67ab1e8575dbe7557cb7db396cae2a1cb8e80fd 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-po-nasa-hidh Human Integration Design Handbook 36edb2dcfd087382b10b2e3ae269420f7e8d92747f8b44b197c2845a514904c9 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-ntrs-19840050758 Deep space communication - Past, present, and future (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. 29dbbf09fe657199e66572ead16eff84a5aa1ea127836b01f93400c81c5a0c22
official-atlas-resource-ntrs-19850021219 Controlled Ecological Life Support System. Life Support Systems in Space Travel (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. ea62365b41e62eabcf08b8a9530aa2c86d57c7ff2285a948225eb3db883f456e
official-atlas-resource-ntrs-19890056342 Bio-regenerative life support (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. 5bdc9b80ceae97a2465ff66813e0219ab0541cc11da9ff6752b3a5e2edff63b1
official-atlas-resource-ntrs-19930015743 Data availability and data archeology from the former Soviet Union (opens external site in a new tab) 2026-07-25 NTRS lists open full text, but this pass reviewed only metadata and abstract and did not audit the recovered datasets. Cross-domain relevance is methodological context, not evidence for a GShips preservation claim. b912cb104be946e13a9b6265442d8a66f1b9c7c025df08f92d24862426c2eea8
official-atlas-resource-ntrs-19930033435 Controlled Ecological Life Support System - CELSS (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. f3d8b916191fb4f68fe08f28007aa8d1982fd941099458732b045efa2262f8eb
official-atlas-resource-ntrs-20000067640 Propulsion Options For Interstellar Exploration (opens external site in a new tab) 2026-07-25 Only NTRS metadata and an abstract are open here; dated schedules and performance estimates were not reproduced. It is precursor trade context, not proof of readiness. 40d1be4095ae54f74a3596cc1224d3156cffc8f417450ec1a6aa2e8871e928fd
official-atlas-resource-ntrs-20040089166 Engineering plants for spaceflight environments (opens external site in a new tab) 2026-07-25 This is proposal-level bioengineering context; performance, ecological stability, containment, ethics, and multigenerational consequences were not validated. It is high-consequence context, not a recommendation or evidence of safe engineered crops. 96571e7360f72661fb1125edf9db067927e6281f26036c8b5ce2d021644554e9
official-atlas-resource-ntrs-20040089380 Bioregenerative life support: not a picnic (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. 0bef06737ab83c85d5f655f438c44723ce45045b9d1b46e37aada3e23b76f661
official-atlas-resource-ntrs-20060043263 Navigator program: exploring new worlds (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. 4e4538ff0fa788555cf8172c1d12c9169d371d25b0eb7eb325023bbdd11c64de
official-atlas-resource-ntrs-20070001554 Structural and Radiation Shielding Properties of a Martian Habitat Material Synthesized From In-Situ Resources (opens external site in a new tab) 2026-07-25 Selection rests primarily on catalog metadata; full methods, material properties, pressure design, and environmental testing were not validated. It is precursor context, not evidence of buildable or safe habitat performance. a01713a75ad607836d8591b48c308be33704d58b43242da912b3ffc398ba9452
official-atlas-resource-ntrs-20160000442 The AgMIP Coordinated Global and Regional Assessments (CGRA) of Climate Change Impacts on Agriculture and Food Security (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. dffeb906e5cb9f11e8eb178e78760b9918184abb4020e0eac7e2a9ea72d669e0
official-atlas-resource-ntrs-20160014658 Bringing Exoplanet Habitability Investigations to High School (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. 56e3bf5c8e363d1f416a2707d4462361cd170027d4fb16c626e772df9dbc66db
official-atlas-resource-ntrs-20210001209 Semi-Autonomous Spacecraft On-Board Ephemeris Propagation (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. d6e0b16592b084b86851f30392d61f52c5d3e73ab144d0bc8509e12bf84f7525
official-atlas-resource-ntrs-20220019245 Gecko Mobility Aids for a Common Habitat Architecture (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. 191eab4b6df69f314c00d76bf3f5adf5e6938841dbd6f6fa87fe2eaf840a135a
official-atlas-resource-ntrs-20230015089 NASA’s Galactic Cosmic Ray Simulator – How we study the effects of space radiation on Earth (opens external site in a new tab) 2026-07-25 The journal record is useful method context, but curation did not reproduce beam spectra, exposures, biological analyses, or extrapolation to missions. It is simulator context, not standalone human-risk evidence. 61d995717967d95e17dd5e86f188977bf85aa1ecd389ea6e39b67a2348543f77
official-atlas-resource-ntrs-20240014771 NASA HRP Space Radiation Element Initiatives (opens external site in a new tab) 2026-07-25 Curation screened the NTRS metadata and abstract rather than independently auditing the underlying health studies or program outcomes. It is program context, not clinical or mission-safety claim evidence. 3183336fb7300604ff6c39b87407786902c2a0de673552afc8eca815ab9bbd4a
official-atlas-resource-reviewed-source-src-c1517-nasa-commercial-crew Commercial Crew Program Overview (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. a536651af8c02acddb4b0c8d7a8c2c438592120ee15790bfb900f30c49f9cdb8
official-atlas-resource-reviewed-source-src-po-nasa-hidh Human Integration Design Handbook (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. 5926047e3bb3a1d8b3864e4e5e58a0e81801f79fa674dbf2507d7950c0cb8600

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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-1d · a7539d186e1275358db1f9611f7dc24e37c433af389ac478bd9814bbe3621954

Page citations and accountability links

  • Exact frozen packet
    Complete packet payload; SHA-256 a7539d186e1275358db1f9611f7dc24e37c433af389ac478bd9814bbe3621954 · 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