Packet identity

Packet ID
resources:bucket-17
Packet SHA-256 identity
ad861460b0f0e850b22029423c8c883f34bf4a5752d716fff6c8d4cd59870ad3
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
19
Reference sources
19

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-01-1

    NASA Systems Engineering Handbook

    Record fingerprint
    8b8acf495226765ffc71f62f49cef4416fece1d6afd3308e7cb29dc0de7b137c
    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-01-1
    Title
    NASA Systems Engineering Handbook
    Topic
    mission-architecture
    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-19880056748

    Beamed energy for space craft propulsion - Conceptual status and development potential

    Record fingerprint
    041c79c6a09314d29eb63a78de3bf60444f0f035e0566345c420524af53ebe78
    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-19880056748
    Title
    Beamed energy for space craft propulsion - Conceptual status and development potential
    Topic
    propulsion
    Year
    1987
    Published At
    1987-01-01T00:00:00.0000000+00:00
    Authors
    1. Sercel, Joel C.
    2. Frisbee, Robert H.
    Publisher
    Legacy CDMS
    Resource Type
    Conference Paper
    Access
    open metadata
    Abstract
    This paper outlines the results of a brief study that sought to identify and characterize beamed energy spacecraft propulsion concepts that may have positive impact on the economics of space industrialization. It is argued that the technology of beamed energy propulsion systems may significantly improve the prospects for near-term colonization of outer space. It is tentatively concluded that, for space industrialization purposes, the most attractive near-term beamed energy propulsion systems are based on microwave technology. This conclusion is reached based on consideration of the common features that exist between beamed microwave propulsion and the Solar Power Satellite (SPS) concept. Laser power beaming also continues to be an attractive option for spacecraft propulsion due to the reduced diffraction-induced beam spread afforded by laser radiation wavelengths. The conceptual status and development potential of a variety of beamed energy propulsion concepts are presented. Several alternative space transportation system concepts based on beamed energy propulsion are described.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for a historical assessment of microwave beamed-propulsion concepts in the context of space industrialization and claimed near-term economic effects.
    Verified At
    2026-07-25
    Curation Topic
    beamed-energy propulsion
    Evidence Boundary
    Only NTRS metadata and an abstract are open here; technical and economic claims were not independently evaluated. It is historical concept context, not evidence for colonization or system readiness.
  3. atlas-resource · ntrs-20040090410

    Radiobiological experiments with plant seeds aboard the biosatellite Kosmos 1887

    Record fingerprint
    d6e29e92482c5498f910e7075973ec2216f22e6a0a6d44e463c2093a5f27dcbd
    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-20040090410
    Title
    Radiobiological experiments with plant seeds aboard the biosatellite Kosmos 1887
    Topic
    reproduction-genetics
    Year
    1990
    Published At
    1990-01-01T00:00:00.0000000+00:00
    Authors
    1. Anikeeva, I. D.
    2. Vaulina, E. N.
    3. Kostina, L. N.
    4. Marenny, A. M.
    5. Portman, A. I.
    6. Rusin, S. V.
    7. Benton, E. V.
    Publisher
    Johnson Space Center
    Resource Type
    Reprint (Version printed in journal)
    Access
    open metadata
    Abstract
    The effects of spaceflight factors on the seeds of Arabidopsis thaliana and Crepis capillaris were studied provided with various protective measures: the seeds were located inside the satellite and in open space, protected with aluminium foil and also exposed without the foil cover. When the seeds were in open space without any protection, their viability was found to be suppressed; the survival rate and fertility of plants grown from these seeds were also diminished. An increase in the frequency of chromosome aberrations (CA) and in the number of multiple injuries was registered in this case. Experiments with the aluminium foil shielding showed a decrease in the suppression of the seeds' viability, but mutational changes were found to be even more increased, while the survival and fertility of the plants decreased. An increase in the thickness of shielding resulted in a decrease in the effects up to the level of the control, except for the effects connected with CA and fertility of the plants. Analysis of the results shows that these impairments can be ascribed to the action of single heavy charged particles (HCP). The seeds can be thus regarded as an integral biological 'dosimeter' which allows estimation of the total effects of radiation, ecological and biological factors.
    Keywords
    1. Cosmos 1887 Project
    2. NASA Discipline Number 00-00
    3. NASA Discipline Number 04-10
    4. unmanned
    5. NASA Discipline Radiation Health
    6. NASA Program Radiation Health
    7. NASA Program Flight
    8. Non-NASA Center
    9. short duration
    10. Flight Experiment
    11. Cosmic Radiation/adverse effects
    12. Space Flight
    13. Seeds/genetics/radiation effects
    14. Support, U.S. Gov't, Non-P.H.S
    15. Chromosome Aberrations
    16. USSR
    17. Angiosperms/genetics/radiation effects
    18. Extraterrestrial Environment
    19. Cell Survival/radiation effects
    20. Arabidopsis/genetics/radiation effects
    21. Radiation Protection
    22. Support, U.S. Gov't, P.H.S
    23. Spacecraft
    24. Comparative Study
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated as historical evidence context for plant-seed exposure and radiobiological investigation aboard Cosmos 1887, relevant to crop germplasm resilience methods.
    Verified At
    2026-07-25
    Curation Topic
    seed radiobiology
    Evidence Boundary
    The old experiment record was screened through metadata and abstract; dosimetry, controls, statistics, and modern applicability were not validated. It is historical experimental context, not crop-safety claim evidence.
  4. atlas-resource · ntrs-20060021490

    The Ethics of Human Spaceflight

    Record fingerprint
    f47032e92a62429524803c45863157a91ce45c7b185956ac84ee3df6fad9f531
    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-20060021490
    Title
    The Ethics of Human Spaceflight
    Topic
    governance-law
    Year
    2005
    Published At
    2005-01-01T00:00:00.0000000+00:00
    Authors
    1. Zoloth, Laurie
    Publisher
    Headquarters
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    This chapter intends to lay out some essential ethics questions that might frame the next step of space exploration. In this, I undertake two sorts of tasks. The first is to respond to the core ethic question: Is it ethical to travel in space? The second, assuming for the moment that I can convince you that the first premise can be justified, is to comment on what ethical challenges will face us there. It is appropriate to have a philosopher comment on this at the fortieth anniversary celebration, since it was also in 1962 that the National Academy of Science first convened a panel of philosophers to comment on space travel. They asked at that time whether it was indeed a worthwhile pursuit to travel in space and what might be expected of such an effort. What is at stake in any such boundary crossing is how the changing of essential human perimeters changes our own moral status. Will such boundary crossing worsen our human condition, or will it enhance it? In this way, the geopolitical quest is then linked to the quest for ontology, Pisarro hunting for the fountain of youth, for gold, and for territory. What follows are a series of ethical claims that link the problem of discovery in the larger world and the attendant ethical dilemmas of our explorations, as well as how this exploration alters our concepts of life on Earth. In this, the role of the ethicist is to function as both a skeptic and a stranger, aware of the optimism of science and the pessimism of philosophy.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2005 conference paper from Headquarters specifically covers “The Ethics of Human Spaceflight”; its abstract describes This chapter intends to lay out some essential ethics questions that might frame the next step of space exploration. In this, I undertake two sorts of tasks. The first is… This materially informs GShips governance and law.
    Verified At
    2026-07-25
    Curation Topic
    governance and law
    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.
  5. atlas-resource · ntrs-20060024887

    Artificial Gravity Research Project

    Record fingerprint
    2c1434de9bd3190721af82cd3396e9e420ffaa8db7c7df4576a567525cd53e6e
    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-20060024887
    Title
    Artificial Gravity Research Project
    Topic
    structures-shielding
    Year
    2005
    Published At
    2005-01-01T00:00:00.0000000+00:00
    Authors
    1. Kamman, Michelle R.
    2. Paloski, William H.
    Publisher
    Johnson Space Center
    Resource Type
    Abstract
    Access
    open metadata
    Abstract
    Protecting the health, safety, and performance of exploration-class mission crews against the physiological deconditioning resulting from long-term weightlessness during transit and long-term hypogravity during surface operations will require effective, multi-system countermeasures. Artificial gravity (AG), which would replace terrestrial gravity with inertial forces generated by rotating the transit vehicle or by a human centrifuge device within the transit vehicle or surface habitat, has long been considered a potential solution. However, despite its attractiveness as an efficient, multi-system countermeasure and its potential for improving the environment and simplifying operational activities (e.g., WCS, galley, etc.), much still needs to be learned regarding the human response to rotating environments before AG can be successfully implemented. This paper will describe our approach for developing and implementing a rigorous AG Research Project to address the key biomedical research questions that must be answered before developing effective AG countermeasure implementation strategies for exploration-class missions. The AG Research Project will be performed at JSC, ARC, extramural academic and government research venues, and international partner facilities maintained by DLR and IMBP. The Project includes three major ground-based human research subprojects that will lead to flight testing of intermittent short-radius AG in ISS crewmembers after 201 0, continuous long-radius AG in CEV crews transiting to and from the Moon, and intermittent short-radius AG plus exercise in lunar habitats. These human ground-based subprojects include: 1) a directed, managed international short-radius project to investigate the multi-system effectiveness of intermittent AG in human subjects deconditioned by bed rest, 2) a directed, managed long-radius project to investigate the capacity of humans to live and work for extended periods in rotating environments, and 3) a focused, investigator-initiated project to investigate system-specific adaptation to and from rotating environments. The AG Research Project also includes two major animal research subprojects: 1) a directed, managed ground-based subproject using rodents and, possibly, sub-human primates, to address mechanistic issues that cannot be studied in humans, to rapidly develop higher sample numbers than can be achieved in the human subprojects, and to establish feasible parameter operating bands to reduce the breadth of the human subprojects, and 2) a flight subproject using rodents to estimate the physiological effects of long term exposure to hypogravity and to investigate the effects of contamination by terrestrial gravity in estimating AG effectiveness. The animal flight subproject would be performed aboard ISS using the CAM module in approximately the 2008-201 1 timeframe. The paper will first present an overview of the key biomedical research questions to be answered. It will then describe the overall approaches to be utilized in developing and implementing the AG Research Project, including definition of the intended scientific research, management and development approaches, identification of roles and responsibilities, risk management, and definition of project deliverables. The primary focus of the paper will be on the first of the three ground-based human research subprojects, since it is the only one currently in development and is scheduled to start active subject investigations in April of 2005.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated for an artificial-gravity research project that frames centrifuge scale, rotation rate, exposure schedules, human factors, and experimental needs.
    Verified At
    2026-07-25
    Curation Topic
    artificial gravity research
    Evidence Boundary
    The record offers research-planning context, but this pass did not validate physiological benefit, vestibular tolerance, engineering implementation, or long-duration outcomes. It is not artificial-gravity health claim evidence.
  6. atlas-resource · ntrs-20060032521

    Using Autonomous Navigation for Interplanetary Missions: The Validation of Deep Space 1 AutoNav

    Record fingerprint
    6aca855e467ce47e955dda7df9e0c3a5131fedb8221a1ca4974c64858f7df107
    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-20060032521
    Title
    Using Autonomous Navigation for Interplanetary Missions: The Validation of Deep Space 1 AutoNav
    Topic
    communications-navigation
    Year
    2000
    Published At
    2000-05-02T00:00:00.0000000+00:00
    Authors
    1. Riedel, J.
    2. Bhaskaran, S.
    3. Desai, S.
    4. Han, D.
    5. Kennedy, B.
    6. McElrath, T.
    7. Null, G.
    8. Ryne, M.
    Publisher
    Jet Propulsion Laboratory
    Resource Type
    Conference Paper
    Access
    open metadata
    Abstract
    The first mission of NASA's New Millenium Program, Deep Space 1, has, as one of its principal demonstration technologies, the first autonomous optical navigation system to be used in deep space.
    Keywords
    1. autonomous navigation interplanetary missions Deep Space 1
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Using Autonomous Navigation for Interplanetary Missions: The Validation of Deep Space 1 AutoNav” covers autonomous navigation interplanetary missions Deep Space 1; 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.
  7. atlas-resource · ntrs-20100042149

    CCSDS - Advancing Spaceflight Technology for International Collaboration

    Record fingerprint
    518bb835a1387d310e8c36944e6b74acb39fcab8003c8374c822482d32895887
    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-20100042149
    Title
    CCSDS - Advancing Spaceflight Technology for International Collaboration
    Topic
    institutions-workforce
    Year
    2010
    Published At
    2010-09-27T00:00:00.0000000+00:00
    Authors
    1. Kearney, Mike
    2. Kiely, Aaron
    3. Yeh, Penshu
    4. Gerner, Jean-Luc
    5. Calzolari, Gian-Paolo
    6. Gifford, Kevin
    7. Merri, Mario
    8. Weiss, Howard
    Publisher
    Marshall Space Flight Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    The Consultative Committee for Space Data Systems (CCSDS) has been developing data and communications standards since 1982, with the objective of providing interoperability for enabling international collaboration for spaceflight missions. As data and communications technology has advanced, CCSDS has progressed to capitalize on existing products when available and suitable for spaceflight, and to develop innovative new approaches when available products fail. The current scope of the CCSDS architecture spans the end-to-end data architecture of a spaceflight mission, with ongoing efforts to develop and standardize cutting-edge technology. This manuscript describes the overall architecture, the position of CCSDS in the standards and international mission community, and some CCSDS processes. It then highlights in detail several of the most interesting and critical technical areas in work right now, and how they support collaborative missions. Special topics include: Delay/Disruption Tolerant Networking (DTN), Asynchronous Message Service (AMS), Multispectral/Hyperspectral Data Compression (MHDC), Coding and Synchronization, Onboard Wireless, Spacecraft Monitor and Control, Navigation, Security, and Time Synchronization/Correlation. Broad international participation in development of CCSDS standards is encouraged.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2010 presentation from Marshall Space Flight Center specifically covers “CCSDS - Advancing Spaceflight Technology for International Collaboration”; its abstract describes The Consultative Committee for Space Data Systems (CCSDS) has been developing data and communications standards since 1982, with the objective of providing interoperability… 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.
  8. atlas-resource · ntrs-20140017496

    Investigation of Bio-Regenerative Life Support and Trash-To-Gas Experiment on a 4 Month Mars Simulation Mission

    Record fingerprint
    9e452a91eb9f49da045bc9bd136c1507ca53a0e00b2bbb40a7cf61593e52a2b1
    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-20140017496
    Title
    Investigation of Bio-Regenerative Life Support and Trash-To-Gas Experiment on a 4 Month Mars Simulation Mission
    Topic
    life-support
    Year
    2014
    Published At
    2014-09-29T00:00:00.0000000+00:00
    Authors
    1. Caraccio, Anne
    2. Poulet, Lucie
    3. Hintze, Paul E.
    4. Miles, John D.
    Publisher
    Kennedy Space Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    Future crewed missions to other planets or deep space locations will require regenerative Life Support Systems (LSS) as well as recycling processes for mission waste. Constant resupply of many commodity materials will not be a sustainable option for deep space missions, nor will storing trash on board a vehicle or at a lunar or Martian outpost. The habitable volume will decline as the volume of waste increases. A complete regenerative environmentally controlled life support system (ECLSS) on an extra-terrestrial outpost will likely include physico-chemical and biological technologies, such as bioreactors and greenhouse modules. Physico-chemical LSS do not enable food production and bio-regenerative LSS are not stable enough to be used alone in space. Mission waste that cannot be recycled into the bio-regenerative ECLSS can include excess food, food packaging, clothing, tape, urine and fecal waste. This waste will be sent to a system for converting the trash into the high value products. Two crew members on a 120 day Mars analog simulation, in collaboration with Kennedy Space Centers (KSC) Trash to Gas (TtG) project investigated a semi-closed loop system that treated non-edible biomass and other logistical waste for volume reduction and conversion into useful commodities. The purposes of this study are to show the how plant growth affects the amount of resources required by the habitat and how spent plant material can be recycled. Real-time data was sent to the reactor at KSC in Florida for replicating the analog mission waste for laboratory operation. This paper discusses the 120 day mission plant growth activity, logistical and plant waste management, power and water consumption effects of the plant and logistical waste, and potential energy conversion techniques using KSCs TtG reactor technology.
    Keywords
    1. trash to gas
    2. Bio-regenerative life support
    3. waste management
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2014 conference paper from Kennedy Space Center specifically covers “Investigation of Bio-Regenerative Life Support and Trash-To-Gas Experiment on a 4 Month Mars Simulation Mission”; its abstract describes Future crewed missions to other planets or deep space locations will require regenerative Life Support Systems (LSS) as well as recycling processes for mission waste.… This materially informs GShips regenerative life support.
    Verified At
    2026-07-25
    Curation Topic
    regenerative life support
    Evidence Boundary
    NTRS lists open full text, but this pass assessed catalog metadata and abstract rather than independently validating the document. Inclusion is contextual discovery support, not automatic evidence for a GShips claim.
  9. atlas-resource · ntrs-20160006090

    International Collaboration for Galactic Cosmic Ray Simulation at the NASA Space Radiation Laboratory

    Record fingerprint
    1c72a8f9ad51d69d193cdc04d83655295da5e85ed2661964dc612a84a44a1d1a
    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-20160006090
    Title
    International Collaboration for Galactic Cosmic Ray Simulation at the NASA Space Radiation Laboratory
    Topic
    institutions-workforce
    Year
    2015
    Published At
    2015-05-25T00:00:00.0000000+00:00
    Authors
    1. Norbury, John W.
    2. Slaba, Tony C.
    3. Rusek, Adam
    4. Durante, Marco
    5. Reitz, Guenther
    Publisher
    Langley Research Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    An international collaboration on Galactic Cosmic Ray (GCR) simulation is being formed to make recommendations on how to best simulate the GCR spectrum at ground based accelerators. The external GCR spectrum is significantly modified when it passes through spacecraft shielding and astronauts. One approach for simulating the GCR space radiation environment at ground based accelerators would use the modified spectrum, rather than the external spectrum, in the accelerator beams impinging on biological targets. Two recent workshops have studied such GCR simulation. The first workshop was held at NASA Langley Research Center in October 2014. The second workshop was held at the NASA Space Radiation Investigators' workshop in Galveston, Texas in January 2015. The anticipated outcome of these and other studies may be a report or journal article, written by an international collaboration, making accelerator beam recommendations for GCR simulation. This poster describes the status of GCR simulation at the NASA Space Radiation Laboratory and encourages others to join the collaboration.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because this 2015 conference paper from Langley Research Center specifically covers “International Collaboration for Galactic Cosmic Ray Simulation at the NASA Space Radiation Laboratory”; its abstract describes An international collaboration on Galactic Cosmic Ray (GCR) simulation is being formed to make recommendations on how to best simulate the GCR spectrum at ground based… 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.
  10. atlas-resource · ntrs-20170002600

    Dust Storm Impacts on Human Mars Mission Equipment and Operations

    Record fingerprint
    6bd115f96c40fff8da1a1c33464d3e80db447e1e85ed04f6017615b794fad3ce
    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-20170002600
    Title
    Dust Storm Impacts on Human Mars Mission Equipment and Operations
    Topic
    analogs-verification
    Year
    2017
    Published At
    2017-06-13T00:00:00.0000000+00:00
    Authors
    1. Rucker, M. A.
    Publisher
    Johnson Space Center
    Resource Type
    Conference Paper
    Access
    open full text
    Abstract
    Although it is tempting to use dust impacts on Apollo lunar exploration mission equipment and operations as an analog for human Mars exploration, there are a number of important differences to consider. Apollo missions were about a week long; a human Mars mission will start at least two years before crew depart from Earth, when cargo is pre-deployed, and crewed mission duration may be over 800 days. Each Apollo mission landed at a different site; although no decisions have been made, NASA is investigating multiple human missions to a single Mars landing site, building up capability over time and lowering costs by re-using surface infrastructure. Apollo missions used two, single-use spacecraft; a human Mars mission may require as many as six craft for different phases of the mission, most of which would be re-used by subsequent crews. Apollo crews never ventured more than a few kilometers from their lander; Mars crews may take "camping trips" a hundred kilo-meters or more from their landing site, utilizing pressurized rovers to explore far from their base. Apollo mission designers weren't constrained by human for-ward contamination of the Moon; if we plan to search for evidence of life on Mars we'll have to be more careful. These differences all impact how we will mitigate and manage dust on our human Mars mission equipment and operations.
    Keywords
    None recorded
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because it analyzes Martian dust effects on equipment and operations, relevant to particulate intrusion, maintenance, sensing, and protective design.
    Verified At
    2026-07-25
    Curation Topic
    particulate-and-dust-risk
    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.
  11. atlas-resource · ntrs-20190028812

    Application of Delay Tolerant Networking on the International Space Station

    Record fingerprint
    1d3fc5fb388d50ecd66c94193fd4de97203732d65c0eead4773172b1c4ad8dc5
    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-20190028812
    Title
    Application of Delay Tolerant Networking on the International Space Station
    Topic
    communications-navigation
    Year
    2019
    Published At
    2019-07-01T00:00:00.0000000+00:00
    Authors
    1. Basciano, Tom
    2. Pohlchuck, Bill
    3. Shamburger, Noah M.
    Publisher
    Johnson Space Center
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    Networking between ISS payloads and the ground presents challenges given the delays in communication and frequent satellite handovers that occur in orbit. Delay Tolerant Networking (DTN) provides a method to store and forward information when the link is available without intervention by the user. While DTN is helpful for the ISS in Low Earth Orbit (LEO), it will become much more important for deep space missions where round trip delays make use of most standard network protocols impossible. The lessons learned from ISS and other programs will help improve standards and ultimately support future NASA deep space missions.
    
    
    
    
    
    Keywords
    1. Delay Tolerant Networking
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “Application of Delay Tolerant Networking on the International Space Station” covers Delay Tolerant Networking; it materially informs GShips work on delay tolerant networking.
    Verified At
    2026-07-25
    Curation Topic
    delay-tolerant-networking
    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-20210017198

    Greenhouse Gas Emissions from Food Systems: Building the Evidence Base

    Record fingerprint
    a95d36604eed77336ddab4e2cff331cba470c4b8bf8dcebd23a9e0468febb247
    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-20210017198
    Title
    Greenhouse Gas Emissions from Food Systems: Building the Evidence Base
    Topic
    ecology-food
    Year
    2021
    Published At
    2021-06-08T04:00:00.0000000+00:00
    Authors
    1. Francesco N. Tubiello
    2. Cynthia Rosenzweig
    3. Giulia Conchedda
    4. Kevin Karl
    5. Johannes Gütschow
    6. Pan Xueyao
    7. Griffiths Obli-Laryea
    8. Nathan Wanner
    Publisher
    IOP Science
    Resource Type
    Reprint (Version printed in journal)
    Access
    open full text
    Abstract
    New estimates of greenhouse gas (GHG) emissions from the food system were developed at the country level, for the period 1990–2018, integrating data from crop and livestock production, on-farm energy use, land use and land use change, domestic food transport and food waste disposal. With these new country-level components in place, and by adding global and regional estimates of energy use in food supply chains, we estimate that total GHG emissions from the food system were about 16 CO2eq yr−1 in 2018, or one-third of the global anthropogenic total. Three quarters of these emissions, 13 Gt CO2eq yr−1, were generated either within the farm gate or in pre- and post-production activities, such as manufacturing, transport, processing, and waste disposal. The remainder was generated through land use change at the conversion boundaries of natural ecosystems to agricultural land. Results further indicate that pre- and post-production emissions were proportionally more important in developed than in developing countries, and that during 1990–2018, land use change emissions decreased while pre- and post-production emissions increased. We also report results on a per capita basis, showing world total food systems per capita emissions decreasing during 1990–2018 from 2.9 to 2.2 t CO2eq cap−1, with per capita emissions in developed countries about twice those in developing countries in 2018. Our findings also highlight that conventional IPCC categories, used by countries to report emissions in the National GHG inventory, systematically underestimate the contribution of the food system to total anthropogenic emissions. We provide a comparative mapping of food system categories and activities in order to better quantify food-related emissions in national reporting and identify mitigation opportunities across the entire food system.
    Keywords
    1. greenhouse gas emissions
    2. food systems
    3. crop and livestock production
    4. on-farm energy use
    5. land use and land use change
    6. domestic food transport
    7. food waste disposal
    8. agriculture
    9. mitigation
    10. FAOSTAT
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because it develops country-level lifecycle accounting for food-system greenhouse-gas emissions, an Earthside method relevant to evaluating closed-loop food tradeoffs; it is related to, but analytically distinct from, ntrs-20220005764.
    Verified At
    2026-07-25
    Curation Topic
    food-system-lifecycle-accounting
    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.
  13. atlas-resource · ntrs-20230009654

    The Search for Life and Habitable Worlds at NASA – Past, Present, and Future

    Record fingerprint
    66044d9ce11ea44d763469df0c6c09b7ee42491a97425fba7af048394b09f45c
    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-20230009654
    Title
    The Search for Life and Habitable Worlds at NASA – Past, Present, and Future
    Topic
    destinations-astrobiology
    Year
    2024
    Published At
    2024-12-09T05:00:00.0000000+00:00
    Authors
    1. Becky McCauley Rench
    Publisher
    Headquarters
    Resource Type
    Presentation
    Access
    open full text
    Abstract
    Keywords
    1. meterorite
    2. alien
    3. astrobiology
    4. habitable
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Curated because “The Search for Life and Habitable Worlds at NASA – Past, Present, and Future” covers meterorite, alien, astrobiology, habitable; it materially informs GShips work on astrobiology program overview.
    Verified At
    2026-07-25
    Curation Topic
    astrobiology-program-overview
    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.
  14. atlas-resource · reviewed-source-src-c814-nih-genomic-sharing

    Genomic Data Sharing Policy Overview

    Record fingerprint
    6f23a934ef36b45d30bf6b3801ac3e95df25393b9803e688945a8bdd89d194a5
    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-c814-nih-genomic-sharing
    Title
    Genomic Data Sharing Policy Overview
    Topic
    reviewed-claim-source
    Year
    2014
    Authors
    1. National Institutes of Health
    Publisher
    National Institutes of Health
    Resource Type
    Official genomic data governance policy (exact value: official-genomic-data-governance-policy)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Responsible sharing of human genomic data, institutional certification, informed consent, privacy, controlled access, data-use limits, and protection of individual, family, and group interests.
    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.
  15. atlas-resource · reviewed-source-src-ca-epa-sustainable-materials

    Sustainable Materials Management Basics

    Record fingerprint
    5dd1abe6ca97d736a5f0d08fd4b28a577a7e89728ec12b6564ecd3ab3fb368fd
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    reviewed-source-src-ca-epa-sustainable-materials
    Title
    Sustainable Materials Management Basics
    Topic
    reviewed-claim-source
    Year
    2026
    Authors
    1. U.S. Environmental Protection Agency
    Publisher
    U.S. Environmental Protection Agency
    Resource Type
    Government materials lifecycle guidance (exact value: government-materials-lifecycle-guidance)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Lifecycle framing for material extraction, manufacture, use, reuse, maintenance, and waste management across food, buildings, products, and circular-economy contexts.
    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.
  16. atlas-resource · reviewed-source-src-ce-nasa-iss-water-2023

    Status of ISS Water Management and Recovery

    Record fingerprint
    39554462cecebf772c5e1575ff4ca6d127a67d1f4303a580f35d47f9820ec5d0
    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-ce-nasa-iss-water-2023
    Title
    Status of ISS Water Management and Recovery
    Topic
    reviewed-claim-source
    Year
    2023
    Authors
    1. Jill Williamson
    2. Jonathan P. Wilson
    3. Kristina Robinson
    4. Hieu Luong
    Publisher
    NASA Technical Reports Server
    Resource Type
    Nasa conference paper operational record (exact value: nasa-conference-paper-operational-record)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Public conference paper reporting Water Recovery System configuration and operations. Its early estimate of 97–98 percent recovery is explicitly scoped to water recovered from urine after adding the Brine Processor Assembly; it is not total habitat-water, food, nutrient, waste, or matter closure.
    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.
  17. atlas-resource · reviewed-source-src-cr-nasa-space-security-bpg-revb

    Space Security: Best Practices Guide

    Record fingerprint
    d486c9fec21a11fe80cab53c1d215f53b0f7a31b5088d5059912d184fb94077c
    Minimum approvals
    1
    Required scope groups
    bounded-competence: information-science
    High-consequence domains
    None under the named two-person rule
    Review state
    pending
    Published human decisions
    0
    Inspect the complete frozen review surface
    ID
    reviewed-source-src-cr-nasa-space-security-bpg-revb
    Title
    Space Security: Best Practices Guide
    Topic
    reviewed-claim-source
    Year
    2024
    Authors
    1. National Aeronautics and Space Administration
    Publisher
    NASA
    Resource Type
    Nasa space security guidance (exact value: nasa-space-security-guidance)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Public NASA guidance translating selected NIST SP 800-53 controls into space-vehicle and ground-segment mission language. It is a risk-based starting point and expressly does not replace required plans or establish a certified architecture, flight qualification, or long-duration assurance.
    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.
  18. atlas-resource · reviewed-source-src-hc-matsumura-iss-male-mice-2019

    Male Mice, Caged in the International Space Station for 35 Days, Sire Healthy Offspring

    Record fingerprint
    2d465127da184d7f3f9406486269a1038b560444b2affa77ecce419c72d5b9cd
    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-hc-matsumura-iss-male-mice-2019
    Title
    Male Mice, Caged in the International Space Station for 35 Days, Sire Healthy Offspring
    Topic
    reviewed-claim-source
    Year
    2019
    Authors
    1. Takafumi Matsumura
    2. Masaki Noda
    3. Yusuke Muratani
    4. Satoru Iwase
    5. Satoshi Shiba
    6. Teruhiko Wakayama
    Publisher
    Scientific Reports
    Resource Type
    Peer reviewed primary spaceflight experiment (exact value: peer-reviewed-primary-spaceflight-experiment)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    A small 35-day ISS study compared adult male mice in microgravity and centrifuge-generated artificial 1 g with ground controls. Tissues and sperm were assessed after return, and fertilization, embryo transfer, gestation, and birth occurred on Earth; it does not validate female reproduction, development in flight, partial gravity, lifetime exposure, or human safety.
    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.
  19. atlas-resource · reviewed-source-src-po-nasa-eclss

    Environmental Control and Life Support Systems

    Record fingerprint
    7e94e2b061caab068002ac0cf4d34576ef3a7c31e4394cc78d4e130c3e5783e1
    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-eclss
    Title
    Environmental Control and Life Support Systems
    Topic
    reviewed-claim-source
    Year
    2026
    Authors
    1. National Aeronautics and Space Administration
    Publisher
    NASA
    Resource Type
    Operational system record (exact value: operational-system-record)
    Access
    official or primary link
    Source Class
    Editor selected context (exact value: editor-selected-context)
    Selection Note
    Current International Space Station air, water, oxygen, waste, and environmental-control functions and their operational boundaries.
    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-01-1 NASA Systems Engineering Handbook 8b8acf495226765ffc71f62f49cef4416fece1d6afd3308e7cb29dc0de7b137c 1 bounded-competence: information-science
atlas-resource:ntrs-19880056748 Beamed energy for space craft propulsion - Conceptual status and development potential 041c79c6a09314d29eb63a78de3bf60444f0f035e0566345c420524af53ebe78 1 bounded-competence: information-science
atlas-resource:ntrs-20040090410 Radiobiological experiments with plant seeds aboard the biosatellite Kosmos 1887 d6e29e92482c5498f910e7075973ec2216f22e6a0a6d44e463c2093a5f27dcbd 1 bounded-competence: information-science
atlas-resource:ntrs-20060021490 The Ethics of Human Spaceflight f47032e92a62429524803c45863157a91ce45c7b185956ac84ee3df6fad9f531 1 bounded-competence: information-science
atlas-resource:ntrs-20060024887 Artificial Gravity Research Project 2c1434de9bd3190721af82cd3396e9e420ffaa8db7c7df4576a567525cd53e6e 1 bounded-competence: information-science
atlas-resource:ntrs-20060032521 Using Autonomous Navigation for Interplanetary Missions: The Validation of Deep Space 1 AutoNav 6aca855e467ce47e955dda7df9e0c3a5131fedb8221a1ca4974c64858f7df107 1 bounded-competence: information-science
atlas-resource:ntrs-20100042149 CCSDS - Advancing Spaceflight Technology for International Collaboration 518bb835a1387d310e8c36944e6b74acb39fcab8003c8374c822482d32895887 1 bounded-competence: information-science
atlas-resource:ntrs-20140017496 Investigation of Bio-Regenerative Life Support and Trash-To-Gas Experiment on a 4 Month Mars Simulation Mission 9e452a91eb9f49da045bc9bd136c1507ca53a0e00b2bbb40a7cf61593e52a2b1 1 bounded-competence: information-science
atlas-resource:ntrs-20160006090 International Collaboration for Galactic Cosmic Ray Simulation at the NASA Space Radiation Laboratory 1c72a8f9ad51d69d193cdc04d83655295da5e85ed2661964dc612a84a44a1d1a 1 bounded-competence: information-science
atlas-resource:ntrs-20170002600 Dust Storm Impacts on Human Mars Mission Equipment and Operations 6bd115f96c40fff8da1a1c33464d3e80db447e1e85ed04f6017615b794fad3ce 1 bounded-competence: information-science
atlas-resource:ntrs-20190028812 Application of Delay Tolerant Networking on the International Space Station 1d3fc5fb388d50ecd66c94193fd4de97203732d65c0eead4773172b1c4ad8dc5 1 bounded-competence: information-science
atlas-resource:ntrs-20210017198 Greenhouse Gas Emissions from Food Systems: Building the Evidence Base a95d36604eed77336ddab4e2cff331cba470c4b8bf8dcebd23a9e0468febb247 1 bounded-competence: information-science
atlas-resource:ntrs-20230009654 The Search for Life and Habitable Worlds at NASA – Past, Present, and Future 66044d9ce11ea44d763469df0c6c09b7ee42491a97425fba7af048394b09f45c 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-c814-nih-genomic-sharing Genomic Data Sharing Policy Overview 6f23a934ef36b45d30bf6b3801ac3e95df25393b9803e688945a8bdd89d194a5 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-ca-epa-sustainable-materials Sustainable Materials Management Basics 5dd1abe6ca97d736a5f0d08fd4b28a577a7e89728ec12b6564ecd3ab3fb368fd 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-ce-nasa-iss-water-2023 Status of ISS Water Management and Recovery 39554462cecebf772c5e1575ff4ca6d127a67d1f4303a580f35d47f9820ec5d0 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-cr-nasa-space-security-bpg-revb Space Security: Best Practices Guide d486c9fec21a11fe80cab53c1d215f53b0f7a31b5088d5059912d184fb94077c 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-hc-matsumura-iss-male-mice-2019 Male Mice, Caged in the International Space Station for 35 Days, Sire Healthy Offspring 2d465127da184d7f3f9406486269a1038b560444b2affa77ecce419c72d5b9cd 1 bounded-competence: information-science
atlas-resource:reviewed-source-src-po-nasa-eclss Environmental Control and Life Support Systems 7e94e2b061caab068002ac0cf4d34576ef3a7c31e4394cc78d4e130c3e5783e1 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-01-1 NASA Systems Engineering Handbook (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. 393e374bf3665f58399df2545c6a0c5d66f5ec4ecdb62e0f5e17a3009eae25ff
official-atlas-resource-ntrs-19880056748 Beamed energy for space craft propulsion - Conceptual status and development potential (opens external site in a new tab) 2026-07-25 Only NTRS metadata and an abstract are open here; technical and economic claims were not independently evaluated. It is historical concept context, not evidence for colonization or system readiness. 9876987daeb6977bd12bdf4d547d43f2821fa38a2d2d7d643bccd0e01331e0b7
official-atlas-resource-ntrs-20040090410 Radiobiological experiments with plant seeds aboard the biosatellite Kosmos 1887 (opens external site in a new tab) 2026-07-25 The old experiment record was screened through metadata and abstract; dosimetry, controls, statistics, and modern applicability were not validated. It is historical experimental context, not crop-safety claim evidence. d83060a2dfdcda5632eaa12323b35eb91cabeec6c0b1bb386bd4f37d5c70afad
official-atlas-resource-ntrs-20060021490 The Ethics of Human Spaceflight (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. cd48da4ed89e6f06b9311276c7cebf77f2ece5ae89f8aa9e6d839309a9e960c6
official-atlas-resource-ntrs-20060024887 Artificial Gravity Research Project (opens external site in a new tab) 2026-07-25 The record offers research-planning context, but this pass did not validate physiological benefit, vestibular tolerance, engineering implementation, or long-duration outcomes. It is not artificial-gravity health claim evidence. 34b239d77865b231bae02f0bbeee8691f841e412a115382386cb962cdfd70780
official-atlas-resource-ntrs-20060032521 Using Autonomous Navigation for Interplanetary Missions: The Validation of Deep Space 1 AutoNav (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. 9e8c10adec8f956b554e92dd8bd294caec41200685da03e649b5338255bb9e50
official-atlas-resource-ntrs-20100042149 CCSDS - Advancing Spaceflight Technology for International Collaboration (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. dc92a8e6c74b4d329fe28253ba45160b8386217621641589cbb7e1464f2de0d6
official-atlas-resource-ntrs-20140017496 Investigation of Bio-Regenerative Life Support and Trash-To-Gas Experiment on a 4 Month Mars Simulation Mission (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. a88f969e0bc366efd62de81ecadb7ecf8fa70ed0ffa5acc0419cdeb3f697573a
official-atlas-resource-ntrs-20160006090 International Collaboration for Galactic Cosmic Ray Simulation at the NASA Space Radiation Laboratory (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. a5a3c968079367a6838cf6d6399f32b866ab67b55f356e424cd8b1969cb64547
official-atlas-resource-ntrs-20170002600 Dust Storm Impacts on Human Mars Mission Equipment and Operations (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. f386ecc2e8f2e8011ff9ac2760d2c057a7c0211188f621ad934e513e9f4d6467
official-atlas-resource-ntrs-20190028812 Application of Delay Tolerant Networking on the International Space Station (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. 8edac7fe7c2d2e46b214e22cc6f41a43fc4ae0b5381f5c0ee6c98336cdedf3b8
official-atlas-resource-ntrs-20210017198 Greenhouse Gas Emissions from Food Systems: Building the Evidence Base (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. b94088f0e0b82113002c541629f6d403d5211b80882a6a559a70183512558978
official-atlas-resource-ntrs-20230009654 The Search for Life and Habitable Worlds at NASA – Past, Present, and Future (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. 3aa21875f6a76f9e50f2b653a914cc2e31dc37e8bfdcb0689848fd5f50bb4cae
official-atlas-resource-reviewed-source-src-c814-nih-genomic-sharing Genomic Data Sharing Policy 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. 1123bece2b3ec6d545585fba81d8bb3229a71c54472118a2b88820c4817c6a5b
official-atlas-resource-reviewed-source-src-ca-epa-sustainable-materials Sustainable Materials Management Basics (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. ab839ba0bea7792f51e69a2771e21231fa4fe2f9c2ac204683a1359f37352b93
official-atlas-resource-reviewed-source-src-ce-nasa-iss-water-2023 Status of ISS Water Management and Recovery (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. 7983b10446cf2feed194b23d16cfee0f48b4e713601ebfd2680be1239359a745
official-atlas-resource-reviewed-source-src-cr-nasa-space-security-bpg-revb Space Security: Best Practices Guide (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. df18053cfead26b27fe1cf58c1a242eb3b3a7dad8da898cfab11fa01cff6ac3b
official-atlas-resource-reviewed-source-src-hc-matsumura-iss-male-mice-2019 Male Mice, Caged in the International Space Station for 35 Days, Sire Healthy Offspring (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. b8940545b962f11144b00bb3b075fdb342f7a0ae9a6cf02955e3f0a345da85ad
official-atlas-resource-reviewed-source-src-po-nasa-eclss Environmental Control and Life 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. ed8202e287a6fb2024a3415a5149197c2239a5a6b9cd8e1d506c19b194e521b9

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

79.2 KB · packet identity ad861460b0f0e850…

Download packet

Blank decision worksheet · JSON

14.2 KB · template identity 1ddef21e446ca6f3…

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-17 · ad861460b0f0e850b22029423c8c883f34bf4a5752d716fff6c8d4cd59870ad3

Page citations and accountability links

  • Exact frozen packet
    Complete packet payload; SHA-256 ad861460b0f0e850b22029423c8c883f34bf4a5752d716fff6c8d4cd59870ad3 · 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