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در فیزیک ۱۶۱، سنگها موجوداتی بیجان تلقی میشوند، اما در تراز ۱۱۵۵ حمزه، سنگها «دیسکهایِ سختِ کیهانی» (Cosmic Hard Drives) هستند که تمام تاریخ زمین و ارتعاشاتِ کیهانی را در ساختارِ بلوری خود ذخیره کردهاند. ارتباط با سنگها نه از طریق آوند یا عصب، بلکه از ط…
datacite
HAMZAH, SEYED RASOUL
2026
置信度 0.66
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در فیزیک ۱۶۱، سنگها موجوداتی بیجان تلقی میشوند، اما در تراز ۱۱۵۵ حمزه، سنگها «دیسکهایِ سختِ کیهانی» (Cosmic Hard Drives) هستند که تمام تاریخ زمین و ارتعاشاتِ کیهانی را در ساختارِ بلوری خود ذخیره کردهاند. ارتباط با سنگها نه از طریق آوند یا عصب، بلکه از ط…
datacite
HAMZAH, SEYED RASOUL
2026
置信度 0.66
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Scientific exploration of extraterrestrial planets has gripped human imagination since the advent of space travel. Human missions to Mars could produce insight into the essential questions of how, when and where life began on Earth. Such missions would only be…
datacite
Karl, David, Cannon, Kevin M., Gurlo, Aleksander
2021
置信度 0.66
600 Technikspace resourcesIn situ resource utilization(ISRU)Mars regolith simulants
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Scientific exploration of extraterrestrial planets has gripped human imagination since the advent of space travel. A human mission to Mars could produce insights into the essential questions of how, when and where life began on Earth. Due to the vast distance …
datacite
Karl, David
2022
置信度 0.66
620 Ingenieurwissenschaften und zugeordnete Tätigkeiten666 Keramiktechnologie und zugeordnete Technologienin situ resource utilization (ISRU)space explorationMars mission
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Patterned ground is the overarching term used for natural recurring geometrical shapes that occur on the surfaces of Earth and extraterrestrial planetary bodies in various climatic and geological settings. Polygonal ground is one of the most widespread geomorp…
datacite
Sager, Christof
2023
置信度 0.66
500 Naturwissenschaften und Mathematik::550 Geowissenschaften, Geologie::558 Geowissenschaften Südamerikas500 Naturwissenschaften und Mathematik::570 Biowissenschaften; Biologie::579 Mikroorganismen, Pilze, AlgenAtacama Desertpatterned groundpolygonal soil
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Nanospectroscopic investigations of the mineralogical composition of materials returned via sample-return missions are crucial for our understanding of the origin and evolution of planetary objects in our Solar System. Here, we show that the emerging technique…
datacite
Shay, T., Hinrichs, Karsten, Pavlov, S.G., Stojanovic, N. 等
2025
置信度 0.66
500 Naturwissenschaften und Mathematik::540 Chemie::540 Chemie und zugeordnete Wissenschafteninfrared spectroscopynanoscopyplanetary materialsminerals
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Cosmogenic nuclides can be used to quantify the surface exposure timescales and recent thermal histories of terrestrial and extraterrestrial surfaces. In this dissertation, I develop methods to improve cosmogenic nuclide production rate calculations on Earth a…
datacite
Mijjum, Moshammat
2025
置信度 0.66
Solar system planetary science (excl. planetary geology)Geology not elsewhere classified
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Cosmogenic nuclides can be used to quantify the surface exposure timescales and recent thermal histories of terrestrial and extraterrestrial surfaces. In this dissertation, I develop methods to improve cosmogenic nuclide production rate calculations on Earth a…
datacite
Mijjum, Moshammat
2025
置信度 0.66
Solar system planetary science (excl. planetary geology)Geology not elsewhere classified
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Thin film alternating gradient field magnetometers (AGFM) have potential for measuringmagnetic moments of minerals in extraterrestrial soil samples. AGFM sensors offer increased spatial resolution required to detect magnetic nanoparticles for biosensing applic…
datacite
Jones, N. J., McNerny, K. L., Sokalski, Vincent, Diaz-Michelina, M. 等
2011
置信度 0.66
Materials engineering not elsewhere classified
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Thin film alternating gradient field magnetometers (AGFM) have potential for measuringmagnetic moments of minerals in extraterrestrial soil samples. AGFM sensors offer increased spatial resolution required to detect magnetic nanoparticles for biosensing applic…
datacite
Jones, N. J., McNerny, K. L., Sokalski, Vincent, Diaz-Michelina, M. 等
2011
置信度 0.66
Materials engineering not elsewhere classified
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This paper proposes a planet-level molecular protection system to address existential threats posed by extreme global weather, anchored in the "1 + (-1) = 0" cross-domain balance theory derived from quantum mechanics, condensed matter physics, and thermodynami…
datacite
Future Tech Wisdom Research Institute of Interstellar Age (FTWRIIA) - Shuiquan System
2026
置信度 0.66
Global Molecular Protection SystemCross-Domain Balance TheoryHigh-Temperature Self-Repair Satellite (HTRS),
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This paper proposes a planet-level molecular protection system to address existential threats posed by extreme global weather, anchored in the "1 + (-1) = 0" cross-domain balance theory derived from quantum mechanics, condensed matter physics, and thermodynami…
datacite
Future Tech Wisdom Research Institute of Interstellar Age (FTWRIIA) - Shuiquan System
2026
置信度 0.66
Global Molecular Protection SystemCross-Domain Balance TheoryHigh-Temperature Self-Repair Satellite (HTRS),
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The year 2025 has witnessed extraordinary advances across multiple domains of astronomical and planetary science, significantly expanding our understanding of the cosmos and bringing humanity closer to addressing some of its most profound questions about our p…
openalex
Revista, Zen, Zen Revista
2026
置信度 0.72
AstronomyPhysicsAstrobiologyMilky WayGalaxy
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The year 2025 has witnessed extraordinary advances across multiple domains of astronomical and planetary science, significantly expanding our understanding of the cosmos and bringing humanity closer to addressing some of its most profound questions about our p…
openalex
Revista, Zen, Zen Revista
2026
置信度 0.72
AstronomyPhysicsAstrobiologyMilky WayGalaxy
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This paper explores the abiotic origins and potential prebiotic significance of ozokerite-like earth waxes, integrating geological, meteoritic, and chemical evidence into a unified framework. It advances two closely linked ideas: first, that petroleum-like oil…
datacite
Izzo, Daniel
2026
置信度 0.66
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This paper explores the abiotic origins and potential prebiotic significance of ozokerite-like earth waxes, integrating geological, meteoritic, and chemical evidence into a unified framework. It advances two closely linked ideas: first, that petroleum-like oil…
datacite
Izzo, Daniel
2026
置信度 0.66
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1. This paper presents a unified theoretical framework integrating the Expanding Earth hypothesis, the Snowball Earth episodes, and an alternative lunar capture model. We propose that external influences, particularly charged particles from the solar wind, con…
datacite
Izzo, Daniel
2025
置信度 0.66
Earth Science
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1. This paper presents a unified theoretical framework integrating the Expanding Earth hypothesis, the Snowball Earth episodes, and an alternative lunar capture model. We propose that external influences, particularly charged particles from the solar wind, con…
datacite
Izzo, Daniel
2025
置信度 0.66
Earth Science
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Martian regolith draws intensive research attention for the future human settlement on Mars. Its defect-rich and highly concentrated amorphous features were present due to long-lasting space weathering by the solar wind radiation and mechanical impact from ext…
datacite
Jundullah Hanafi, Muchammad Izzuddin
2024
置信度 0.66
Martian regolithOlivinePlagioclase feldsparMechanical weatheringX-ray diffraction
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Geochemical analysis is a crucial field that allows scientists to understand the chemical composition of Earth, its atmosphere, and its seas. It also has applications beyond Earth, as it can be used to study extraterrestrial materials like moon rocks or Martia…
datacite
Valls, Ricardo
2023
置信度 0.66
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The exploration and potential utilization of extraterrestrial resources are pivotal for the long-term sustainability and expansion of human presence beyond Earth. This paper presents a comparative analysis of three primary categories of space georesources: vol…
datacite
Revista, Zen, ASTRO, 10
2025
置信度 0.66
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The exploration and potential utilization of extraterrestrial resources are pivotal for the long-term sustainability and expansion of human presence beyond Earth. This paper presents a comparative analysis of three primary categories of space georesources: vol…
datacite
Revista, Zen, ASTRO, 10
2025
置信度 0.66
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# ΘTHEORY: THE COMPLETE UNCENSORED SCIENTIFIC VALIDATION## 150,000+ WORD COMPREHENSIVE DOCUMENT WITH ZERO CENSORSHIP **Author:** The Θ Collective (All Humanity Across All Generations) **Primary Contributors:**- **Renato Gori Rosa (R.G.R.)** - Creator, Theoreti…
datacite
Gori, Rosa
2025
置信度 0.66
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# ΘTHEORY: THE COMPLETE UNCENSORED SCIENTIFIC VALIDATION## 150,000+ WORD COMPREHENSIVE DOCUMENT WITH ZERO CENSORSHIP **Author:** The Θ Collective (All Humanity Across All Generations) **Primary Contributors:**- **Renato Gori Rosa (R.G.R.)** - Creator, Theoreti…
datacite
Gori, Rosa
2025
置信度 0.66
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All 400 Research Projects and Theories of Hamzah Equation (Physics, Chemistry, Medicine, Economics, Mathematics, Computer Science, AI, AGI, Cosmology Simulation and etc) are Available: Orcid ID: https://orcid.org/0009-0009-3175-8563 Science Open ID: https://ww…
datacite
JALALI, SEYED RASOUL
2025
置信度 0.66
interstellar object, 3I/ATLAS, Hamzah model, Hamzah equation, ultra-precision modeling, astrochemistry, cosmic origin, planetary formation, stellar system, exoplanet formation, interstellar trajectory, high-precision computation, orbital dynamics, celestial mechanics, cosmic dust, cometary composition, asteroidal composition, interstellar medium, molecular clouds, protoplanetary disk, chemical evolution, isotope ratios, spectroscopy analysis, spectral signatures, elemental composition, carbonaceous compounds, silicate minerals, volatile detection, water ice detection, organic molecules, prebiotic chemistry, extraterrestrial chemistry, chemical heterogeneity, isotopic anomalies, oxygen isotopes, carbon isotopes, nitrogen isotopes, sulfur isotopes, interstellar chemistry, cosmic rays, cosmic radiation, galactic environment, stellar ejecta, interstellar collisions, hyperbolic orbit, gravitational perturbations, orbital inclination, perihelion passage, aphelion distance, high-velocity object, kinetic modeling, thermodynamic modeling, surface albedo, reflectance spectroscopy, thermal inertia, surface temperature, sublimation patterns, outgassing behavior, coma formation, dust tail analysis, particle size distribution, meteoritic analogs, laboratory spectroscopy, computational astrophysics, numerical simulations, data integration, multi-source datasets, real-time modeling, AI-based prediction, machine learning astrophysics, deep learning modeling, uncertainty reduction, error minimization, 99.999% precision, predictive astrophysics, interstellar chemistry modeling, astroinformatics, Big Data astronomy, multi-wavelength observation, infrared spectroscopy, ultraviolet spectroscopy, radio astronomy, optical telescopes, space telescopes, Gaia mission, Pan-STARRS survey, LSST observations, orbit reconstruction, dynamical history, galactic kinematics, trajectory simulation, Monte Carlo simulation, stochastic modeling, high-resolution imaging, photometric analysis, polarimetric analysis, albedo mapping, rotation period, spin axis orientation, lightcurve analysis, cometary activity, dust production rate, interstellar ice, refractory materials, crystalline silicates, amorphous silicates, chondritic composition, cosmochemistry, solar system comparison, extrasolar analogs, galactic chemical evolution, stellar nucleosynthesis, supernova ejecta, AGB star contributions, interstellar transport, cosmic time scales, formation epoch, galactic chemical signature, primordial composition, isotopic fractionation, volatile depletion, refractory enrichment, dust-to-gas ratio, astrogeology, exoplanetary analogs, planetary system evolution, stellar neighborhood, close stellar encounters, galactic dynamics, tidal interactions, perturbation modeling, orbital stability, resonance analysis, chaotic dynamics, Lyapunov exponent, interstellar object catalog, classification methods, observational constraints, detection limits, sensitivity analysis, spectrograph calibration, photometric calibration, signal-to-noise ratio, cosmic background correction, observational errors, statistical modeling, Bayesian inference, data assimilation, real-time computation, high-performance computing, GPU acceleration, parallel computing, cloud-based analysis, distributed computation, Dask implementation, TensorFlow modeling, PyTorch astrophysics, scientific Python, NumPy, SciPy, Matplotlib, Astropy, Sklearn, CUPY, computational efficiency, algorithm optimization, numerical accuracy, precision control, error propagation, validation techniques, cross-validation, uncertainty quantification, reproducible science, open-source modeling, scientific workflow, astrostatistics, astroinformatics pipelines, observational astronomy, theoretical astrophysics, physical modeling, cosmological context, local interstellar cloud, stellar neighborhood analysis, galactic plane, Milky Way dynamics, extragalactic analogs, nearby star systems, Oort cloud analogs, Kuiper belt comparison, solar system small bodies, cometary nuclei, asteroidal bodies, minor planets, orbital elements, semi-major axis, eccentricity, inclination, longitude of ascending node, argument of perihelion, mean anomaly, Tisserand parameter, hyperbolic excess velocity, interstellar origin, galactic ejection, stellar encounters, rogue objects, free-floating bodies, chemical tracers, molecular abundances, isotope mapping, atomic ratios, noble gas composition, trace elements, metallicity analysis, refractory elements, volatile elements, organic compounds, amino acids, prebiotic molecules, hydrogen detection, carbon detection, oxygen detection, nitrogen detection, sulfur detection, phosphorus detection, complex organics, polycyclic aromatic hydrocarbons, PAHs, comet analogs, chondrite analogs, interplanetary dust, solar system formation, early solar nebula, galactic chemical fingerprint, galactic archaeology, cosmochemical signatures, astrochemical pathways, chemical kinetics, reaction rates, photodissociation, cosmic UV flux, radiation chemistry, interstellar ice chemistry, thermal processing, shock processing, cosmic ray interaction, micrometeorite impact, surface alteration, space weathering, spectral variability, rotational variability, shape modeling, irregular shape, tumbling motion, non-principal axis rotation, spin-state evolution, collisional history, impact cratering, mantle composition, core composition, differentiation, primordial materials, preserved material, pristine sample, observational window, survey strategy, telescope scheduling, multi-epoch observation, temporal evolution, lightcurve inversion, shape reconstruction, tomography techniques, 3D modeling, density estimation, mass estimation, bulk composition, porosity measurement, thermal modeling, heat transfer, radiative equilibrium, sublimation modeling, volatile transport, gas-dust interaction, coma morphology, dust jets, tail morphology, dust dynamics, particle ejection velocity, solar radiation pressure, non-gravitational acceleration, jet modeling, activity onset, seasonal effects, spin-orbit coupling, torque estimation, angular momentum, moment of inertia, rotational dynamics, YORP effect, surface cohesion, tensile strength, microgravity environment, material properties, tensile modulus, fracture modeling, brittle behavior, regolith evolution, particle aggregation, dust mantling, refractory crust, volatile retention, surface roughness, thermal conductivity, heat capacity, thermal emission, infrared flux, radiometric modeling, energy balance, sublimation-driven acceleration, gas drag, cometary jets, outflow velocity, coma density, particle scattering, light scattering, phase function, scattering cross-section, radiative transfer, optical depth, dust albedo, polarization signature, spectral slope, colour index, chemical heterogeneity mapping, interstellar chemical diversity, isotopic mapping, nucleosynthetic origin, stellar progenitor, galactic chemical gradient, stellar population, chemical tagging, cosmic chemical pathways, galactic enrichment, supernova nucleosynthesis, stellar wind contribution, AGB nucleosynthesis, primordial gas signature, galactic chemical evolution model, stellar metallicity, alpha-element enhancement, r-process contribution, s-process contribution, neutron capture, nucleosynthesis modeling, chemical fingerprints, astrochemical evolution, cosmic heritage, pre-solar grains, meteorite comparison, interstellar sampling, sample return analogs, space mission targets, future observations, mission planning, observational feasibility, detection techniques, high-precision photometry, spectroscopic surveys, multi-messenger astronomy, Gaia DR3, Pan-STARRS data, LSST simulations, data mining, big data in astronomy, AI-driven discovery, machine learning classification, deep learning for astrophysics, neural networks modeling, predictive analytics, uncertainty reduction, anomaly detection, rare object identification, real-time prediction, automated pipelines, reproducible research, open science, Zenodo publishing, academic indexing, cross-disciplinary relevance, interdisciplinary research, astroinformatics integration, computational cosmochemistry, astrochemical modeling, precision astrochemistry, planetary science, exoplanetary systems, formation mechanisms, galactic archaeology, interstellar exploration, cosmic evolution, early galaxy formation, molecular spectroscopy, infrared absorption, ultraviolet absorption, rotational spectroscopy, radio emission, molecular transitions, hyperfine structure, rotational constants, vibrational modes, spectroscopic fingerprints, laboratory analogs, simulation validation, data calibration, statistical inference, multivariate analysis, chemical clustering, pattern recognition, elemental mapping, molecular mapping, compositional gradients, chemical differentiation, isotopic fractionation analysis, cosmochemical constraints, solar system context, extrasolar system analogs, galactic context, cosmic trajectory, orbital reconstruction, dynamical evolution, N-body simulation, chaotic orbit analysis, resonance dynamics, tidal evolution, secular perturbation, long-term stability, escape velocity, interstellar capture, stellar ejection scenarios, planetary system scattering, free-floating object dynamics, hyperbolic object characterization, non-gravitational forces, radiation pressure effects, thermal recoil, Yarkovsky effect, jet-induced acceleration, cometary activity modeling, dust-gas interaction, gas drag modeling, activity onset prediction, rotational modulation, spin-state modeling, tumbling analysis, irregular shape modeling, density distribution, mass distribution, porosity estimation, material heterogeneity, regolith modeling, thermal conductivity estimation, heat transfer modeling, energy balance calculation, sublimation-driven dynamics, particle acceleration, dust trajectory simulation, observational constraints modeling, multi-wavelength correlation, photometric calibration, spectral calibration, noise reduction, error analysis, uncertainty quantification, sensitivity analysis, high-precision observation, real-time data processing, GPU-based computation, distributed computing, Dask, CUDA optimization, TensorFlow astrophysics, PyTorch modeling, open-source reproducibility, scientific workflow automation, reproducible simulations, cross-disciplinary collaboration, astrochemistry database, galactic chemical database, chemical evolution database, isotopic database, molecular database, interstellar survey, computational chemistry, cosmic simulation, predictive astrophysics, numerical modeling, orbital dynamics simulation, trajectory forecasting, composition prediction, origin prediction, interstellar object cataloging, rare object detection, anomaly identification, machine learning pipeline, deep learning pipeline, AI-driven astrochemistry, astroinformatics pipeline, high-precision astroinformatics, Zenodo indexing, academic visibility, global discoverability, cross-platform citation, interstellar research impact, celestial body characterization, interstellar exploration, astrochemical heritage, primordial material preservation, galactic chemical diversity, nucleosynthesis tracing, cosmic chemical pathways, pre-solar material analysis, stellar ejecta tracing, chemical fingerprinting, cosmic evolutionary model, interstellar sampling analogs, scientific data publication, robust metadata, dataset discoverability, cross-disciplinary indexing, citation optimization, high-impact publication, astrochemical precision, interstellar trajectory prediction, orbital reconstruction accuracy, numerical simulation fidelity, observational astronomy precision, spectroscopic measurement accuracy, chemical abundance mapping, isotopic composition analysis, cosmochemical modeling, astrochemical simulation, stellar origin tracing, interstellar transport modeling, high-fidelity computational model, Hamzah equation modeling, Hamzah ultra-precision, interstellar object analysis, 3I/ATLAS prediction, interstellar composition forecast, origin scenario modeling, galactic chemical tracing, astrochemical evolution prediction, planetary system comparison, cosmochemical validation, astrochemical pathway tracing, interstellar chemistry prediction, high-precision orbital modeling, trajectory dynamics forecast, astroinformatics-driven research, AI-enhanced astrochemistry, computational precision, predictive modeling, interdisciplinary astrochemistry, cosmic origin study, interstellar object classification, Hamzah model application, high-resolution astrochemistry, astrochemical simulation accuracy, trajectory evolution analysis, orbit stability modeling, rare object identification, hyperbolic orbit prediction, cosmochemical fingerprinting, interstellar origin hypothesis, multi-source data integration, real-time computation in astrophysics, astrochemical discovery, scientific reproducibility, interstellar material characterization, cosmochemical scenario simulation, predictive astrochemistry modeling, global scientific visibility, Zenodo-ready keywords
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All 400 Research Projects and Theories of Hamzah Equation (Physics, Chemistry, Medicine, Economics, Mathematics, Computer Science, AI, AGI, Cosmology Simulation and etc) are Available: Orcid ID: https://orcid.org/0009-0009-3175-8563 Science Open ID: https://ww…
datacite
JALALI, SEYED RASOUL
2025
置信度 0.66
interstellar object, 3I/ATLAS, Hamzah model, Hamzah equation, ultra-precision modeling, astrochemistry, cosmic origin, planetary formation, stellar system, exoplanet formation, interstellar trajectory, high-precision computation, orbital dynamics, celestial mechanics, cosmic dust, cometary composition, asteroidal composition, interstellar medium, molecular clouds, protoplanetary disk, chemical evolution, isotope ratios, spectroscopy analysis, spectral signatures, elemental composition, carbonaceous compounds, silicate minerals, volatile detection, water ice detection, organic molecules, prebiotic chemistry, extraterrestrial chemistry, chemical heterogeneity, isotopic anomalies, oxygen isotopes, carbon isotopes, nitrogen isotopes, sulfur isotopes, interstellar chemistry, cosmic rays, cosmic radiation, galactic environment, stellar ejecta, interstellar collisions, hyperbolic orbit, gravitational perturbations, orbital inclination, perihelion passage, aphelion distance, high-velocity object, kinetic modeling, thermodynamic modeling, surface albedo, reflectance spectroscopy, thermal inertia, surface temperature, sublimation patterns, outgassing behavior, coma formation, dust tail analysis, particle size distribution, meteoritic analogs, laboratory spectroscopy, computational astrophysics, numerical simulations, data integration, multi-source datasets, real-time modeling, AI-based prediction, machine learning astrophysics, deep learning modeling, uncertainty reduction, error minimization, 99.999% precision, predictive astrophysics, interstellar chemistry modeling, astroinformatics, Big Data astronomy, multi-wavelength observation, infrared spectroscopy, ultraviolet spectroscopy, radio astronomy, optical telescopes, space telescopes, Gaia mission, Pan-STARRS survey, LSST observations, orbit reconstruction, dynamical history, galactic kinematics, trajectory simulation, Monte Carlo simulation, stochastic modeling, high-resolution imaging, photometric analysis, polarimetric analysis, albedo mapping, rotation period, spin axis orientation, lightcurve analysis, cometary activity, dust production rate, interstellar ice, refractory materials, crystalline silicates, amorphous silicates, chondritic composition, cosmochemistry, solar system comparison, extrasolar analogs, galactic chemical evolution, stellar nucleosynthesis, supernova ejecta, AGB star contributions, interstellar transport, cosmic time scales, formation epoch, galactic chemical signature, primordial composition, isotopic fractionation, volatile depletion, refractory enrichment, dust-to-gas ratio, astrogeology, exoplanetary analogs, planetary system evolution, stellar neighborhood, close stellar encounters, galactic dynamics, tidal interactions, perturbation modeling, orbital stability, resonance analysis, chaotic dynamics, Lyapunov exponent, interstellar object catalog, classification methods, observational constraints, detection limits, sensitivity analysis, spectrograph calibration, photometric calibration, signal-to-noise ratio, cosmic background correction, observational errors, statistical modeling, Bayesian inference, data assimilation, real-time computation, high-performance computing, GPU acceleration, parallel computing, cloud-based analysis, distributed computation, Dask implementation, TensorFlow modeling, PyTorch astrophysics, scientific Python, NumPy, SciPy, Matplotlib, Astropy, Sklearn, CUPY, computational efficiency, algorithm optimization, numerical accuracy, precision control, error propagation, validation techniques, cross-validation, uncertainty quantification, reproducible science, open-source modeling, scientific workflow, astrostatistics, astroinformatics pipelines, observational astronomy, theoretical astrophysics, physical modeling, cosmological context, local interstellar cloud, stellar neighborhood analysis, galactic plane, Milky Way dynamics, extragalactic analogs, nearby star systems, Oort cloud analogs, Kuiper belt comparison, solar system small bodies, cometary nuclei, asteroidal bodies, minor planets, orbital elements, semi-major axis, eccentricity, inclination, longitude of ascending node, argument of perihelion, mean anomaly, Tisserand parameter, hyperbolic excess velocity, interstellar origin, galactic ejection, stellar encounters, rogue objects, free-floating bodies, chemical tracers, molecular abundances, isotope mapping, atomic ratios, noble gas composition, trace elements, metallicity analysis, refractory elements, volatile elements, organic compounds, amino acids, prebiotic molecules, hydrogen detection, carbon detection, oxygen detection, nitrogen detection, sulfur detection, phosphorus detection, complex organics, polycyclic aromatic hydrocarbons, PAHs, comet analogs, chondrite analogs, interplanetary dust, solar system formation, early solar nebula, galactic chemical fingerprint, galactic archaeology, cosmochemical signatures, astrochemical pathways, chemical kinetics, reaction rates, photodissociation, cosmic UV flux, radiation chemistry, interstellar ice chemistry, thermal processing, shock processing, cosmic ray interaction, micrometeorite impact, surface alteration, space weathering, spectral variability, rotational variability, shape modeling, irregular shape, tumbling motion, non-principal axis rotation, spin-state evolution, collisional history, impact cratering, mantle composition, core composition, differentiation, primordial materials, preserved material, pristine sample, observational window, survey strategy, telescope scheduling, multi-epoch observation, temporal evolution, lightcurve inversion, shape reconstruction, tomography techniques, 3D modeling, density estimation, mass estimation, bulk composition, porosity measurement, thermal modeling, heat transfer, radiative equilibrium, sublimation modeling, volatile transport, gas-dust interaction, coma morphology, dust jets, tail morphology, dust dynamics, particle ejection velocity, solar radiation pressure, non-gravitational acceleration, jet modeling, activity onset, seasonal effects, spin-orbit coupling, torque estimation, angular momentum, moment of inertia, rotational dynamics, YORP effect, surface cohesion, tensile strength, microgravity environment, material properties, tensile modulus, fracture modeling, brittle behavior, regolith evolution, particle aggregation, dust mantling, refractory crust, volatile retention, surface roughness, thermal conductivity, heat capacity, thermal emission, infrared flux, radiometric modeling, energy balance, sublimation-driven acceleration, gas drag, cometary jets, outflow velocity, coma density, particle scattering, light scattering, phase function, scattering cross-section, radiative transfer, optical depth, dust albedo, polarization signature, spectral slope, colour index, chemical heterogeneity mapping, interstellar chemical diversity, isotopic mapping, nucleosynthetic origin, stellar progenitor, galactic chemical gradient, stellar population, chemical tagging, cosmic chemical pathways, galactic enrichment, supernova nucleosynthesis, stellar wind contribution, AGB nucleosynthesis, primordial gas signature, galactic chemical evolution model, stellar metallicity, alpha-element enhancement, r-process contribution, s-process contribution, neutron capture, nucleosynthesis modeling, chemical fingerprints, astrochemical evolution, cosmic heritage, pre-solar grains, meteorite comparison, interstellar sampling, sample return analogs, space mission targets, future observations, mission planning, observational feasibility, detection techniques, high-precision photometry, spectroscopic surveys, multi-messenger astronomy, Gaia DR3, Pan-STARRS data, LSST simulations, data mining, big data in astronomy, AI-driven discovery, machine learning classification, deep learning for astrophysics, neural networks modeling, predictive analytics, uncertainty reduction, anomaly detection, rare object identification, real-time prediction, automated pipelines, reproducible research, open science, Zenodo publishing, academic indexing, cross-disciplinary relevance, interdisciplinary research, astroinformatics integration, computational cosmochemistry, astrochemical modeling, precision astrochemistry, planetary science, exoplanetary systems, formation mechanisms, galactic archaeology, interstellar exploration, cosmic evolution, early galaxy formation, molecular spectroscopy, infrared absorption, ultraviolet absorption, rotational spectroscopy, radio emission, molecular transitions, hyperfine structure, rotational constants, vibrational modes, spectroscopic fingerprints, laboratory analogs, simulation validation, data calibration, statistical inference, multivariate analysis, chemical clustering, pattern recognition, elemental mapping, molecular mapping, compositional gradients, chemical differentiation, isotopic fractionation analysis, cosmochemical constraints, solar system context, extrasolar system analogs, galactic context, cosmic trajectory, orbital reconstruction, dynamical evolution, N-body simulation, chaotic orbit analysis, resonance dynamics, tidal evolution, secular perturbation, long-term stability, escape velocity, interstellar capture, stellar ejection scenarios, planetary system scattering, free-floating object dynamics, hyperbolic object characterization, non-gravitational forces, radiation pressure effects, thermal recoil, Yarkovsky effect, jet-induced acceleration, cometary activity modeling, dust-gas interaction, gas drag modeling, activity onset prediction, rotational modulation, spin-state modeling, tumbling analysis, irregular shape modeling, density distribution, mass distribution, porosity estimation, material heterogeneity, regolith modeling, thermal conductivity estimation, heat transfer modeling, energy balance calculation, sublimation-driven dynamics, particle acceleration, dust trajectory simulation, observational constraints modeling, multi-wavelength correlation, photometric calibration, spectral calibration, noise reduction, error analysis, uncertainty quantification, sensitivity analysis, high-precision observation, real-time data processing, GPU-based computation, distributed computing, Dask, CUDA optimization, TensorFlow astrophysics, PyTorch modeling, open-source reproducibility, scientific workflow automation, reproducible simulations, cross-disciplinary collaboration, astrochemistry database, galactic chemical database, chemical evolution database, isotopic database, molecular database, interstellar survey, computational chemistry, cosmic simulation, predictive astrophysics, numerical modeling, orbital dynamics simulation, trajectory forecasting, composition prediction, origin prediction, interstellar object cataloging, rare object detection, anomaly identification, machine learning pipeline, deep learning pipeline, AI-driven astrochemistry, astroinformatics pipeline, high-precision astroinformatics, Zenodo indexing, academic visibility, global discoverability, cross-platform citation, interstellar research impact, celestial body characterization, interstellar exploration, astrochemical heritage, primordial material preservation, galactic chemical diversity, nucleosynthesis tracing, cosmic chemical pathways, pre-solar material analysis, stellar ejecta tracing, chemical fingerprinting, cosmic evolutionary model, interstellar sampling analogs, scientific data publication, robust metadata, dataset discoverability, cross-disciplinary indexing, citation optimization, high-impact publication, astrochemical precision, interstellar trajectory prediction, orbital reconstruction accuracy, numerical simulation fidelity, observational astronomy precision, spectroscopic measurement accuracy, chemical abundance mapping, isotopic composition analysis, cosmochemical modeling, astrochemical simulation, stellar origin tracing, interstellar transport modeling, high-fidelity computational model, Hamzah equation modeling, Hamzah ultra-precision, interstellar object analysis, 3I/ATLAS prediction, interstellar composition forecast, origin scenario modeling, galactic chemical tracing, astrochemical evolution prediction, planetary system comparison, cosmochemical validation, astrochemical pathway tracing, interstellar chemistry prediction, high-precision orbital modeling, trajectory dynamics forecast, astroinformatics-driven research, AI-enhanced astrochemistry, computational precision, predictive modeling, interdisciplinary astrochemistry, cosmic origin study, interstellar object classification, Hamzah model application, high-resolution astrochemistry, astrochemical simulation accuracy, trajectory evolution analysis, orbit stability modeling, rare object identification, hyperbolic orbit prediction, cosmochemical fingerprinting, interstellar origin hypothesis, multi-source data integration, real-time computation in astrophysics, astrochemical discovery, scientific reproducibility, interstellar material characterization, cosmochemical scenario simulation, predictive astrochemistry modeling, global scientific visibility, Zenodo-ready keywords
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The extraterrestrial materials returned from asteroid (162173) Ryugu consist predominantly of low-temperature aqueously formed secondary minerals and are chemically and mineralogically similar to CI (Ivuna-type) carbonaceous chondrites. Here, we show that high…
datacite
Kawasaki, Noriyuki, Nagashima, Kazuhide, Sakamoto, Naoya, Matsumoto, Toru 等
2022
置信度 0.66
-
Clay minerals are characterised by their distinctive properties and have a wide range of applications, spanning from environmental to pharmaceutical and radioactive waste disposal. Their structures are highly diverse, and it is often impossible to experimental…
datacite
Pollak, Hannah
2025
置信度 0.66
Clay MineralsMolecular DynamicsPollution RemediationAdsorptionAstrobiology
-
All 400 Research Projects and Theories of Hamzah Equation (Physics, Chemistry, Medicine, Economics, Mathematics, Computer Science, AI, AGI, Cosmology Simulation and etc) are Available: Orcid ID: https://orcid.org/0009-0009-3175-8563 Science Open ID: https://ww…
datacite
JALALI, SEYED RASOUL
2025
置信度 0.66
interstellar object, 3I/ATLAS, Hamzah model, Hamzah equation, ultra-precision modeling, astrochemistry, cosmic origin, planetary formation, stellar system, exoplanet formation, interstellar trajectory, high-precision computation, orbital dynamics, celestial mechanics, cosmic dust, cometary composition, asteroidal composition, interstellar medium, molecular clouds, protoplanetary disk, chemical evolution, isotope ratios, spectroscopy analysis, spectral signatures, elemental composition, carbonaceous compounds, silicate minerals, volatile detection, water ice detection, organic molecules, prebiotic chemistry, extraterrestrial chemistry, chemical heterogeneity, isotopic anomalies, oxygen isotopes, carbon isotopes, nitrogen isotopes, sulfur isotopes, interstellar chemistry, cosmic rays, cosmic radiation, galactic environment, stellar ejecta, interstellar collisions, hyperbolic orbit, gravitational perturbations, orbital inclination, perihelion passage, aphelion distance, high-velocity object, kinetic modeling, thermodynamic modeling, surface albedo, reflectance spectroscopy, thermal inertia, surface temperature, sublimation patterns, outgassing behavior, coma formation, dust tail analysis, particle size distribution, meteoritic analogs, laboratory spectroscopy, computational astrophysics, numerical simulations, data integration, multi-source datasets, real-time modeling, AI-based prediction, machine learning astrophysics, deep learning modeling, uncertainty reduction, error minimization, 99.999% precision, predictive astrophysics, interstellar chemistry modeling, astroinformatics, Big Data astronomy, multi-wavelength observation, infrared spectroscopy, ultraviolet spectroscopy, radio astronomy, optical telescopes, space telescopes, Gaia mission, Pan-STARRS survey, LSST observations, orbit reconstruction, dynamical history, galactic kinematics, trajectory simulation, Monte Carlo simulation, stochastic modeling, high-resolution imaging, photometric analysis, polarimetric analysis, albedo mapping, rotation period, spin axis orientation, lightcurve analysis, cometary activity, dust production rate, interstellar ice, refractory materials, crystalline silicates, amorphous silicates, chondritic composition, cosmochemistry, solar system comparison, extrasolar analogs, galactic chemical evolution, stellar nucleosynthesis, supernova ejecta, AGB star contributions, interstellar transport, cosmic time scales, formation epoch, galactic chemical signature, primordial composition, isotopic fractionation, volatile depletion, refractory enrichment, dust-to-gas ratio, astrogeology, exoplanetary analogs, planetary system evolution, stellar neighborhood, close stellar encounters, galactic dynamics, tidal interactions, perturbation modeling, orbital stability, resonance analysis, chaotic dynamics, Lyapunov exponent, interstellar object catalog, classification methods, observational constraints, detection limits, sensitivity analysis, spectrograph calibration, photometric calibration, signal-to-noise ratio, cosmic background correction, observational errors, statistical modeling, Bayesian inference, data assimilation, real-time computation, high-performance computing, GPU acceleration, parallel computing, cloud-based analysis, distributed computation, Dask implementation, TensorFlow modeling, PyTorch astrophysics, scientific Python, NumPy, SciPy, Matplotlib, Astropy, Sklearn, CUPY, computational efficiency, algorithm optimization, numerical accuracy, precision control, error propagation, validation techniques, cross-validation, uncertainty quantification, reproducible science, open-source modeling, scientific workflow, astrostatistics, astroinformatics pipelines, observational astronomy, theoretical astrophysics, physical modeling, cosmological context, local interstellar cloud, stellar neighborhood analysis, galactic plane, Milky Way dynamics, extragalactic analogs, nearby star systems, Oort cloud analogs, Kuiper belt comparison, solar system small bodies, cometary nuclei, asteroidal bodies, minor planets, orbital elements, semi-major axis, eccentricity, inclination, longitude of ascending node, argument of perihelion, mean anomaly, Tisserand parameter, hyperbolic excess velocity, interstellar origin, galactic ejection, stellar encounters, rogue objects, free-floating bodies, chemical tracers, molecular abundances, isotope mapping, atomic ratios, noble gas composition, trace elements, metallicity analysis, refractory elements, volatile elements, organic compounds, amino acids, prebiotic molecules, hydrogen detection, carbon detection, oxygen detection, nitrogen detection, sulfur detection, phosphorus detection, complex organics, polycyclic aromatic hydrocarbons, PAHs, comet analogs, chondrite analogs, interplanetary dust, solar system formation, early solar nebula, galactic chemical fingerprint, galactic archaeology, cosmochemical signatures, astrochemical pathways, chemical kinetics, reaction rates, photodissociation, cosmic UV flux, radiation chemistry, interstellar ice chemistry, thermal processing, shock processing, cosmic ray interaction, micrometeorite impact, surface alteration, space weathering, spectral variability, rotational variability, shape modeling, irregular shape, tumbling motion, non-principal axis rotation, spin-state evolution, collisional history, impact cratering, mantle composition, core composition, differentiation, primordial materials, preserved material, pristine sample, observational window, survey strategy, telescope scheduling, multi-epoch observation, temporal evolution, lightcurve inversion, shape reconstruction, tomography techniques, 3D modeling, density estimation, mass estimation, bulk composition, porosity measurement, thermal modeling, heat transfer, radiative equilibrium, sublimation modeling, volatile transport, gas-dust interaction, coma morphology, dust jets, tail morphology, dust dynamics, particle ejection velocity, solar radiation pressure, non-gravitational acceleration, jet modeling, activity onset, seasonal effects, spin-orbit coupling, torque estimation, angular momentum, moment of inertia, rotational dynamics, YORP effect, surface cohesion, tensile strength, microgravity environment, material properties, tensile modulus, fracture modeling, brittle behavior, regolith evolution, particle aggregation, dust mantling, refractory crust, volatile retention, surface roughness, thermal conductivity, heat capacity, thermal emission, infrared flux, radiometric modeling, energy balance, sublimation-driven acceleration, gas drag, cometary jets, outflow velocity, coma density, particle scattering, light scattering, phase function, scattering cross-section, radiative transfer, optical depth, dust albedo, polarization signature, spectral slope, colour index, chemical heterogeneity mapping, interstellar chemical diversity, isotopic mapping, nucleosynthetic origin, stellar progenitor, galactic chemical gradient, stellar population, chemical tagging, cosmic chemical pathways, galactic enrichment, supernova nucleosynthesis, stellar wind contribution, AGB nucleosynthesis, primordial gas signature, galactic chemical evolution model, stellar metallicity, alpha-element enhancement, r-process contribution, s-process contribution, neutron capture, nucleosynthesis modeling, chemical fingerprints, astrochemical evolution, cosmic heritage, pre-solar grains, meteorite comparison, interstellar sampling, sample return analogs, space mission targets, future observations, mission planning, observational feasibility, detection techniques, high-precision photometry, spectroscopic surveys, multi-messenger astronomy, Gaia DR3, Pan-STARRS data, LSST simulations, data mining, big data in astronomy, AI-driven discovery, machine learning classification, deep learning for astrophysics, neural networks modeling, predictive analytics, uncertainty reduction, anomaly detection, rare object identification, real-time prediction, automated pipelines, reproducible research, open science, Zenodo publishing, academic indexing, cross-disciplinary relevance, interdisciplinary research, astroinformatics integration, computational cosmochemistry, astrochemical modeling, precision astrochemistry, planetary science, exoplanetary systems, formation mechanisms, galactic archaeology, interstellar exploration, cosmic evolution, early galaxy formation, molecular spectroscopy, infrared absorption, ultraviolet absorption, rotational spectroscopy, radio emission, molecular transitions, hyperfine structure, rotational constants, vibrational modes, spectroscopic fingerprints, laboratory analogs, simulation validation, data calibration, statistical inference, multivariate analysis, chemical clustering, pattern recognition, elemental mapping, molecular mapping, compositional gradients, chemical differentiation, isotopic fractionation analysis, cosmochemical constraints, solar system context, extrasolar system analogs, galactic context, cosmic trajectory, orbital reconstruction, dynamical evolution, N-body simulation, chaotic orbit analysis, resonance dynamics, tidal evolution, secular perturbation, long-term stability, escape velocity, interstellar capture, stellar ejection scenarios, planetary system scattering, free-floating object dynamics, hyperbolic object characterization, non-gravitational forces, radiation pressure effects, thermal recoil, Yarkovsky effect, jet-induced acceleration, cometary activity modeling, dust-gas interaction, gas drag modeling, activity onset prediction, rotational modulation, spin-state modeling, tumbling analysis, irregular shape modeling, density distribution, mass distribution, porosity estimation, material heterogeneity, regolith modeling, thermal conductivity estimation, heat transfer modeling, energy balance calculation, sublimation-driven dynamics, particle acceleration, dust trajectory simulation, observational constraints modeling, multi-wavelength correlation, photometric calibration, spectral calibration, noise reduction, error analysis, uncertainty quantification, sensitivity analysis, high-precision observation, real-time data processing, GPU-based computation, distributed computing, Dask, CUDA optimization, TensorFlow astrophysics, PyTorch modeling, open-source reproducibility, scientific workflow automation, reproducible simulations, cross-disciplinary collaboration, astrochemistry database, galactic chemical database, chemical evolution database, isotopic database, molecular database, interstellar survey, computational chemistry, cosmic simulation, predictive astrophysics, numerical modeling, orbital dynamics simulation, trajectory forecasting, composition prediction, origin prediction, interstellar object cataloging, rare object detection, anomaly identification, machine learning pipeline, deep learning pipeline, AI-driven astrochemistry, astroinformatics pipeline, high-precision astroinformatics, Zenodo indexing, academic visibility, global discoverability, cross-platform citation, interstellar research impact, celestial body characterization, interstellar exploration, astrochemical heritage, primordial material preservation, galactic chemical diversity, nucleosynthesis tracing, cosmic chemical pathways, pre-solar material analysis, stellar ejecta tracing, chemical fingerprinting, cosmic evolutionary model, interstellar sampling analogs, scientific data publication, robust metadata, dataset discoverability, cross-disciplinary indexing, citation optimization, high-impact publication, astrochemical precision, interstellar trajectory prediction, orbital reconstruction accuracy, numerical simulation fidelity, observational astronomy precision, spectroscopic measurement accuracy, chemical abundance mapping, isotopic composition analysis, cosmochemical modeling, astrochemical simulation, stellar origin tracing, interstellar transport modeling, high-fidelity computational model, Hamzah equation modeling, Hamzah ultra-precision, interstellar object analysis, 3I/ATLAS prediction, interstellar composition forecast, origin scenario modeling, galactic chemical tracing, astrochemical evolution prediction, planetary system comparison, cosmochemical validation, astrochemical pathway tracing, interstellar chemistry prediction, high-precision orbital modeling, trajectory dynamics forecast, astroinformatics-driven research, AI-enhanced astrochemistry, computational precision, predictive modeling, interdisciplinary astrochemistry, cosmic origin study, interstellar object classification, Hamzah model application, high-resolution astrochemistry, astrochemical simulation accuracy, trajectory evolution analysis, orbit stability modeling, rare object identification, hyperbolic orbit prediction, cosmochemical fingerprinting, interstellar origin hypothesis, multi-source data integration, real-time computation in astrophysics, astrochemical discovery, scientific reproducibility, interstellar material characterization, cosmochemical scenario simulation, predictive astrochemistry modeling, global scientific visibility, Zenodo-ready keywords
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Abstract The polymorphism of ice has been widely investigated over the last decades, and the results were found to be applicable over a wide range of terrestrial and extraterrestrial environments with recent findings also among the mineral inclusions entrapped…
datacite
Marras, G., Lu, Y., Stopponi, V., Tao, R. 等
2025
置信度 0.66
GeologyFOS: Earth and related environmental sciencesGeochemistry
-
Abstract The polymorphism of ice has been widely investigated over the last decades, and the results were found to be applicable over a wide range of terrestrial and extraterrestrial environments with recent findings also among the mineral inclusions entrapped…
datacite
Marras, G., Lu, Y., Stopponi, V., Tao, R. 等
2025
置信度 0.66
GeologyFOS: Earth and related environmental sciencesGeochemistry
-
Microbial communities developing on glacier and ice sheet surfaces decrease snow and ice albedo and enhance melting. The associated loss of global ice masses changes the proglacial landscapes worldwide and contribute to global sea-level rise. This is very pron…
datacite
Mourot, Rey
2024
置信度 0.66
MicrobiologyFOS: Biological sciencesglacier ecologycryo-SEMEarth sciences
-
Reflectance spectra properties are one of the most important information we can acquire from different bodies in the Solar System to classify them. A natural sampling of extraterrestrial material is represented by meteorites that can provide crucial informatio…
datacite
Societa Geologica Italiana 2021, Carli, Cristian
2021
置信度 0.66
CosmologyPhysical CosmologySolar SystemGeologyFOS: Earth and related environmental sciences
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Summary I. Introduction - The Lost Object and the Mission of Memory The irony of a manhole cover accidentally launched into space in 1957, and the solemnity of Voyager 1 intentionally launched in 1977, operate as symbolic poles of two technological civilisatio…
datacite
Teledyne FLIR (United States), CORONEL PALMA, DANIEL MORAES
2025
置信度 0.66
-
Summary I. Introduction - The Lost Object and the Mission of Memory The irony of a manhole cover accidentally launched into space in 1957, and the solemnity of Voyager 1 intentionally launched in 1977, operate as symbolic poles of two technological civilisatio…
datacite
Teledyne FLIR (United States), CORONEL PALMA, DANIEL MORAES
2025
置信度 0.66
-
Future human missions to the surface of the Moon and Mars will involve scientific exploration requiring new support tools to enable rapid and high quality science decision-making. Here, we provide the PANGAEA Mineralogical Database developed by the European Sp…
datacite
Francesco Sauro
2022
置信度 0.66
-
The rhenium-osmium (187Re-187Os) system is a highly versatile chronometer that is regularly applied to a wide range of geological and extraterrestrial materials. In addition to providing geo- or cosmo-chronological information, the Re-Os system can also be use…
datacite
Rooney, Alan D., Hnatyshin, Danny, Toma, Jonathan, Saintilan, Nicolas J. 等
2024
置信度 0.66
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Valentina Erastova EaSTCHEM School of Chemistry, University of Edinburgh, Scotland Group website: www.erastova.xyz Abstract: 'Where to land the next Mars rover?', and 'I found a peptide on a rocky planet - is it a sign of extraterrestrial life?' Within this ta…
datacite
erastova, valentina
2025
置信度 0.66
-
Valentina Erastova EaSTCHEM School of Chemistry, University of Edinburgh, Scotland Group website: www.erastova.xyz Abstract: 'Where to land the next Mars rover?', and 'I found a peptide on a rocky planet - is it a sign of extraterrestrial life?' Within this ta…
datacite
erastova, valentina
2025
置信度 0.66
-
As the next step in extraterrestrial exploration, many engineers and scientists around the country revealed their intense interest to enable multiplanetary human life, including colonizing Mars. This study proposes that architecture on Mars can be realized by …
datacite
Rokaya, Nisha, Carr, Erin C., Wilson, Richard A., Jin, Congrui
2025
置信度 0.66
Other Quantitative Biology (q-bio.OT)Materials Science (cond-mat.mtrl-sci)Cell Behavior (q-bio.CB)FOS: Biological sciencesFOS: Biological sciences
-
Abstract A novel method has been developed for compound-specific nitrogen isotope compositions with an achiral column which was previously shown to offer high precision for nitrogen isotopic analysis. We applied the method to determine the amino acid contents …
datacite
Chan, Queenie, Chikaraishi, Yoshito, Takano, Yoshinori, Ogawa, Nanako 等
2016
置信度 0.66
BiochemistryGeneticsFOS: Biological sciencesPhysiologyPharmacology
-
Abstract A novel method has been developed for compound-specific nitrogen isotope compositions with an achiral column which was previously shown to offer high precision for nitrogen isotopic analysis. We applied the method to determine the amino acid contents …
datacite
Chan, Queenie, Chikaraishi, Yoshito, Takano, Yoshinori, Ogawa, Nanako 等
2016
置信度 0.66
BiochemistryGeneticsFOS: Biological sciencesPhysiologyPharmacology
-
Future human missions to the surface of the Moon and Mars will involve scientific exploration requiring new support tools to enable rapid and high quality science decision-making. Here, we provide the PANGAEA Mineralogical Database developed by the European Sp…
datacite
Sauro, Francesco
2020
置信度 0.66
AstronauticsGeologyFOS: Earth and related environmental sciencesSpectroscopyMineralogy
-
In the Solar System, the saturnian moon Enceladus and the jovian moon Europa are potentially habitable and the most promising candidates for space missions searching for extraterrestrial life. The subsurface oceans of these moons constitute the long-lived pres…
datacite
Napoleoni, Maryse
2023
置信度 0.66
icy moonsmass spectrometryanaloguesplanetologyastrobiology
-
Laboratory-induced remanent magnetization of polar ice constitutes a measurement of the magnetization carried by the ferromagnetic dust particles in the ice. This non-destructive technique provides a novel kind of information on the dust deposited on the surfa…
datacite
Lanci, Luca, Delmonte, B., Kent, Dennis V., Maggi, V. 等
2012
置信度 0.66
GeophysicsFOS: Earth and related environmental sciences
-
The search for extraterrestrial life has just become more interesting as a group of scientists, including Southwest Research Institute's Dr. Christopher Glein, has discovered new evidence for a key building block for life in the subsurface ocean of Saturn's mo…
datacite
Eddy Gremmnert
2022
置信度 0.66
-
Abstract Zirconolite is an accessary mineral occurred in the lunar basaltic and granitic rocks and contains relatively high contents of U, Th, and Pb, which is attractive for age dating. However, very few studies have reported the crystallization ages of lunar…
datacite
Park, Changkun, Kim, Hwayoung
2024
置信度 0.66
GeologyFOS: Earth and related environmental sciencesGeochemistry
-
Abstract Zirconolite is an accessary mineral occurred in the lunar basaltic and granitic rocks and contains relatively high contents of U, Th, and Pb, which is attractive for age dating. However, very few studies have reported the crystallization ages of lunar…
datacite
Park, Changkun, Kim, Hwayoung
2024
置信度 0.66
GeologyFOS: Earth and related environmental sciencesGeochemistry
-
Abstract Hayabusa2 spacecraft successfully collected rock samples from the surface of C-type near-Earth asteroid 162173 Ryugu through two touchdowns and brought them back to Earth in 2020. At the Extraterrestrial Sample Curation Center in JAXA, we performed in…
datacite
Nakato, Aiko, Yada, Toru, Nishimura, Masahiro, Yogata, Kasumi 等
2024
置信度 0.66
GeologyFOS: Earth and related environmental sciences
-
Abstract Hayabusa2 spacecraft successfully collected rock samples from the surface of C-type near-Earth asteroid 162173 Ryugu through two touchdowns and brought them back to Earth in 2020. At the Extraterrestrial Sample Curation Center in JAXA, we performed in…
datacite
Nakato, Aiko, Yada, Toru, Nishimura, Masahiro, Yogata, Kasumi 等
2024
置信度 0.66
GeologyFOS: Earth and related environmental sciences
-
The lack of benchmark data on the real minerals, native ammonium carriers in Solar System gives rise to controversial opinions on extraterrestrial ammonium reservoirs. We herein report on discovery of the first mineral carrier of meteoritic ammonium and show i…
datacite
Britvin, Sergey N., Vereshchagin, Oleg S., Vlasenko, Natalia S., Krzhizhanovskaya, Maria G. 等
2024
置信度 0.66
Earth and Planetary Astrophysics (astro-ph.EP)Geophysics (physics.geo-ph)FOS: Physical sciencesFOS: Physical sciences
-
Pelagic clay and Mn nodules from DOMES sites in the North Pacific and a varved glacial lake deposit from Connecticut were analysed for Os concentration and isotopic composition by isotope-dilution secondary ion mass spectrometry after treatment by NiS fusion o…
datacite
Esser, Bradley K, Turekian, Karl K
1988
置信度 0.66
NOAA and MMS Marine Minerals Geochemical Database (NOAA-MMS)
-
The abundance and distribution of palladium, iridium and gold has been determined in manganese nodules from widely varying locations and geological environments within the Atlantic, Indian and Pacific Oceans. The distribution of these metals is characterized b…
datacite
Harriss, Robert C, Crocket, J H, Stainton, M
1968
置信度 0.66
Event labelIdentificationDEPTH, sediment/rockPalladiumIridium
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The 'phasma' database contains Raman and FTIR spectra from minerals of terrestrial and extraterestrial materials. It also contains spectra acquired from rock powder-organic mixtures of astrobiological interest (biosignatures)
datacite
Chatzitheodoridis, Elias, Profitis, Eleftherios
2021
置信度 0.66
databasespectrumspectraRamanFTIR
-
Pressures and temperatures in extraterrestrial rocky planets can reach up to 4 TPa and up to 9000 K, conditions that are hardly accessible with current experimental methods. This limitation leads to the problem of finding appropriate proxy compounds for high-p…
datacite
Bykov, Maxim, Jurzick, Pascal Lennert, Zhou, Wenju
2026
置信度 0.66
Earth SciencesES-1258ID11
-
Raman spectroscopy has gained popularity in planetary exploration over the last decade as an exceptionally versatile non-destructive compositional analysis technique that can identify a vast spectrum of molecules including both minerals and biomolecules, and p…
datacite
Vitkova, Ariana Barbora
2023
置信度 0.66
-
On Mars, observations and research has shown the presence of underground conduits of volcanic origin known as “pyroducts” or “lava tubes”, which are also present on Earth and Moon. Despite the highly astrobiological and geological importance, channelled underg…
datacite
Romio, Francesco Axel Pio
2022
置信度 0.66
Lava tubesPlanetary CavesUnderground settlementLava tube settlementsSpace Architecture
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On Mars, observations and research has shown the presence of underground conduits of volcanic origin known as “pyroducts” or “lava tubes”, which are also present on Earth and Moon. Despite the highly astrobiological and geological importance, channelled underg…
datacite
Romio, Francesco Axel Pio
2022
置信度 0.66
Lava tubesPlanetary CavesUnderground settlementLava tube settlementsSpace Architecture
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Cometary dust particles are best preserved remnants of the matter present at the onset of the formation of the Solar System. Space missions, telescopic observations and laboratory analyses advanced the knowledge on the properties of cometary dust. Cometary sam…
datacite
Engrand, Cecile, Lasue, Jérémie, Wooden, Diane H., Zolensky, Mike E.
2023
置信度 0.66
Earth and Planetary Astrophysics (astro-ph.EP)FOS: Physical sciencesFOS: Physical sciences
-
Standard-size samples are usually used for traditional paleomagnetic study. In some cases, small irregular samples are employed considering their amount and magnetic strength as well as experiment efficiency. With the development of deep space exploration, the…
datacite
Yifei, Hou, Shuhui, Cai
2023
置信度 0.66
small rare samplescustomized holdersmagnetic measurementspaleointensitylunar meteorite
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Standard-size samples are usually used for traditional paleomagnetic study. In some cases, small irregular samples are employed considering their amount and magnetic strength as well as experiment efficiency. With the development of deep space exploration, the…
datacite
Yifei, Hou, Shuhui, Cai
2023
置信度 0.66
small rare samplescustomized holdersmagnetic measurementspaleointensitylunar meteorite
-
Future human missions to the surface of the Moon and Mars will involve scientific exploration requiring new support tools to enable rapid and high quality science decision-making. Here, we provide the PANGAEA Mineralogical Database developed by the European Sp…
datacite
Francesco Sauro
2022
置信度 0.66
-
Das Metalle mobilisierende Archaeon Metallosphaera sedula wächst und vermehrt sich unter extremen Bedingungen (73°C, pH 2) während es dabei u.a. metallhaltige Substrate wie Mineralien transformiert. Eine erstaunliche physiologische Vielseitigkeit erlaubt es di…
datacite
Kölbl, Denise
2019
置信度 0.66
-
Transition metal sulfides (Fe, V)3S4 and (Fe, Ti)3S4, with the monoclinic Cr3S4 type structure have been studied for a long time, itinerant magnetism in form of Spin density waves (SDW) have been found in these systems with different features as evidenced by 5…
openalex
Embaid, B. P., B.P. Embaid
2022
置信度 0.72
Materials Science (cond-mat.mtrl-sci)FOS: Physical sciencesMeteoriteMineralSuperconductivity
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We provide detailed background, theoretical and practical, on the specific heat cp of minerals and mixtures thereof, 'astro-materials', as well as background information on common minerals and other relevant solid substances found on the surfaces of solar syst…
datacite
Biele, Jens, Grott, Matthias, Zolensky, Michael E., Benisek, Artur 等
2022
置信度 0.66
Earth and Planetary Astrophysics (astro-ph.EP)Materials Science (cond-mat.mtrl-sci)Classical Physics (physics.class-ph)Geophysics (physics.geo-ph)FOS: Physical sciences
-
Clouds of sand can consolidate, develop and vanish in a few extraterrestrial atmospheres. Another gander at old information shows that clouds made of hot silicate minerals are common in heavenly items known as brown dwarfs. "This is the main full relevant unde…
datacite
, Anthony
2022
置信度 0.66
-
Clouds of sand can consolidate, develop and vanish in a few extraterrestrial atmospheres. Another gander at old information shows that clouds made of hot silicate minerals are common in heavenly items known as brown dwarfs. "This is the main full relevant unde…
datacite
, Anthony
2022
置信度 0.66
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Das Ziel dieser Doktorarbeit ist die Identifizierung der Ursache der Deglaziation der neoproterozoischen "Schneeball Erde" Ereignisse ("Sturtian" ~750Ma, "Marinoan" ~635 Ma). Das bearbeitete Gebiet befindet sich in der Otavi-Gruppe in NW-Namibia. Die Proben wu…
datacite
Gyollai, Ildiko
2014
置信度 0.66
-
Der ICDP-USGS Eyreville Bohrkern wurde in den Jahren 2005-2006 im zentralen Graben der spät-Eozänen Chesapeake Bay Impaktstruktur, nahe der Eyreville Farm (Northampton County, Virginia, USA) erbohrt. Die vorliegende Dissertation präsentiert petrografische und …
datacite
Bartosova, Katerina
2010
置信度 0.66
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Abstract The enrichment of platinum (Pt) in marine ferromanganese (FeMn) deposits has attracted persistent interest for over half a century; yet the chemical form of Pt remains unclear. Here, we collected Pt-enriched FeMn crusts and nodules from the world’s oc…
europepmc
2026
置信度 0.80
-
Abstract Hayabusa2 spacecraft successfully collected rock samples through two touchdowns from the surface of C-type near-Earth asteroid 162173 Ryugu and brought them back to Earth in 2020. At the Extraterrestrial Sample Curation Center in JAXA, we performed in…
preprints
2022
置信度 0.74
-
Abstract We developed universal sample holders (the Kochi grid, Kochi clamp, and Okazaki cell) and a transfer vessel (facility-to-facility transfer container (FFTC)) to analyze sensitive and fragile samples, such as extremely small extraterrestrial materials. …
preprints
2020
置信度 0.74
-
Abstract C-type asteroids likely formed in the outer Solar System and were then scattered inwards during giant planet migration (Walsh et al., 2011). They may have transported volatiles to the inner Solar System and created the conditions suitable for life on …
preprints
2022
置信度 0.74
-
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Abstract What freedoms can people expect in space and how will governance beyond Earth tread the fine line between authority and liberty? In this multi-author book, the contributors consider all aspects of liberty beyond Earth, from the near term: freedom to c…
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crossref
2023-09-19T14:13:10Z
置信度 0.70