Zugriffe | |
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Geosciences | 696 |
August 2024 | September 2024 | Oktober 2024 | November 2024 | Dezember 2024 | Januar 2025 | Februar 2025 | |
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Geosciences | 28 | 21 | 23 | 26 | 19 | 26 | 24 |
Zugriffe | |
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Replication data for: Planetary impacts: effects of the impact speed on the crater depth | 170 |
Replication Data for: Chromium Stable Isotope Panorama of Chondrites and Implications for Earth Early Accretion | 170 |
Replication Data for: Silicon and iron isotopes in components of enstatite chondrites: Implications for metal–silicate–sulfide fractionation in the solar nebula | 162 |
Replication Data for: Sulfides and hollows formed on Mercury's surface by reactions with reducing S-rich gases | 152 |
Replication Data for: Onset of plate motion in the presence of chemical heterogeneities in the mantle and the effect of mantle temperature | 139 |
Replication Data for: A possible high-temperature origin of the Moon and its geochemical consequences. | 138 |
Replication Data for: Chlorine and hydrogen degassing in Vesta’s magma ocean | 137 |
Replication Data for: Overturn of Ilmenite-Bearing Cumulates in a Rheologically Weak Lunar Mantle | 133 |
Replication Data for: What Factors Affect the Duration and Outgassing of the Terrestrial Magma Ocean? | 130 |
Reproduction Data for: Moderately volatile elements in chondrites record chondrule formation, two component mixing and redistribution on parent bodies | 129 |
Replication Data for: Insights into the formation of silica-rich achondrites from impact melts in Rumuruti-type chondrites. | 123 |
Replication Data for: Impact-related crystallization and modification of small zircons in Apollo 15 and 16 impactites at 4.2 Ga | 120 |
Replication Data for: A New Tool to Account for Crater Obliteration Effects in Crater Size-Frequency Distribution Measurements | 116 |
Replication Data for: The Diverse Planetary Ingassing/Outgassing Paths Produced over Billions of Years of Magmatic Activity | 112 |
Replication Data for: 3D-simulation of Lunar Megaregolith Evolution: Quantitative Constraints on Spatial Variation and Size of Fragment | 112 |
Replication Data for: Experimental and petrological investigations into the origin of the lunar Chang'e 5 basalts | 111 |
Replication Data for: The effect of target properties on transient crater scaling for simple craters. | 110 |
Presentation Slides Data Management Plan (DMP) | 110 |
Replication Data for: In situ Si isotope and chemical constraints on formation and processing of chondrules in the Allende meteorite | 107 |
Lunar Sulfur Data Compilation | 107 |
Dezember 2024 | Januar 2025 | Februar 2025 | |
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Replication Data for: Cadmium isotope fractionation and neutron capture effects in lunar samples | 26 | 26 | 17 |
Replication Data for: Blaubeuren, Cloppenburg, and Machtenstein—Three recently recognized H-group chondrite finds in Germany with distinct terrestrial ages and weathering effects | 18 | 22 | 17 |
Mass fractions of siderophile elements, Sm and Ba in lunar high-Ti mare basalts by ID-ICP-MS | 18 | 19 | 15 |
Replication Data for: Geological mapping and chronology of lunar landing sites: Apollo 12 | 15 | 20 | 13 |
Replication Data for: Early evolution of the solar accretion disk inferred from Cr-Ti-O isotopes in individual chondrules | 15 | 20 | 13 |
Replication Data for: Formation of simple impact craters in layered targets: Implications for lunar crater morphology and regolith thickness. | 22 | 16 | 10 |
Replication Data for: Double-diffusive layering during the evolution of planetary mantles | 11 | 18 | 17 |
Replication Data for: Formation of diamond and lonsdaleite in ureilites by impact shock processing of graphite | 12 | 21 | 13 |
Replication Data for: Classification of CM chondrite breccias – Implications for the evaluation of samples from the OSIRIS REx and Hayabusa 2 missions. | 11 | 17 | 18 |
Replication Data for: A possible high-temperature origin of the Moon and its geochemical consequences. | 32 | 9 | 3 |