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Copernican-aged (<200 Ma) Impact Ejecta at the Chang'e-5 Landing Site: Statistical Evidence from Crater Morphology, Morphometry and Degradation Models

Authors: Qian, Yuqi; Xiao, Long; Head, James W.; W��hler, Christian; Bugiolacchi, Roberto; Wilhelm, Thorsten; Althoff, Stephanie; +4 Authors

Copernican-aged (<200 Ma) Impact Ejecta at the Chang'e-5 Landing Site: Statistical Evidence from Crater Morphology, Morphometry and Degradation Models

Abstract

Data for: Copernican-aged (<200 Ma) Impact Ejecta at the Chang���e-5 Landing Site: Statistical Evidence from Crater Morphology, Morphometry and Degradation Models Data List: [1] "CE5_CSFD_Distal Crater.7z": crater size-frequency distribution measurements of distal craters (Fig. S10, S11, S12) [2] "CE5_Impact Crater_Degradation Age_Model 1.7z": crater degradation model 1 results (Text S2) [3] "CE5_Kappa_Local CSFD.7z": local calibrated crater diffusion rate for crater degradation model 4/4'/5/5' (Text S2, Fig. S7) [4] "CE5_NAC DEM.7z": LROC NAC DEM produced by a shape from shading-based method (Section 2.1) [5] "CE5_Regolith Thickness.7z": Regolith thickness of the CE-5 landing site based on the small fresh crater (<250 m) morphologies [6] "CE5_Topographic Profile.7z": Topographical profile for investigated impact craters [7] "Supporting Information (09-27-21).docx": Supporting Information [8] "Supporting Information_Table (09-21-21).xlsx": Tables of Supporting Information, including Table S1 to Table S10. Contact Yuqi Qian (yuqi_qian@cug.edu.cn, yuqii.qian@gmail.com) School of Earth Sciences China University of Geosciences, Wuhan, China

{"references": ["Qian, Y., Xiao, L., Head, J.W., W\u00f6hler, C., Bugiolacchi, R., Wilhelm, T., Althoff, S., Ye, B., He, Q., Yuan, Y., Zhao, S., 2021. Copernican-Aged (<200 Ma) Impact Ejecta at the Chang'e-5 Landing Site: Statistical Evidence From Crater Morphology, Morphometry, and Degradation Models. Geophys. Res. Lett. 48, e2021GL095341. https://doi.org/10.1029/2021GL095341"]}

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Impact Crater, Chang'e-5, Planetary Geology

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This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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