Y. Zheng, S. Wang, Z. Ouyang, Y. Zou, J. Liu, C. Li, X. Li, J. Feng | 2009 | Advances in Space Research
DOI 10.1016/j.asr.2008.07.006Review state
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Last approved reanalysis
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The paper describes the development of CAS-1 lunar soil simulant, based on Apollo 14 lunar soil composition, using a low-Ti basaltic scoria from the Changbai Mountains. It matches Apollo 14 in bulk density, shear resistance, complex permittivity, and reflectance spectra. CAS-1 is intended for lunar exploration research. The provided text appears to be a series of URLs and file paths related to images and thumbnails, likely from a document or article hosted on a website. The URLs seem to be part of a content delivery network (CDN) or a media storage system, with references to different image sizes (e.g., 'jpg' and 'sml' for small thumbnails). There is no visible text content or meaningful data in the provided text, and it does not contain any identifiable information about the subject matter of the document or article. The text is primarily technical in nature, focusing on file paths and image handling. u-west-1.amazonaws.com/prod-ucs-content-store-eu-west/content/pii:S0273117708003876/gr9/DOWNSAMPLED/image/jpeg/d1c98232e9945e895d06d5fdf40b3e72/gr9.jpg gr9 gr9.jpg jpg 26156 265 353 IMAGE-DOWNSAMPLED https://s3.amazonaws.com/prod-ucs-content-store-us-east/content/pii:S027311770800387
These are the records this paper contributes to the simulant, returned sample, method, and property browsers.
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XRF
chemical analysis
chemical analysis
ICP-MS
mineralogy
SEM
physical characteristics
shear resistance
complex permittivity
frequency domain
reflectance spectra
spectral analysis
Properties of lunar soil simulant JSC-1
characterization
Properties of lunar soil simulant manufactured in Japan
characterization
median particle size
85.9 m
bulk density
similar to Apollo 14 soil
shear resistance
similar to Apollo 14 soil
complex permittivity
similar to Apollo 14 soil
reflectance spectra
similar to Apollo 14 soil
chemical composition
resembles trachybasalt
mineral composition
pyroxene, olivine, plagioclase, glass
particle size
85.9 m