Matches in SemOpenAlex for { <https://semopenalex.org/work/W2012962991> ?p ?o ?g. }
- W2012962991 abstract "The main objective of this work is to quantify lunar surface minerals (agglutinate, clinopyroxene, orthopyroxene, plagioclase, olivine, ilmenite, and volcanic glass), particle sizes, and the abundance of submicroscopic metallic Fe (SMFe) from the Lunar Soil Characterization Consortium (LSCC) data set with Hapke's radiative transfer theory. The mode is implemented for both forward and inverse modeling. We implement Hapke's radiative transfer theory in the inverse mode in which, instead of commonly used look‐up tables, Newton's method and least squares are jointly used to solve nonlinear questions. Although the effects of temperature and surface roughness are incorporated into the implementation to improve the model performance for application of lunar spacecraft data, these effects cannot be extensively addressed in the current work because of the use of lab‐measured reflectance data. Our forward radiative transfer model results show that the correlation coefficients between modeled and measured spectra are over 0.99. For the inverse model, the distribution of the particle sizes is all within their measured range. The range of modeled SMFe for highland samples is 0.01%–0.5%, and for mare samples it is 0.03%–1%. The linear trend between SMFe and ferromagnetic resonance ( I s ) for all the LSCC samples is consistent with laboratory measurements. For quantifying lunar mineral abundances, the results show that the R squared for the training samples ( I s /FeO ≤ 65) are over 0.65 with plagioclase having highest correlation (0.94) and pyroxene having the lowest correlation (0.68). In future work, the model needs to be improved for handling more mature lunar soil samples." @default.
- W2012962991 created "2016-06-24" @default.
- W2012962991 creator A5058965019 @default.
- W2012962991 creator A5065912071 @default.
- W2012962991 date "2011-09-01" @default.
- W2012962991 modified "2023-10-16" @default.
- W2012962991 title "Radiative transfer modeling for quantifying lunar surface minerals, particle size, and submicroscopic metallic Fe" @default.
- W2012962991 cites W1968791477 @default.
- W2012962991 cites W1968959950 @default.
- W2012962991 cites W1975519699 @default.
- W2012962991 cites W1983335724 @default.
- W2012962991 cites W2001650396 @default.
- W2012962991 cites W2005669108 @default.
- W2012962991 cites W2005809052 @default.
- W2012962991 cites W2013061579 @default.
- W2012962991 cites W2014701900 @default.
- W2012962991 cites W2019038438 @default.
- W2012962991 cites W2022135581 @default.
- W2012962991 cites W2022265591 @default.
- W2012962991 cites W2024253773 @default.
- W2012962991 cites W2033910357 @default.
- W2012962991 cites W2036705883 @default.
- W2012962991 cites W2050995994 @default.
- W2012962991 cites W2051642660 @default.
- W2012962991 cites W2063982265 @default.
- W2012962991 cites W2068505887 @default.
- W2012962991 cites W2069497534 @default.
- W2012962991 cites W2075818045 @default.
- W2012962991 cites W2076084792 @default.
- W2012962991 cites W2078222544 @default.
- W2012962991 cites W2081085736 @default.
- W2012962991 cites W2087389072 @default.
- W2012962991 cites W2088989398 @default.
- W2012962991 cites W2090504047 @default.
- W2012962991 cites W2092391376 @default.
- W2012962991 cites W2093527402 @default.
- W2012962991 cites W2100111061 @default.
- W2012962991 cites W2101788954 @default.
- W2012962991 cites W2102245049 @default.
- W2012962991 cites W2111631716 @default.
- W2012962991 cites W2117166608 @default.
- W2012962991 cites W2117658523 @default.
- W2012962991 cites W2123844076 @default.
- W2012962991 cites W2125216406 @default.
- W2012962991 cites W2132549322 @default.
- W2012962991 cites W2149459532 @default.
- W2012962991 cites W2161170517 @default.
- W2012962991 cites W2165205664 @default.
- W2012962991 cites W2166727222 @default.
- W2012962991 cites W2166981870 @default.
- W2012962991 cites W612879516 @default.
- W2012962991 doi "https://doi.org/10.1029/2011je003837" @default.
- W2012962991 hasPublicationYear "2011" @default.
- W2012962991 type Work @default.
- W2012962991 sameAs 2012962991 @default.
- W2012962991 citedByCount "34" @default.
- W2012962991 countsByYear W20129629912012 @default.
- W2012962991 countsByYear W20129629912013 @default.
- W2012962991 countsByYear W20129629912015 @default.
- W2012962991 countsByYear W20129629912016 @default.
- W2012962991 countsByYear W20129629912017 @default.
- W2012962991 countsByYear W20129629912019 @default.
- W2012962991 countsByYear W20129629912020 @default.
- W2012962991 countsByYear W20129629912021 @default.
- W2012962991 countsByYear W20129629912022 @default.
- W2012962991 countsByYear W20129629912023 @default.
- W2012962991 crossrefType "journal-article" @default.
- W2012962991 hasAuthorship W2012962991A5058965019 @default.
- W2012962991 hasAuthorship W2012962991A5065912071 @default.
- W2012962991 hasConcept C120665830 @default.
- W2012962991 hasConcept C121332964 @default.
- W2012962991 hasConcept C127313418 @default.
- W2012962991 hasConcept C159985019 @default.
- W2012962991 hasConcept C192562407 @default.
- W2012962991 hasConcept C199289684 @default.
- W2012962991 hasConcept C199390426 @default.
- W2012962991 hasConcept C2777139587 @default.
- W2012962991 hasConcept C2778998827 @default.
- W2012962991 hasConcept C2779181077 @default.
- W2012962991 hasConcept C2779870107 @default.
- W2012962991 hasConcept C2780364934 @default.
- W2012962991 hasConcept C2780375929 @default.
- W2012962991 hasConcept C30475298 @default.
- W2012962991 hasConcept C74902906 @default.
- W2012962991 hasConceptScore W2012962991C120665830 @default.
- W2012962991 hasConceptScore W2012962991C121332964 @default.
- W2012962991 hasConceptScore W2012962991C127313418 @default.
- W2012962991 hasConceptScore W2012962991C159985019 @default.
- W2012962991 hasConceptScore W2012962991C192562407 @default.
- W2012962991 hasConceptScore W2012962991C199289684 @default.
- W2012962991 hasConceptScore W2012962991C199390426 @default.
- W2012962991 hasConceptScore W2012962991C2777139587 @default.
- W2012962991 hasConceptScore W2012962991C2778998827 @default.
- W2012962991 hasConceptScore W2012962991C2779181077 @default.
- W2012962991 hasConceptScore W2012962991C2779870107 @default.
- W2012962991 hasConceptScore W2012962991C2780364934 @default.
- W2012962991 hasConceptScore W2012962991C2780375929 @default.
- W2012962991 hasConceptScore W2012962991C30475298 @default.
- W2012962991 hasConceptScore W2012962991C74902906 @default.
- W2012962991 hasIssue "E9" @default.