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VNIR SPECTRA OF GYPSUM-RICH FIELD SAMPLES FROM WHITE SANDS NEW MEXICO AS AN  ANALOG STUDY FOR OLYUMPUS UNDAE, MARS. S. J. King1,
VNIR SPECTRA OF GYPSUM-RICH FIELD SAMPLES FROM WHITE SANDS NEW MEXICO AS AN ANALOG STUDY FOR OLYUMPUS UNDAE, MARS. S. J. King1,

Tracing Carbonate Formation, Serpentinization, and Biological Materials  With Micro‐/Meso‐Scale Infrared Imaging Spectroscopy in a Mars Analog  System, Samail Ophiolite, Oman - Leask - 2021 - Earth and Space Science -  Wiley Online Library
Tracing Carbonate Formation, Serpentinization, and Biological Materials With Micro‐/Meso‐Scale Infrared Imaging Spectroscopy in a Mars Analog System, Samail Ophiolite, Oman - Leask - 2021 - Earth and Space Science - Wiley Online Library

Remote Sensing | Free Full-Text | Application of Landsat-8, Sentinel-2,  ASTER and WorldView-3 Spectral Imagery for Exploration of Carbonate-Hosted  Pb-Zn Deposits in the Central Iranian Terrane (CIT) | HTML
Remote Sensing | Free Full-Text | Application of Landsat-8, Sentinel-2, ASTER and WorldView-3 Spectral Imagery for Exploration of Carbonate-Hosted Pb-Zn Deposits in the Central Iranian Terrane (CIT) | HTML

Remote Sensing | Free Full-Text | Application of ASTER Data for  Differentiating Carbonate Minerals and Evaluating MgO Content of Magnesite  in the Jiao-Liao-Ji Belt, North China Craton | HTML
Remote Sensing | Free Full-Text | Application of ASTER Data for Differentiating Carbonate Minerals and Evaluating MgO Content of Magnesite in the Jiao-Liao-Ji Belt, North China Craton | HTML

HySpex (@HySpexNEO) / Twitter
HySpex (@HySpexNEO) / Twitter

A New Band Ratio Approach for Discriminating Calcite and Dolomite by ASTER  Imagery in Arid and Semiarid Regions | SpringerLink
A New Band Ratio Approach for Discriminating Calcite and Dolomite by ASTER Imagery in Arid and Semiarid Regions | SpringerLink

Characterisation of carbonate minerals from hyperspectral TIR scanning  using features at 14 000 and 11 300 nm
Characterisation of carbonate minerals from hyperspectral TIR scanning using features at 14 000 and 11 300 nm

PDF] Spectral reflectance of-carbonate minerals in the visible and near  infrared (0.35-2.55 microns): calcite, aragonite, and dolomite | Semantic  Scholar
PDF] Spectral reflectance of-carbonate minerals in the visible and near infrared (0.35-2.55 microns): calcite, aragonite, and dolomite | Semantic Scholar

Chapter TOC 1 2 3 4_5_6_7_8 nopics_refs_appendix
Chapter TOC 1 2 3 4_5_6_7_8 nopics_refs_appendix

Thermal Infrared Hyperspectral Imaging for Mineralogy Mapping of a Mine Face
Thermal Infrared Hyperspectral Imaging for Mineralogy Mapping of a Mine Face

Laboratory reflectance spectra of hydrothermally altered carbonate facies,  Pine Point mining camp, NWT, Canada | Geochemistry: Exploration,  Environment, Analysis
Laboratory reflectance spectra of hydrothermally altered carbonate facies, Pine Point mining camp, NWT, Canada | Geochemistry: Exploration, Environment, Analysis

VNIR spectra of gypsum/dolomite mixtures. Gypsum features are clearly... |  Download Scientific Diagram
VNIR spectra of gypsum/dolomite mixtures. Gypsum features are clearly... | Download Scientific Diagram

VNIR spectra of gypsum/dolomite mixtures. Gypsum features are clearly... |  Download Scientific Diagram
VNIR spectra of gypsum/dolomite mixtures. Gypsum features are clearly... | Download Scientific Diagram

Visible and Near-Infrared Reflectance Spectroscopy (Chapter 4) - Remote  Compositional Analysis
Visible and Near-Infrared Reflectance Spectroscopy (Chapter 4) - Remote Compositional Analysis

Spectral features of calcite, dolomite, gypsum and anhydrite in the... |  Download Scientific Diagram
Spectral features of calcite, dolomite, gypsum and anhydrite in the... | Download Scientific Diagram

Field-Portable VNIR Spectrometry: Applications for Mars Rover Operational  Strategies Testing at Terrestrial Analog Sites
Field-Portable VNIR Spectrometry: Applications for Mars Rover Operational Strategies Testing at Terrestrial Analog Sites

a) Standard spectra from the USGS library in the VNIR and SWIR from... |  Download Scientific Diagram
a) Standard spectra from the USGS library in the VNIR and SWIR from... | Download Scientific Diagram

Visible and Near-Infrared Reflectance Spectroscopy (Chapter 4) - Remote  Compositional Analysis
Visible and Near-Infrared Reflectance Spectroscopy (Chapter 4) - Remote Compositional Analysis

How GeoSpectral Imaging™ works - TerraCore
How GeoSpectral Imaging™ works - TerraCore

PDF] Spectral reflectance of-carbonate minerals in the visible and near  infrared (0.35-2.55 microns): calcite, aragonite, and dolomite | Semantic  Scholar
PDF] Spectral reflectance of-carbonate minerals in the visible and near infrared (0.35-2.55 microns): calcite, aragonite, and dolomite | Semantic Scholar

Visible and Near-Infrared Reflectance Spectroscopy (Chapter 4) - Remote  Compositional Analysis
Visible and Near-Infrared Reflectance Spectroscopy (Chapter 4) - Remote Compositional Analysis

A New Band Ratio Approach for Discriminating Calcite and Dolomite by ASTER  Imagery in Arid and Semiarid Regions | SpringerLink
A New Band Ratio Approach for Discriminating Calcite and Dolomite by ASTER Imagery in Arid and Semiarid Regions | SpringerLink

ASTER mineral mapping examples
ASTER mineral mapping examples

Investigation of spectral characteristics of carbonate rocks – A case study  on Posht Moleh Mount in Iran
Investigation of spectral characteristics of carbonate rocks – A case study on Posht Moleh Mount in Iran

Mineral Identification and Mapping by Synthesis of Hyperspectral VNIR/SWIR  and Multispectral TIR Remotely Sensed Data With Diffe
Mineral Identification and Mapping by Synthesis of Hyperspectral VNIR/SWIR and Multispectral TIR Remotely Sensed Data With Diffe

Investigation of spectral characteristics of carbonate rocks – A case study  on Posht Moleh Mount in Iran
Investigation of spectral characteristics of carbonate rocks – A case study on Posht Moleh Mount in Iran

VNIR SPECTRA OF GYPSUM-RICH FIELD SAMPLES FROM WHITE SANDS NEW MEXICO AS AN  ANALOG STUDY FOR OLYUMPUS UNDAE, MARS. S. J. King1,
VNIR SPECTRA OF GYPSUM-RICH FIELD SAMPLES FROM WHITE SANDS NEW MEXICO AS AN ANALOG STUDY FOR OLYUMPUS UNDAE, MARS. S. J. King1,