Çalışkanlık Yakıcılar imitasyon dolomite calcite vnir Uygun kol panik
Hyperspectral remote sensing in lithological mapping, mineral exploration, and environmental geology: an updated review
How GeoSpectral Imaging™ works - TerraCore
ASTER and WorldView-3 satellite data for mapping lithology and alteration minerals associated with Pb-Zn mineralization
Shortwave infrared hyperspectral imaging as a novel method to elucidate multi-phase dolomitization, recrystallization, and cementation in carbonate sedimentary rocks | Scientific Reports
VNIR spectra of gypsum/dolomite mixtures. Gypsum features are clearly... | Download Scientific Diagram
Laboratory reflectance spectra of hydrothermally altered carbonate facies, Pine Point mining camp, NWT, Canada | Geochemistry: Exploration, Environment, Analysis
a) Standard spectra from the USGS library in the VNIR and SWIR from... | Download Scientific Diagram
Identification of hydrothermal altered/weathered and clay minerals through airborne AVIRIS-NG hyperspectral data in Jahajpur, In
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
Investigation of spectral characteristics of carbonate rocks – A case study on Posht Moleh Mount in Iran
A New Band Ratio Approach for Discriminating Calcite and Dolomite by ASTER Imagery in Arid and Semiarid Regions | SpringerLink
PDF] Spectral reflectance of-carbonate minerals in the visible and near infrared (0.35-2.55 microns): calcite, aragonite, and dolomite | Semantic Scholar
Identification and composition of carbonate minerals of the calcite structure by Raman and infrared spectroscopies using portable devices - ScienceDirect
PDF] Spectral reflectance of-carbonate minerals in the visible and near infrared (0.35-2.55 microns): calcite, aragonite, and dolomite | Semantic Scholar
Spectral features of calcite, dolomite, gypsum and anhydrite in the... | Download Scientific Diagram
Characterisation of carbonate minerals from hyperspectral TIR scanning using features at 14 000 and 11 300 nm
A New Band Ratio Approach for Discriminating Calcite and Dolomite by ASTER Imagery in Arid and Semiarid Regions | SpringerLink
ASTER mineral mapping examples
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/dolomite mixtures. Gypsum features are clearly... | Download Scientific Diagram
PDF] Spectral reflectance of-carbonate minerals in the visible and near infrared (0.35-2.55 microns): calcite, aragonite, and dolomite | Semantic Scholar
ASTER spectral sensitivity of carbonate rocks – Study in Sultanate of Oman - ScienceDirect
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
Characterisation of carbonate minerals from hyperspectral TIR scanning using features at 14 000 and 11 300 nm
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
Calcite, dolomite, gypsum, illite, and kaolinite spectra from USGS... | Download Scientific Diagram