Hyperspectral Remote Sensing And Mineral Exploration

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Airborne Hyperspectral Remote Sensing For Northern Mineral
airborne hyperspectral remote sensing for northern mineral
•  •  •  •  •  •  •  •  Clays: Kaolinite, Dickite, Halloysite, Pyrophyllite, Illite-Smectite, Montmorillionite Micas: White mica (Sericite), Illite, Phengite, Muscovite, Paragonite, Biotite, Phlogopite, Pyrophyllite, etc. Chlorites: Variations in Fe, Mg content Other Phyllosilicates: Serpentines (Lizardite, Antigorite), Fuchsite, Talc, Nontronite Amphiboles: Tremolite, Hornblende, Actinolite, Anthophyllite Carbonates: Calcite, Dolomite, Ankerite, Siderite Sulphates: Alunite, Jarosite, Gypsum Tourmaline: Fe.

Language: english
PDF pages: 63, PDF size: 5.45 MB
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Integrated Use Of Remote Sensing And Gis For Mineral Exploration
integrated use of remote sensing and gis for mineral exploration
. and hyperspectral, remotely sensed data to identify extensional geologic structures (accommodation zones) associated with precious/base metal deposition. In most cases, current mineral exploration concepts have failed to recognize the association of mineralization with unique extensional structures called accommodation. zones show little obvious deformation, yet focus fluid migration and mineralization into predictable regions of the crust. The Mesquite gold mine.

Language: english
PDF pages: 31, PDF size: 2.96 MB
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Geobotanical Remote Sensing For Geothermal Exploration
geobotanical remote sensing for geothermal exploration
DISCLAIMER This document was prepared as an account of work sponsored by an agency of the United States Government. Neither the United States Government nor the University of California nor any of their employees, makes any warranty, express or implied, or assumes any legal liability or responsibility for the accuracy, completeness, or usefulness of any information, apparatus, product, or process disclosed, or represents that its use would not infringe privately owned rights. Reference herein to any .

Language: english
PDF pages: 12, PDF size: 0.78 MB
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Geobotanical Remote Sensing For Geothermal Exploration
geobotanical remote sensing for geothermal exploration
DISCLAIMER This document was prepared as an account of work sponsored by an agency of the United States Government. Neither the United States Government nor the University of California nor any of their employees, makes any warranty, express or implied, or assumes any legal liability or responsibility for the accuracy, completeness, or usefulness of any information, apparatus, product, or process disclosed, or represents that its use would not infringe privately owned rights. Reference herein to any .

Language: english
PDF pages: 12, PDF size: 0.78 MB
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Hyperspectral Remote Sensing Of Tropical And - Untitled
hyperspectral remote sensing of tropical and - untitled
. motivation for this book is to illustrate the potential for hyperspectral remote sensing to provide tools and information to infer and assess ecosystem., and Hawaii. In the broad field of remote sensing from the Earth and planetary sciences, hyperspectral sensors and data are a relatively new. they have been applied in other environments for forestry, agricultural, mineral exploration, and geologic applications; in the tropics, however, they are still. complex and unique set of challenges to the use of hyperspectral data, also offers an ideal environment to develop, test, and.

Language: english
PDF pages: 350, PDF size: 12.31 MB
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