Infrared Measurements of Pristine and Disturbed Soils 1. Spectral Contrast Differences between Field and Laboratory Data
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- Type
- article
- Published
- 1998-04-01
- Cited by
- 67
- References
- 15
- OpenAlex
- https://openalex.org/W1970667970
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:128536581
Keywords
Soil water, Spectral line, Porosity, Emissivity, Mineralogy
References
- Infrared (2.1-25 μm) spectra of minerals
- Mapping Playa Evaporite Minerals and Associated Sediments in Death Valley, California, with
- The role of volume scattering in reducing spectral contrast of reststrahlen bands in spectra of powdered minerals
- Midinfrared (2.5–13.5 μm) reflectance spectra of powdered stony meteorites
- The micro Fourier Transform Interferometer (μFTIR) : A new field spectrometer for acquisition of infrared data of natural surfaces
- Compositional Implications of Christiansen Frequency Maximums for Infrared Remote Sensing Applications
- Thermal infrared spectra and images of altered volcanic rocks in the Virginia Range, Nevada
- Mapping the Piute Mountains, California, with thermal infrared multispectral scanner (TIMS) images
- Infrared (8–14 μm) remote sensing of soil particle size
- Experiments to support the development of techniques for hyperspectral mine detection
- Infrared Measurements of Pristine and Disturbed Soils 2. Environmental Effects and Field Data Reduction
- Thermal‐infrared remote sensing and Kirchhoff's law: 1. Laboratory measurements
- Measured effects of desert varnish on the mid-infrared spectra of weathered rocks as an aid to TIMS imagery interpretation
- Portable Fourier transform infrared spectroradiometer for field measurements of radiance and emissivity.
Cited by
- Evaluation of airborne thermal-infrared image data for monitoring aquatic habitats and cultural resources within the Grand Canyon
- Signature simulation of mixed materials
- Part I. From the Lab to the Field - Recent Developments in Polymer Coated ATR Sensing for the Determination of Volatile Organic Compounds ; Part II. From the Field to the Lab - Investigating IR Signatures for Remote Sensing Applications
- Signature Simulation and Characterization of Mixed Solids in the Visible and Thermal Regimes
- Review of results and recommendations from the GCMRC 2000-2003 remote-sensing initiative for monitoring environmental resources within the Colorado River ecosystem
- Polarization-dependent wavelength-selective structures for multispectral polarimetric infrared imaging
- Soil signature simulation of complex mixtures and particle size distributions
- Soil signature simulation in the thermal infrared
- Thermal infrared spectroscopy and modeling of experimentally shocked plagioclase feldspars
- Changes in the infrared 8-1.2 /spl mu/m soil signatures due to soil disturbances during mine burial
- Spectral characteristics of clay minerals in the 2.5-14 μm wavelength region
- A multi-year active fire dataset for the tropics derived from the TRMM VIRS
- Effects of airborne particulates on remote spectrometry data collected for industrial accident response support
- Spectral reflectance and emissivity of man-made surfaces contaminated with environmental effects
- Investigation of disturbed earth detection in the very long wavelength infrared (VLWIR)
- Rainfall degradation of LWIR disturbed soil signature
- USING REMOTE SENSING DATA TO EVALUATE SURFACE SOIL PROPERTIES IN ALABAMA ULTISOLS
- Changes in apparent emissivity as a function of viewing geometry
- Advantages using the thermal infrared (TIR) to detect and quantify semi-arid soil properties
- The influence of wetting and drying cycles on mid-infrared attenuated total-reflection spectra of quartz: understanding spectroscopy of disturbed soil
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