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Global Optical Snow properties via High-speed Algorithm With K-means clustering (GOSHAWK).

, , , , , , , and . IGARSS, page 118-120. IEEE, (2023)

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Resolving the Influence of Forest-Canopy Structure on Snow Depth Distributions with Terrestrial Laser Scanning., , , , , and . IGARSS, page 6284-6286. IEEE, (2018)Single and Multi-Date Landsat Classifications of Basalt to Support Soil Survey Efforts., , , and . Remote. Sens., 5 (10): 4857-4876 (2013)Assessing a Multi-Platform Data Fusion Technique in Capturing Spatiotemporal Dynamics of Heterogeneous Dryland Ecosystems in Topographically Complex Terrain., , , and . Remote. Sens., 9 (10): 981 (2017)Regional Scale Dryland Vegetation Classification with an Integrated Lidar-Hyperspectral Approach., , , , , , , , , and . Remote. Sens., 11 (18): 2141 (2019)Improved visibility calculations with tree trunk obstruction modeling from aerial LiDAR., , , and . Int. J. Geogr. Inf. Sci., 27 (10): 1865-1883 (2013)NASA's Surface Biology and Geology Concept Study: Status and Next Steps., , , , , , , , , and 15 other author(s). IGARSS, page 3269-3271. IEEE, (2020)A first overview of SnowEx ground-based remote sensing activities during the winter 2016-2017., , , , , , , , , and 34 other author(s). IGARSS, page 1391-1394. IEEE, (2017)Unmanned aerial vehicle (UAV) hyperspectral remote sensing for dryland vegetation monitoring., , , , , , and . WHISPERS, page 1-10. IEEE, (2012)Integrating LiDAR Intensity and Elevation Data for Terrain Characterization in a Forested Area., and . IEEE Geosci. Remote. Sens. Lett., 6 (3): 463-466 (2009)What is the effect of LiDAR-derived DEM resolution on large-scale watershed model results?, , , , , , and . Environ. Model. Softw., (2014)