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A Geoinformatics Approach to Water Erosion: Soil Loss and Beyond
Tal Svoray
Department of Environmental, Geoinformatics and Urban Planning Sciences
Research output
:
Book/Report
›
Book
›
peer-review
5
Scopus citations
Overview
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Dive into the research topics of 'A Geoinformatics Approach to Water Erosion: Soil Loss and Beyond'. Together they form a unique fingerprint.
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Keyphrases
Aeration
33%
Agricultural Catchment
33%
Agroecosystem
66%
Attention Restoration Theory
33%
Autocorrelation
33%
Carbon Sequestration
33%
Crop Yield
33%
Data Science Methodology
33%
Drainage Structures
33%
Drone Data
33%
Environmental Hazards
33%
Environmental Threats
33%
Eroded Soil
33%
Eutrophication
33%
Evolution Model
33%
Expert System
33%
Fuzzy Process
33%
Geoinformatics
100%
Groundwater Contamination
33%
Hierarchal
33%
Innovative Data
33%
Layer Soil
33%
Limited nutrients
33%
Loose Soil
33%
Machine Learning System
33%
Microbial Activity
33%
Mineral Loss
33%
Multi-criteria Analysis
33%
Northern Israel
33%
Nutrient Cycling
33%
Photogrammetric
33%
Physically-based
33%
Process Modeling
33%
Reduced Carbon
33%
Soil Deposition
33%
Soil Evolution
33%
Soil Health
33%
Soil Health Indicators
33%
Soil Layer
33%
Soil Lead
33%
Soil Loss
100%
Soil Minerals
33%
Soil Structure
33%
Spatial Decision Support System
33%
Structure Calculation
33%
System Development
33%
Threshold Computation
33%
Topographic Threshold
33%
Water Bodies
33%
Water Effect
33%
Water Erosion
100%
Water Holding Capacity
33%
Well-being
33%
Earth and Planetary Sciences
Aeration
33%
Agricultural Catchment
33%
Agricultural Ecosystem
66%
Autocorrelation
33%
Carbon Sequestration
33%
Crop Yield
33%
Data Mining
33%
Digital Elevation Model
33%
Environmental Hazard
33%
Environmental Threat
33%
Eutrophication
33%
Geoinformatics
100%
Interpolation
33%
Israel
33%
Machine Learning
33%
Microbial Activity
33%
Multicriteria Analysis
33%
Nutrient Cycling
33%
Paradigm Shift
33%
Pedogenesis
33%
Soil Erosion
100%
Soil Health
66%
Soil Layer
33%
Soil Structure
33%
Water Body
33%
Water Erosion
100%