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Combining ecohydrologic and transition probability-based modeling to simulate vegetation dynamics in a semi-arid rangeland
Elizabeth G. King,
Trenton E. Franz
Research output
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Contribution to journal
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Article
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peer-review
6
Scopus citations
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Dive into the research topics of 'Combining ecohydrologic and transition probability-based modeling to simulate vegetation dynamics in a semi-arid rangeland'. Together they form a unique fingerprint.
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Agricultural and Biological Sciences
Grazing Intensity
100%
Rangeland
100%
Soil Moisture
50%
Growing Season
50%
Perennials
25%
Vegetation Structure
25%
Dry Season
25%
Water Balance
25%
Annuals
12%
Decision Making
12%
Land Use
12%
Vegetation Cover
12%
Soil Water
12%
Ecological Function
12%
Keyphrases
Herder
25%
Dynamic Intensity
12%
Model Domain
12%
Climate Heterogeneity
12%
Hydrological Monitoring
12%
Water Balance Dynamics
12%
Landscape Organization
12%
Soil Moisture Availability
12%
Spatial Patterning
12%
Water-limited Environments
12%
Grass Patches
12%
Emergent Dynamics
12%
Stochastic Rainfall
12%
Herding Behavior
12%
Coupled Nonlinearity
12%
Earth and Planetary Sciences
Cellular Automata
25%
Landscape Organization
25%