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Thermal anomalies detect critical global land surface changes
David J. Mildrexler
, M. Zhao
, W. B. Cohen
,
S. W. Running
, X. P. Song
, M. O. Jones
W. A. Franke College of Forestry and Conservation
Oregon State University
University of Maryland, College Park
United States Department of Agriculture
University of Montana
Research output
:
Contribution to journal
›
Article
›
peer-review
50
Scopus citations
Overview
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Earth and Planetary Sciences
Air Temperature
33%
Biome
33%
Cryosphere
33%
Energy Balance
33%
Energy Flux
33%
Heat Wave
66%
Ice Sheet
33%
Land Cover Change
100%
Land Surface
100%
Land Surface Temperature
66%
Physical Process
33%
Satellite Observation
33%
Standard Deviation
66%
Temperature Anomaly
100%
Tropical Forest
66%
Water Flux
33%