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Increased atmospheric vapor pressure deficit reduces global vegetation growth | Researchclopedia
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Increased atmospheric vapor pressure deficit reduces global vegetation growth
2019
1,583 citations
Journal Article
gold Open Access
Field-Weighted Citation Impact:
68.00
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Seoul National University
Guixing Chen
·
Sun Yat-sen University
Wenjie Dong
·
Sun Yat-sen University
HU Zhong-ming
·
South China Normal University
Atul K. Jain
·
University of Illinois Urbana-Champaign
Chongya Jiang
·
University of Illinois Urbana-Champaign
Etsushi Kato
·
Institute of Applied Energy
Shihua Li
·
Sun Yat-sen University
Sebastian Lienert
·
University of Bern
Shuguang Liu
·
Central South University of Forestry and Technology
Julia E. M. S. Nabel
·
Max Planck Institute for Meteorology
Zhangcai Qin
·
Sun Yat-sen University
Timothy A. Quine
·
University of Exeter
Stephen Sitch
·
University of Exeter
William K. Smith
·
University of Arizona
F. Wang
·
Sun Yat-sen University
Chaoyang Wu
·
Chinese Academy of Sciences
Zhiqiang Xiao
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Beijing Normal University
Song Yang
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Sun Yat-sen University