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Evaluating Observational Constraints on Intermodel Spread in Cloud, Temperature, and Humidity Feedbacks
Journal article   Peer reviewed

Evaluating Observational Constraints on Intermodel Spread in Cloud, Temperature, and Humidity Feedbacks

H. He, R.J. Kramer and B.J. Soden
Geophysical Research Letters, Vol.48(17)
2021

Abstract

cloud feedback emergent constraint intermodel spread lapse-rate plus water vapor feedback Anthropogenic forcing Climate feedbacks Climate sensitivity Cloud feedbacks Future projections Interannual variability Interannual variation Surface temperatures Earth sciences annual variation anthropogenic effect cloud cover relative humidity surface temperature tropical environment water vapor Geophysics

InCites Highlights

These are selected metrics from InCites Benchmarking & Analytics tool, related to this output

Collaboration types
Domestic collaboration
Citation topics
8 Earth Sciences
8.19 Oceanography, Meteorology & Atmospheric Sciences
8.19.38 ENSO
Web Of Science research areas
Geosciences, Multidisciplinary
ESI research areas
Geosciences

UN Sustainable Development Goals (SDGs)

This output has contributed to the advancement of the following goals:

#13 Climate Action

Source: InCites

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