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Phenological shifts in lake stratification under climate change
R. Iestyn Woolway
, Sapna Sharma
, Gesa A. Weyhenmeyer
, Andrey Debolskiy
, Malgorzata Golub
, Daniel Mercado-Bettín
, Marjorie Perroud
, Victor Stepanenko
, Zeli Tan
, Luke Grant
, Robert Ladwig
, Jorrit Mesman
, Tadhg N. Moore
, Tom Shatwell
, Inne Vanderkelen
,
Jay A. Austin
, Curtis L. DeGasperi
, Martin Dokulil
, Sofia La Fuente
, Eleanor B. Mackay
S. Geoffrey Schladow, Shohei Watanabe, Rafael Marcé, Don C. Pierson, Wim Thiery, Eleanor Jennings
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Physics & Astronomy (Duluth)
Research output
:
Contribution to journal
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Article
›
peer-review
280
Scopus citations
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Keyphrases
Climate Change
100%
Lake Stratification
100%
Phenological Shift
100%
Stratification Phenology
100%
Global Change
50%
Ecological Effects
50%
Deoxygenation
50%
Phenology
50%
Greenhouse Gas
50%
Observational Data
50%
Ecological Constraints
50%
Northern Hemisphere
50%
Physical Characteristics
50%
Misalignment
50%
Lake Sediments
50%
Lake Ecosystem
50%
Subsequent Effects
50%
Irreversible Changes
50%
Emission Scenarios
50%
Nutrient Mineralization
50%
Phosphorus Release
50%
Climate Model Ensemble
50%
Earth and Planetary Sciences
Climate Change
100%
Global Change
100%
Lacustrine Deposit
100%
Greenhouse Gas Emission
100%
Northern Hemisphere
100%
Lake Ecosystem
100%
Ecological Effects
100%
Climate Modeling
100%
Deoxygenation
100%