H
Haynes Stephens
Researcher at University of Chicago
Publications - 13
Citations - 260
Haynes Stephens is an academic researcher from University of Chicago. The author has contributed to research in topics: Climate change & Light curve. The author has an hindex of 4, co-authored 9 publications receiving 74 citations. Previous affiliations of Haynes Stephens include University of California, Berkeley.
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Climate impacts on global agriculture emerge earlier in new generation of climate and crop models
Jonas Jägermeyr,Jonas Jägermeyr,Jonas Jägermeyr,Christoph Müller,Alex C. Ruane,Joshua Elliott,Juraj Balkovic,Juraj Balkovic,Oscar Castillo,Babacar Faye,Ian Foster,Christian Folberth,James A. Franke,Kathrin Fuchs,Jose R. Guarin,Jose R. Guarin,Jens Heinke,Gerrit Hoogenboom,Toshichika Iizumi,Atul K. Jain,David Kelly,Nikolay Khabarov,Stefan Lange,Tzu-Shun Lin,Wenfeng Liu,Oleksandr Mialyk,Sara Minoli,Elisabeth J. Moyer,Masashi Okada,Meridel Phillips,Meridel Phillips,Cheryl Porter,Sam S. Rabin,Sam S. Rabin,Clemens Scheer,Julia M. Schneider,Joep F. Schyns,Rastislav Skalsky,Andrew Smerald,Tommaso Stella,Haynes Stephens,Heidi Webber,Florian Zabel,Cynthia Rosenzweig +43 more
TL;DR: This article reported new twenty-first-century projections using ensembles of latest-generation crop and climate models, which suggest markedly more pessimistic yield responses for maize, soybean and rice compared to the original ensemble.
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CO-driven Activity in Comet C/2017 K2 (PANSTARRS)
Karen J. Meech,Jan T. Kleyna,Olivier Hainaut,Marco Micheli,James Bauer,Larry Denneau,Jacqueline V. Keane,Haynes Stephens,Robert Jedicke,Richard J. Wainscoat,Robert Weryk,H. Flewelling,Eva Schunová-Lilly,Eugene A. Magnier,K. C. Chambers +14 more
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CO-Driven Activity in Comet C/2017 K2 (PANSTARRS)
Karen J. Meech,Jan T. Kleyna,Olivier Hainaut,Marco Micheli,James M. Bauer,Larry Denneau,Jacqueline V. Keane,Haynes Stephens,Robert Jedicke,Richard J. Wainscoat,Robert Weryk,H. Flewelling,Eva Lilly,Eugene A. Magnier,K. C. Chambers +14 more
TL;DR: In this paper, the authors derived an upper limit to the nucleus radius of PanSTARRS-2017 K2 (PANSTARRS) of $R_N$=80 km, assuming a 4\% albedo.
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The Effect of Substellar Continent Size on Ocean Dynamics of Proxima Centauri b
TL;DR: In this article, the authors investigated how the size of a substellar land mass affects the oceans ability to transport heat and upwell nutrients on the tidally locked planet Proxima Centauri b using the ROCKE-3D coupled ocean-atmosphere general circulation model (GCM).
Journal ArticleDOI
The Effect of Substellar Continent Size on Ocean Dynamics of Proxima Centauri b
TL;DR: In this article, the authors investigated how the size of a substellar land mass affects the oceans ability to transport heat and upwell nutrients on the tidally locked planet Proxima Centauri b using the ROCKE-3D coupled ocean-atmosphere general circulation model (GCM).