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Charles S Hopkinson

Showing results (1-10 of 9) with videos related to

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Nature|January 15, 2005
Efficient export of carbon to the deep ocean through dissolved organic matterCharles S Hopkinson, Joseph J Vallino
Applied and Environmental Microbiology|March 10, 2004
Microbial biogeography along an estuarine salinity gradient: combined influences of bacterial growth and residence timeByron C Crump, Charles S Hopkinson, Mitchell L Sogin, et al.
Limnology and Oceanography|February 20, 2018
Inorganic carbon and oxygen dynamics in a marsh-dominated estuaryShiyu Rachel Wang, Daniela Di Iorio, Wei-Jun Cai, et al.
Plos One|August 12, 2015
Potential Effects of Climate Change on the Distribution of Cold-Tolerant Evergreen Broadleaved Woody Plants in the Korean PeninsulaKyung Ah Koo, Woo-Seok Kong, Nathan P Nibbelink, et al.
Nature|December 6, 2013
The changing carbon cycle of the coastal oceanJames E Bauer, Wei-Jun Cai, Peter A Raymond, et al.
Journal of Geophysical Research. Biogeosciences|October 7, 2016
Large increase in dissolved inorganic carbon flux from the Mississippi River to Gulf of Mexico due to climatic and anthropogenic changes over the 21st centuryWei Ren, Hanqin Tian, Bo Tao, et al.
Earth'S Future|November 8, 2016
Contributions of organic and inorganic matter to sediment volume and accretion in tidal wetlands at steady stateJames T Morris, Donald C Barber, John C Callaway, et al.
Global Change Biology|October 10, 2023
Soil legacy nutrients contribute to the decreasing stoichiometric ratio of N and P loading from the Mississippi River BasinZihao Bian, Hanqin Tian, Shufen Pan, et al.
Nature Communications|May 20, 2020
Representing the function and sensitivity of coastal interfaces in Earth system modelsNicholas D Ward, J Patrick Megonigal, Ben Bond-Lamberty, et al.
Pageof 1

Showing results (1-10 of 9) with videos related to

Sort By:
Pageof 1
Nature|January 15, 2005
Efficient export of carbon to the deep ocean through dissolved organic matterCharles S Hopkinson, Joseph J Vallino
Applied and Environmental Microbiology|March 10, 2004
Microbial biogeography along an estuarine salinity gradient: combined influences of bacterial growth and residence timeByron C Crump, Charles S Hopkinson, Mitchell L Sogin, et al.
Limnology and Oceanography|February 20, 2018
Inorganic carbon and oxygen dynamics in a marsh-dominated estuaryShiyu Rachel Wang, Daniela Di Iorio, Wei-Jun Cai, et al.
Plos One|August 12, 2015
Potential Effects of Climate Change on the Distribution of Cold-Tolerant Evergreen Broadleaved Woody Plants in the Korean PeninsulaKyung Ah Koo, Woo-Seok Kong, Nathan P Nibbelink, et al.
Nature|December 6, 2013
The changing carbon cycle of the coastal oceanJames E Bauer, Wei-Jun Cai, Peter A Raymond, et al.
Journal of Geophysical Research. Biogeosciences|October 7, 2016
Large increase in dissolved inorganic carbon flux from the Mississippi River to Gulf of Mexico due to climatic and anthropogenic changes over the 21st centuryWei Ren, Hanqin Tian, Bo Tao, et al.
Earth'S Future|November 8, 2016
Contributions of organic and inorganic matter to sediment volume and accretion in tidal wetlands at steady stateJames T Morris, Donald C Barber, John C Callaway, et al.
Global Change Biology|October 10, 2023
Soil legacy nutrients contribute to the decreasing stoichiometric ratio of N and P loading from the Mississippi River BasinZihao Bian, Hanqin Tian, Shufen Pan, et al.
Nature Communications|May 20, 2020
Representing the function and sensitivity of coastal interfaces in Earth system modelsNicholas D Ward, J Patrick Megonigal, Ben Bond-Lamberty, et al.
Pageof 1