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G W Luther

Showing results (1-10 of 11) with videos related to

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Talanta|October 31, 2008
Determination of stability constants for metal-ligand complexes using the voltammetric oxidation wave of the anion/ligand and the DeFord and Hume formalismG W Luther, S M Theberge, D Rickard
Geobiology|July 9, 2016
The role of microaerophilic Fe-oxidizing micro-organisms in producing banded iron formationsC S Chan, D Emerson, G W Luther
Geochemical Transactions|June 9, 2006
Metal-organic complexation in the marine environmentG W Luther, T F Rozan, A Witter, et al.
Science (New York, N.Y.)|May 9, 1986
Inorganic and organic sulfur cycling in salt-marsh pore watersG W Luther, T M Church, J R Scudlark, et al.
Science (New York, N.Y.)|February 5, 1993
Mediation of sulfur speciation by a black sea facultative anaerobeK A Perry, J E Kostka, G W Luther, et al.
Applied and Environmental Microbiology|September 26, 2001
Growth and phylogenetic properties of novel bacteria belonging to the epsilon subdivision of the Proteobacteria enriched from Alvinella pompejana and deep-sea hydrothermal ventsB J Campbell, C Jeanthon, J E Kostka, et al.
Proceedings. Biological Sciences|April 17, 2015
The uptake and excretion of partially oxidized sulfur expands the repertoire of energy resources metabolized by hydrothermal vent symbiosesR A Beinart, A Gartman, J G Sanders, et al.
Geobiology|June 25, 2013
Morphology of biogenic iron oxides records microbial physiology and environmental conditions: toward interpreting iron microfossilsS T Krepski, D Emerson, P L Hredzak-Showalter, et al.
Geobiology|July 8, 2016
Planktonic marine iron oxidizers drive iron mineralization under low-oxygen conditionsE K Field, S Kato, A J Findlay, et al.
Nature|April 12, 2001
Chemical speciation drives hydrothermal vent ecologyG W Luther, T F Rozan, M Taillefert, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Talanta|October 31, 2008
Determination of stability constants for metal-ligand complexes using the voltammetric oxidation wave of the anion/ligand and the DeFord and Hume formalismG W Luther, S M Theberge, D Rickard
Geobiology|July 9, 2016
The role of microaerophilic Fe-oxidizing micro-organisms in producing banded iron formationsC S Chan, D Emerson, G W Luther
Geochemical Transactions|June 9, 2006
Metal-organic complexation in the marine environmentG W Luther, T F Rozan, A Witter, et al.
Science (New York, N.Y.)|May 9, 1986
Inorganic and organic sulfur cycling in salt-marsh pore watersG W Luther, T M Church, J R Scudlark, et al.
Science (New York, N.Y.)|February 5, 1993
Mediation of sulfur speciation by a black sea facultative anaerobeK A Perry, J E Kostka, G W Luther, et al.
Applied and Environmental Microbiology|September 26, 2001
Growth and phylogenetic properties of novel bacteria belonging to the epsilon subdivision of the Proteobacteria enriched from Alvinella pompejana and deep-sea hydrothermal ventsB J Campbell, C Jeanthon, J E Kostka, et al.
Proceedings. Biological Sciences|April 17, 2015
The uptake and excretion of partially oxidized sulfur expands the repertoire of energy resources metabolized by hydrothermal vent symbiosesR A Beinart, A Gartman, J G Sanders, et al.
Geobiology|June 25, 2013
Morphology of biogenic iron oxides records microbial physiology and environmental conditions: toward interpreting iron microfossilsS T Krepski, D Emerson, P L Hredzak-Showalter, et al.
Geobiology|July 8, 2016
Planktonic marine iron oxidizers drive iron mineralization under low-oxygen conditionsE K Field, S Kato, A J Findlay, et al.
Nature|April 12, 2001
Chemical speciation drives hydrothermal vent ecologyG W Luther, T F Rozan, M Taillefert, et al.
Pageof 2