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Eric E Roden

Showing results (31-40 of 63) with videos related to

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Frontiers in Microbiology|September 25, 2018
Investigating the Composition and Metabolic Potential of Microbial Communities in Chocolate Pots Hot SpringsNathaniel W Fortney, Shaomei He, Brandon J Converse, et al.
Microbes and Environments|May 12, 2011
16S rRNA gene microarray analysis of microbial communities in ethanol-stimulated subsurface sedimentSantosh R Mohanty, Bharati Kollah, Eoin L Brodie, et al.
Astrobiology|November 14, 2013
Iron isotope characteristics of Hot Springs at Chocolate Pots, Yellowstone National ParkLingling Wu, Rebecca Poulson Brucker, Brian L Beard, et al.
Environmental Microbiology|May 12, 2018
Electron acceptor availability alters carbon and energy metabolism in a thermoacidophileMaximiliano J Amenabar, Daniel R Colman, Saroj Poudel, et al.
Msphere|January 25, 2019
Extracellular Electron Transfer May Be an Overlooked Contribution to Pelagic Respiration in Humic-Rich Freshwater LakesShaomei He, Maximilian P Lau, Alexandra M Linz, et al.
Environmental Science & Technology|April 17, 2018
Dual Role of Humic Substances As Electron Donor and Shuttle for Dissimilatory Iron ReductionNoah Stern, Jacqueline Mejia, Shaomei He, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 9, 2021
Lithogenic hydrogen supports microbial primary production in subglacial and proglacial environmentsEric C Dunham, John E Dore, Mark L Skidmore, et al.
Environmental Science & Technology|August 30, 2005
Chemical reduction of U(VI) by Fe(II) at the solid-water interface using natural and synthetic Fe(III) oxidesByong-Hun Jeon, Brian A Dempsey, William D Burgos, et al.
Nature Geoscience|April 5, 2019
Microbial substrate preference dictated by energy demand, not supplyMaximiliano J Amenabar, Everett L Shock, Eric E Roden, et al.
Environmental Microbiology|December 14, 2005
Anaerobic redox cycling of iron by freshwater sediment microorganismsKarrie A Weber, Matilde M Urrutia, Perry F Churchill, et al.
Pageof 7

Showing results (31-40 of 63) with videos related to

Sort By:
Pageof 7
Frontiers in Microbiology|September 25, 2018
Investigating the Composition and Metabolic Potential of Microbial Communities in Chocolate Pots Hot SpringsNathaniel W Fortney, Shaomei He, Brandon J Converse, et al.
Microbes and Environments|May 12, 2011
16S rRNA gene microarray analysis of microbial communities in ethanol-stimulated subsurface sedimentSantosh R Mohanty, Bharati Kollah, Eoin L Brodie, et al.
Astrobiology|November 14, 2013
Iron isotope characteristics of Hot Springs at Chocolate Pots, Yellowstone National ParkLingling Wu, Rebecca Poulson Brucker, Brian L Beard, et al.
Environmental Microbiology|May 12, 2018
Electron acceptor availability alters carbon and energy metabolism in a thermoacidophileMaximiliano J Amenabar, Daniel R Colman, Saroj Poudel, et al.
Msphere|January 25, 2019
Extracellular Electron Transfer May Be an Overlooked Contribution to Pelagic Respiration in Humic-Rich Freshwater LakesShaomei He, Maximilian P Lau, Alexandra M Linz, et al.
Environmental Science & Technology|April 17, 2018
Dual Role of Humic Substances As Electron Donor and Shuttle for Dissimilatory Iron ReductionNoah Stern, Jacqueline Mejia, Shaomei He, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 9, 2021
Lithogenic hydrogen supports microbial primary production in subglacial and proglacial environmentsEric C Dunham, John E Dore, Mark L Skidmore, et al.
Environmental Science & Technology|August 30, 2005
Chemical reduction of U(VI) by Fe(II) at the solid-water interface using natural and synthetic Fe(III) oxidesByong-Hun Jeon, Brian A Dempsey, William D Burgos, et al.
Nature Geoscience|April 5, 2019
Microbial substrate preference dictated by energy demand, not supplyMaximiliano J Amenabar, Everett L Shock, Eric E Roden, et al.
Environmental Microbiology|December 14, 2005
Anaerobic redox cycling of iron by freshwater sediment microorganismsKarrie A Weber, Matilde M Urrutia, Perry F Churchill, et al.
Pageof 7