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Anne E Taylor

Showing results (1-10 of 15) with videos related to

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Frontiers in Microbiology|May 27, 2022
Differential Responses of the Catalytic Efficiency of Ammonia and Nitrite Oxidation to Changes in TemperatureAnne E Taylor, Brett L Mellbye
Frontiers in Microbiology|June 7, 2021
Implications of the Thermodynamic Response of Soil Mineralization, Respiration, and Nitrification on Soil Organic Matter RetentionAnne E Taylor, Camille Ottoman, Frank Chaplen
Applied Microbiology and Biotechnology|January 4, 2018
Contrasting growth properties of Nocardioides JS614 on threedifferent vinyl halidesAnne E Taylor, Peter J Bottomley, Lewis Semprini
Psycho-Oncology|September 24, 2004
Relationships between patients' pre-treatment expectations of toxicities and post chemotherapy experiencesIan N Olver, Anne E Taylor, Hayley S Whitford
Frontiers in Microbiology|October 31, 2012
A consideration of the relative contributions of different microbial subpopulations to the soil N cyclePeter J Bottomley, Anne E Taylor, David D Myrold
Applied Microbiology and Biotechnology|June 29, 2010
Extending the alkene substrate range of vinyl chloride utilizing Nocardioides sp. strain JS614 with ethene oxideAnne E Taylor, Daniel J Arp, Peter J Bottomley, et al.
Environmental Science & Technology|October 24, 2007
Utilization of fluoroethene as a surrogate for aerobic vinyl chloride transformationAnne E Taylor, Mark E Dolan, Peter J Bottomley, et al.
Environmental Microbiology Reports|June 14, 2013
Bacterial and archaeal amoA gene distribution covaries with soil nitrification properties across a range of land usesLydia H Zeglin, Anne E Taylor, David D Myrold, et al.
Applied and Environmental Microbiology|October 5, 2010
Evidence for different contributions of archaea and bacteria to the ammonia-oxidizing potential of diverse Oregon soilsAnne E Taylor, Lydia H Zeglin, Sandra Dooley, et al.
The ISME Journal|December 21, 2016
Modeling of soil nitrification responses to temperature reveals thermodynamic differences between ammonia-oxidizing activity of archaea and bacteriaAnne E Taylor, Andrew T Giguere, Conor M Zoebelein, et al.
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Frontiers in Microbiology|May 27, 2022
Differential Responses of the Catalytic Efficiency of Ammonia and Nitrite Oxidation to Changes in TemperatureAnne E Taylor, Brett L Mellbye
Frontiers in Microbiology|June 7, 2021
Implications of the Thermodynamic Response of Soil Mineralization, Respiration, and Nitrification on Soil Organic Matter RetentionAnne E Taylor, Camille Ottoman, Frank Chaplen
Applied Microbiology and Biotechnology|January 4, 2018
Contrasting growth properties of Nocardioides JS614 on threedifferent vinyl halidesAnne E Taylor, Peter J Bottomley, Lewis Semprini
Psycho-Oncology|September 24, 2004
Relationships between patients' pre-treatment expectations of toxicities and post chemotherapy experiencesIan N Olver, Anne E Taylor, Hayley S Whitford
Frontiers in Microbiology|October 31, 2012
A consideration of the relative contributions of different microbial subpopulations to the soil N cyclePeter J Bottomley, Anne E Taylor, David D Myrold
Applied Microbiology and Biotechnology|June 29, 2010
Extending the alkene substrate range of vinyl chloride utilizing Nocardioides sp. strain JS614 with ethene oxideAnne E Taylor, Daniel J Arp, Peter J Bottomley, et al.
Environmental Science & Technology|October 24, 2007
Utilization of fluoroethene as a surrogate for aerobic vinyl chloride transformationAnne E Taylor, Mark E Dolan, Peter J Bottomley, et al.
Environmental Microbiology Reports|June 14, 2013
Bacterial and archaeal amoA gene distribution covaries with soil nitrification properties across a range of land usesLydia H Zeglin, Anne E Taylor, David D Myrold, et al.
Applied and Environmental Microbiology|October 5, 2010
Evidence for different contributions of archaea and bacteria to the ammonia-oxidizing potential of diverse Oregon soilsAnne E Taylor, Lydia H Zeglin, Sandra Dooley, et al.
The ISME Journal|December 21, 2016
Modeling of soil nitrification responses to temperature reveals thermodynamic differences between ammonia-oxidizing activity of archaea and bacteriaAnne E Taylor, Andrew T Giguere, Conor M Zoebelein, et al.
Pageof 2