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George G Vadas

Showing results (1-10 of 8) with videos related to

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The Science of the Total Environment|November 1, 2005
Kepone in James River fish: 1976-2002Drew R Luellen, George G Vadas, Michael A Unger
Environmental Toxicology and Chemistry|March 22, 2007
Predicting survival of grass shrimp (Palaemonetes pugio) during ethylnaphthalene, dimethylnaphthalene, and phenanthrene exposures differing in concentration and durationMichael A Unger, Michael C Newman, George G Vadas
Environmental Toxicology and Chemistry|April 3, 2008
Predicting survival of grass shrimp (Palaemonetes pugio) exposed to naphthalene, fluorene, and dibenzothiopheneMichael A Unger, Michael C Newman, George G Vadas
Environmental Technology & Innovation|October 7, 2022
A novel antibody-based biosensor method for the rapid measurement of PAH contamination in oystersKristen M Prossner, George G Vadas, Ellen Harvey, et al.
Environmental Toxicology and Chemistry|November 2, 2017
Evaluating porewater polycyclic aromatic hydrocarbon-related toxicity at a contaminated sediment site using a spiked field-sediment approachSharon E Hartzell, Michael A Unger, George G Vadas, et al.
Environmental Toxicology and Chemistry|May 7, 2011
Near real-time, on-site, quantitative analysis of PAHs in the aqueous environment using an antibody-based biosensorCandace R Spier, George G Vadas, Stephen L Kaattari, et al.
Environmental Science & Technology|November 13, 2007
Validation of an antibody-based biosensor for rapid quantification of 2,4,6-trinitrotoluene (TNT) contamination in ground water and river waterErin S Bromage, George G Vadas, Ellen Harvey, et al.
Sensing and Bio-Sensing Research|March 1, 2016
A highly sensitive monoclonal antibody based biosensor for quantifying 3-5 ring polycyclic aromatic hydrocarbons (PAHs) in aqueous environmental samplesXin Li, Stephen L Kaattari, Mary A Vogelbein, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
The Science of the Total Environment|November 1, 2005
Kepone in James River fish: 1976-2002Drew R Luellen, George G Vadas, Michael A Unger
Environmental Toxicology and Chemistry|March 22, 2007
Predicting survival of grass shrimp (Palaemonetes pugio) during ethylnaphthalene, dimethylnaphthalene, and phenanthrene exposures differing in concentration and durationMichael A Unger, Michael C Newman, George G Vadas
Environmental Toxicology and Chemistry|April 3, 2008
Predicting survival of grass shrimp (Palaemonetes pugio) exposed to naphthalene, fluorene, and dibenzothiopheneMichael A Unger, Michael C Newman, George G Vadas
Environmental Technology & Innovation|October 7, 2022
A novel antibody-based biosensor method for the rapid measurement of PAH contamination in oystersKristen M Prossner, George G Vadas, Ellen Harvey, et al.
Environmental Toxicology and Chemistry|November 2, 2017
Evaluating porewater polycyclic aromatic hydrocarbon-related toxicity at a contaminated sediment site using a spiked field-sediment approachSharon E Hartzell, Michael A Unger, George G Vadas, et al.
Environmental Toxicology and Chemistry|May 7, 2011
Near real-time, on-site, quantitative analysis of PAHs in the aqueous environment using an antibody-based biosensorCandace R Spier, George G Vadas, Stephen L Kaattari, et al.
Environmental Science & Technology|November 13, 2007
Validation of an antibody-based biosensor for rapid quantification of 2,4,6-trinitrotoluene (TNT) contamination in ground water and river waterErin S Bromage, George G Vadas, Ellen Harvey, et al.
Sensing and Bio-Sensing Research|March 1, 2016
A highly sensitive monoclonal antibody based biosensor for quantifying 3-5 ring polycyclic aromatic hydrocarbons (PAHs) in aqueous environmental samplesXin Li, Stephen L Kaattari, Mary A Vogelbein, et al.
Pageof 1