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Inhalation Toxicology|August 22, 2006
Evidence and reconstruction of airborne asbestos from unconventional environmental samplesJames S Webber, Myron Getman, Tony J WardJournal of Occupational and Environmental Hygiene|September 1, 2007
Performance of membrane filters used for TEM analysis of asbestosJames S Webber, Alex G Czuhanich, Laurie J CarhartThe Science of the Total Environment|November 17, 2020
An approach for decomposing river water-quality trends into different flow classesQian Zhang, James S Webber, Douglas L Moyer, et al.Journal of Environmental Quality|October 5, 2020
Factors driving nutrient trends in streams of the Chesapeake Bay watershedScott W Ator, Joel D Blomquist, James S Webber, et al.Inhalation Toxicology|June 24, 2008
Separation and characterization of respirable amphibole fibers from Libby, MontanaJames S Webber, David J Blake, Tony J Ward, et al.Environmental Science & Technology|February 19, 2004
Reconstruction of a century of airborne asbestos concentrationsJames S Webber, Kenneth W Jackson, Pravin P Parekh, et al.Environmental Monitoring and Assessment|October 25, 2023
Using high-frequency monitoring data to quantify city-wide suspended-sediment load and evaluate TMDL goalsSamuel A Miller, James S Webber, John D Jastram, et al.Journal of Occupational and Environmental Hygiene|May 15, 2012
Amphibole asbestos in tree bark--a review of findings for this inhalational exposure source in Libby, MontanaTony J Ward, Terry M Spear, Julie F Hart, et al.Environmental Science & Technology|May 30, 2009
Fate of Libby amphibole fibers when burning contaminated firewoodTony J Ward, Julie F Hart, Terry M Spear, et al.The Science of the Total Environment|May 16, 2006
Trees as reservoirs for amphibole fibers in Libby, MontanaTony J Ward, Terry Spear, Julie Hart, et al.Pageof 1