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Tree Physiology|May 5, 2004
Stomatal conductance of Acer rubrum ecotypes under varying soil and atmospheric water conditions: predicting stomatal responses with an abscisic acid-based modelWilliam L Bauerle, Joe E Toler, G Geoff WangTree Physiology|January 24, 2007
Tree water storage and its diurnal dynamics related to sap flow and changes in stem volume in old-growth Douglas-fir treesJan Cermák, Jiri Kucera, William L Bauerle, et al.Journal of Experimental Botany|June 30, 2009
Exploring the importance of within-canopy spatial temperature variation on transpiration predictionsWilliam L Bauerle, Joseph D Bowden, G Geoff Wang, et al.Tree Physiology|March 5, 2004
Modeling intra-crown and intra-canopy interactions in red maple: assessment of light transfer on carbon dioxide and water vapor exchangeWilliam L Bauerle, Joseph D Bowden, Michael F McLeod, et al.Ecological Applications : a Publication of the Ecological Society of America|May 12, 2009
Drought impact on forest growth and mortality in the southeast USA: an analysis using Forest Health and Monitoring dataRyan J Klos, G Geoff Wang, William L Bauerle, et al.Plant, Cell & Environment|August 16, 2014
Combining quantitative trait loci analysis with physiological models to predict genotype-specific transpiration ratesGretchen A Reuning, William L Bauerle, Jack L Mullen, et al.The New Phytologist|May 28, 2008
Root foraging in response to heterogeneous soil moisture in two grapevines that differ in potential growth rateTaryn L Bauerle, David R Smart, William L Bauerle, et al.Bioresource Technology|June 10, 2006
Influence of brick air scrubber by-product on growth and development of corn and hybrid poplarCarla N Thomas, William L Bauerle, Tom O Owino, et al.Tree Physiology|July 17, 2003
Ecophysiology of Acer rubrum seedlings from contrasting hydrologic habitats: growth, gas exchange, tissue water relations, abscisic acid and carbon isotope discriminationWilliam L Bauerle, T H Whitlow, T L Setter, et al.American Journal of Botany|June 4, 2011
Characterization of Rubisco activase from thermally contrasting genotypes of Acer rubrum (Aceraceae)David J Weston, William L Bauerle, Ginger A Swire-Clark, et al.Pageof 4