Scientist Emeritus
Staff Profile
Publications
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(2002). Global change and stomatal research - 21st century agenda. New Phytologist, 152 , 365-374.
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(2002). Evapotranspiration and soil water content in a scrub-oak woodland under carbon dioxide enrichment . Global Change Biology, 8 , 289-298.
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(2002). Seasonal variability in the effect of elevated CO2 on ecosystem leaf area index in a scrub-oak ecosystem . Global Change Biology, 8 (10) , 931-940.
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(2002). Acclimation of photosynthesis and respiration to elevated atmospheric CO2 in two scrub oaks . Global Change Biology, 8 , 317-328.
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(2002). Patterns of canopy-air CO2 concentration in a brackish wetland: analysis of a decade of measurements and the simulated effects on the vegetation. Agricultural and Forest Meteorology, 114 , 59-73.
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(2002). Elevated atmospheric CO2 lowers herbivore abundance but increases leaf abscission rates . Global Change Biology, 8 , 658-667.
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(2001). Effects of elevated CO2 on root decomposition in an oak-scrub ecosystem . Global Change Biology, 7 , 581-589.
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(2001). Decomposition of the fine roots under CO2 enriched conditions in an oak-scrub ecosystem. Global Change Biology, 7 , 1-9.
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(2001). Will rising CO2 protect plants from the mid-day sun? A study of photoinhibition of Quercus myrtifolia in a scrub-oak community in two seasons . Plant, Cell and Environment, 24 , 1361-1368.
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(2001). Effects of elevated CO2 on soils in a Florida scrub oak ecosystem . Journal of Environmental Quality, 30 , 501-507.
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(2001). Stomatal acclimation to increased CO2 concentration in a Florida scrub oak species Quercus myrtifolia Willd . Plant Cell and Environment, 24 , 77-88.
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(2001). Water, nitrogen, rising atmospheric CO2, and terrestrial productivity. Terrestrial global productivity: past, present, and future (123-168) Academic Press .
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(2000). Elevated atmospheric-carbon dioxide concentration increases soil respiration in a mid-successional lowland forest. Soil Biology and Biochemistry, 32 (5) , 721-723.
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(2000). Elevated CO2 stimulates associative N2 fixation in a C3 plant of the Chesapeake Bay wetland . Plant Cell and Environment, 23 , 943-953.
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(2000). Leaf senescence of Quercus myrtifolia as affected by long-term CO2 enrichment in its native environment . Global Change Biology, 6 , 727-733.