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“Nitrate variability in hydrological flow paths for three mid-Appalachian forested watersheds following a large-scale defoliation”
114: G02009. http://coweeta.uga.edu/publications/10330.pdf.
2009.
“An awkward introduction: phylegeography of notropis lutipinnis in its 'native' range and the little tennessee river”
18: 538-549. http://coweeta.uga.edu/publications/10471.pdf.
2009.
“Variation in ecosystem function in Appalachian streams along an acidity gradient”
19 (5): 1147-1160. http://coweeta.uga.edu/publications/10395.pdf.
2009.
“Quantifying microhabitat availability: stratified random versus constrained focal-fish methods”
624: 235-240. http://coweeta.uga.edu/publications/10293.pdf.
2009.
“Nitrate removal in stream ecosystems measured by 15N addition experiments: Total uptake”
54 (3): 653-665. http://coweeta.uga.edu/publications/10305.pdf.
2009.
“The effects of turbidity and an invasive species on foraging success of rosyside dace (Clinostomus funduloides)”
54: 1977-1989. http://coweeta.uga.edu/publications/10365.pdf.
2009.
“Turbidity, velocity and interspecific interactions affect foraging behaviour of rosyside dace (Clinostomus funduloides) and yellowfin shiners (Notropis lutippinis)”
18: 427-436. http://coweeta.uga.edu/publications/10370.pdf.
2009.
“Variation in Soil and Forest Floor Characteristics Along Gradients of Ericaceous, Evergreen Shrub Cover in the Southern Appalachians”
http://coweeta.uga.edu/publications/10403.pdf.
2009.
“Ecosystem processes at the watershed scale: Extending optimality theory from plot to catchment”
45 (W11425): . http://coweeta.uga.edu/publications/10399.pdf.
2009.
“Estimating colonization potential of migrant tree species”
15: 1173-1188. http://coweeta.uga.edu/publications/10306.pdf.
2009.
“Beyond neutral science”
24 (1): 8 to 15. http://coweeta.uga.edu/publications/10391.pdf.
2009.
“Riparian zones in southern Appalachian headwater catchments: Carbon and nitrogen responses to forest cutting”
258 (10): 2282-2293. http://coweeta.uga.edu/publications/10368.pdf.
2009.
“Effects of prescribed fire in mixed oak forests of the southern Appalachians: forest floor, soil, and soil solution nitrogen responses”
136 (3): 380-391. http://coweeta.uga.edu/publications/10367.pdf.
2009.
“Does mixing litter of different qualities alter stream microbial diversity and functioning on individual litter species?”
118: 457-463. http://coweeta.uga.edu/publications/10288.pdf.
2009.
“Resource-consumer diversity: testing the effects of leaf litter species diversity on stream macroinvertebrate communities”
54: 1461-1473. http://coweeta.uga.edu/publications/10286.pdf.
2009.
“Beyond Species Richness: Expanding Biodiversityecosystem Functioning Theory In Detritus-Based Streams”
http://coweeta.uga.edu/publications/10290.pdf.
2009.
“Temperature-mediated coexistence in temperate forest ant communities”
56: 149-156. http://coweeta.uga.edu/publications/10513.pdf.
2009.
“Does leaf litter chemistry differentially affect leaf breakdown in tropical versus temperate streams?: Importance of standardized analytical techniques to measure leaf chemistry”
28 (2): 440-453. http://coweeta.uga.edu/publications/10565.pdf.
2009.
2009.
2009.