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“Detritus decomposition and nutrient dynamics in a forested headwater stream”
doi:10.1016/j.ecolmodel.2013.12.013. http://coweeta.uga.edu/publications/10872.pdf.
2014.
“Stream Velocity and Discharge, a Coweeta LTER Schoolyard Lesson Plan.”
: 11. http://coweeta.uga.edu/publications/10826.pdf.
2014.
“Wood decomposition following clearcutting at Coweeta Hydrologic Laboratory.”
: 118-132. http://coweeta.uga.edu/publications/10859.pdf.
2014.
“Dynamics of dissolved organic carbon in a stream during a quarter century of forest succession”
: 102-117. http://coweeta.uga.edu/publications/10857.pdf.
2014.
“Future climate and fire interactions in the southeastern region of the United States”
327: 316-326. doi:10.1016/j.foreco.2013.12.003. http://coweeta.uga.edu/publications/10902.pdf.
2014.
“Inferring the contribution of advection to total ecosystem scalar fluxes over a tall forest in complex terrain.”
185: 1-13. doi:10.1016/j.agrformet.2013.10.010. http://coweeta.uga.edu/publications/10835.pdf.
2014.
“Sustained effects of atmospheric [CO2] and nitrogen availability on forest soil CO2 efflux.”
20: 1146-1160. http://coweeta.uga.edu/publications/10864.pdf.
2014.
2014.
“Watershed clearcutting and canopy arthropods”
: 146-155. http://coweeta.uga.edu/publications/10852.pdf.
2014.
“Reproductive Allometry in Three Species of Dusky Salamanders”
3 (3): 419-427. doi:10.1643/CE-13-165. http://coweeta.uga.edu/publications/10905.pdf.
2014.
“Introduction to the regional assessments: Climate change, wildfire, and forest ecosystem services in the USA”
327: 265-268. doi:10.1016/j.foreco.2014.06.007. http://coweeta.uga.edu/publications/10901.pdf.
2014.
“Forest Processes”
57: 25-54.
2014.
“Modeling individual tree growth by fusing diameter tape and increment core data”
25 (8): 610-620. doi:10.1002/env.2324. http://coweeta.uga.edu/publications/10921.pdf.
2014.
“A model to predict stream water temperature across the conterminous USA”
doi:10.1002/hyp.10357. http://coweeta.uga.edu/publications/10918.pdf.
2014.
“Microbe-driven turnover offsets mineral-mediated storage of soil carbon under elevated CO2.”
4: 1099-1102. doi:Doi: 10.1038/NCLIMATE2436. http://coweeta.uga.edu/publications/10917.pdf.
2014.
“Long-term response of a forest watershed ecosystem: clearcutting in the southern Appalachians”
: 247.
2014.
“Short-term stream water temperature observations permit rapid assessment of potential climate change impacts.”
doi:10.1002/hyp.10358. http://coweeta.uga.edu/publications/10919.pdf.
2014.
“Riparian disturbance restricts in-stream movement of salamanders”
59: 2354-2364. doi:10.1111/fwb.12439. http://coweeta.uga.edu/publications/10892.pdf.
2014.
2014.
2014.