Bibliography

Export 1220 results:
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
R
Rastetter, Edward B, G. I Ågren, and Gaius R Shaver. Responses Of N-Limited Ecosystems To Increased Co2: A Balanced-Nutrition, Coupled-Element-Cycles Model. Ecological Applications 7, no. 2. Ecological Applications (1997): 444-460. doi:10.2307/2269511.
Ramirez, Kelly S, Joseph M Craine, and Noah Fierer. Consistent Effects Of Nitrogen Amendments On Soil Microbial Communities And Processes Across Biomes. Global Change Biology 18, no. 6. Global Change Biology (2012): 1918-1927. doi:10.1111/j.1365-2486.2012.02639.x.
Rahm, ène, and John C Moore. A Case Study Of Long-Term Engagement And Identity-In-Practice: Insights Into The Stem Pathways Of Four Underrepresented Youths. Journal Of Research In Science Teaching. Journal Of Research In Science Teaching (2015): n/a - n/a. doi:10.1002/tea.21268.
P
Prowse, T. D, K. Alfredsen, S. Beltaos, B. Bonsal, C. Durguay, A. Korhola, James P McNamara, W. F Vincent, V. Vuglinsky, and G. Weyhenmeyer. Changing Lake And River Ice Regimes: Trends, Effects And Implications. In Snow, Water, Ice And Permafrost In The Arctic (Swipa): Climate Change And The Cryosphere. Snow, Water, Ice And Permafrost In The Arctic (Swipa): Climate Change And The Cryosphere. Oslo, Norway: Arctic Monitoring and Assessment Programme, 2011.
Prowse, T. D, F. J Wrona, J. D Reist, John E Hobbie, L. MJ Lévesque, and W. F Vincent. General Features Of The Arctic Relevant To Climate Change In Freshwater Ecosystems. Ambio 35, no. 7. Ambio (2006): 330-338. doi:10.1579/0044-7447%282006%2935%5B330%3AGFOTAR%5D2.0.CO%3B2.
Prowse, T. D, F. J Wrona, J. D Reist, J. J Gibson, John E Hobbie, L. MJ Lévesque, and W. F Vincent. Historical Changes In Arctic Freshwater Ecosystems. Ambio 35, no. 7. Ambio (2006): 339-346. doi:10.1579/0044-7447%282006%2935%5B339%3AHCIAFE%5D2.0.CO%3B2.
Prowse, T. D, F. J Wrona, J. D Reist, J. J Gibson, John E Hobbie, L. MJ Lévesque, and W. F Vincent. Climate Change Effects On Hydroecology Of Arctic Freshwater Ecosystems. Ambio 35, no. 7. Ambio (2006): 347-358. doi:10.1579/0044-7447%282006%2935%5B347%3ACCEOHO%5D2.0.CO%3B2.
Pressler, Yamina. Fire Disturbance Belowground: Untangling Consequences For Soil Food Webs And Organic Matter. Natural Resource Ecology Laboratory. Natural Resource Ecology Laboratory. Colorado State University, 2019.
Prager, Case. Plant Diversity, Physiology, And Function In The Face Of Global Change. Department Of Ecology, Evolution And Environmental Biology. Department Of Ecology, Evolution And Environmental Biology. Columbia University, 2017. doi:10.7916/D8K361M3.
Potosnak, M. J, L. Lestourgeon, and O. Nunez. Increasing Leaf Temperature Reduces The Suppression Of Isoprene Emission By Elevated Co2 Concentration. Science Of The Total Environment 481. Science Of The Total Environment (2014): 352-359. doi:10.1016/j.scitotenv.2014.02.065.
Potosnak, M. J, B. M Baker, L. Lestourgeon, S> M Disher, Kevin L Griffin, Syndonia M Bret-Harte, and Gregory Starr. Isoprene Emissions From A Tundra Ecosystem. Biogeosciences 10, no. 2. Biogeosciences (2013): 871 - 889. doi:10.5194/bg-10-871-2013.
Pizano, Camila, A. F Baron, Edward AG Schuur, K. G Crummer, and Michelle C Mack. Effects Of Thermo-Erosional Disturbance On Surface Soil Carbon And Nitrogen Dynamics In Upland Arctic Tundra. Environmental Research Letters 9, no. 7. Environmental Research Letters (2014): 075006. doi:10.1088/1748-9326/9/7/075006.

Pages