Jornada Bibliography
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Long-term network research for the next agricultural revolution. Frontiers in Ecology and the Environment. 19(8):432-434.
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2021. Long-term and large-scale perspectives on the relationship between biodiversity and ecosystem. BioScience. 53:89-98.
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2003. .
2021. Long term agroecosystem research experimental watershed network. Hydrological Processes. 36(3):e14534.
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2022. Locally led conservation activities: Developing a soil quality assessment tool. 10th International Soil Conservation Organization Meeting: Sustaining the Global Farm. :529-534.
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2001. Livestock as Tools for Ecological Restoration: Using Goats to Control Salt Cedar. Jornada Trails. 9:2.
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2005. Livestock as land management tools: weed control using goats. Proceedings of the Annual Conference of the Quivira Coalition.
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2005. Linking ecological processes adn environmental impacts across scales: Coastal ecology and energy development in the Caspian Sea. Ecological Society of American Abstracts Annual Meeting. :CDROM.
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2005. Line-point intercept, grid-point intercept,and ocular estimate methods: their relative value for rangeland assessment and monitoring. Society for Range Management Annual Meeting. :2380.
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2008. Leveraging standardized monitoring data to support grazing land soil erosion assessments. LTAR Annual Meeting.
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2021. Leveraging standardized monitoring data to support grazing land soil erosion assessments. LTAR Annual Meeting.
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2021. Legacy effects in linked ecological–soil– geomorphic systems of drylands. Frontiers in Ecology and the Environment. 13(1):13-19.
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2015. Leaf litter decomposition is rapidly enhanced by the co-occurrence of monsoon rainfall and soil-litter mixing across a gradient of coppice dune development in the Chihuahuan Desert. Journal of Arid Environments. 129:111-118.
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2016. Large-Eddy Simulations of Dust Devils and Convective Vortices. Space Science Reviews. 203(1-4):245-275.
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2016. Large-Eddy Simulations of Dust Devils and Convective Vortices. Space Science Reviews. 203(1-4):245-275.
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2016. Landscape-level phytochemistry of a Chihuahuan Desert shrubland. Annual Meeting, Phytochemical Society of North America. :49(AbstractNo.17).
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2002. Landscape variability in soil and vegetation response to 70-year-old restoration treatments. 93rd Ecological Society of America Annual Meetings. :67-159.
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2008. Landform and vegetation patch type moderate the effects of grazing-induced disturbance on carbon and nitrogen pools in a semi-arid woodland. Plant and Soil. 360:405-419.
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2012. Land management in the American Southwest: A state-and-transition approach to ecosystem complexity. Environmental Management. 34:38-51.
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2004. Knowledge, Learning, Analysis System (KLAS). 2015 LTER All Scientist Meeting.
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2015. Isolation predicts compositional change after discrete disturbances in a global meta-study. Ecography. 40:1256-1266.
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2017. Islands of hydrologically enhanced biotic productivity in natural and managed arid ecosystems. Journal of Arid Environments. 65:235-252.
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2004. Invasive plant species effects on wind and water erosion across US grazing lands . LTAR Annual Meeting.
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2021. Invasive plant species effects on wind and water erosion across US grazing lands . LTAR Annual Meeting.
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2021. Introducing version 5 of Interpreting Indicators of Rangeland Health. Society for Range Management Meeting. January 28-February 2, 2018
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2018. Interpreting indicators of rangeland health, version 5. Interpreting Indicators of Rangeland Health, Version 5. :202.
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2020. Interception of rainfall by tarbush. Journal of Range Management. 36:525-526.
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1983. Interception of rainfall by creosotebush (Larrea tridentata). Proceedings of XIV International Grassland Congress. Section 5:373-375.
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1981. Interception of rainfall by creosotebush. Proceedings of the XIV International Grassland Congress, Section 5. :373-375.
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1981. Interception by creosotebush and tarbush. 19th Annual Meeting, Water Resources Association Conference.
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1983. An integrated framework for science-based arid land management. Journal of Arid Environments. 65:319-335.
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2006. An integrated framework for multi-objective inventory, assessment, and monitoring. Sixth Symposium on the Natural Resources of the Chihuahuan Desert Region. :28.
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2004. An integrated framework for multi-objective inventory, assessment, and monitoring. Sixth Symposium on the Natural Resources of the Chihuahuan Desert Region. :28.
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2004. An integrated approach to grazingland ecological assessments and management interpretations. Journal of Soil and Water Conservation. 69(4):110A-114A
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2014. Intake of cooked molasses blocks and subsequent performance of young postpartum cows grazing native range. Proceedings of the Western Section Meeting, American Society of Animal Science. 45:76-79.
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1994. Insights on seasonal fluxes in a desert shrubland watershed from a distributed sensor network. :171.
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1990. Infiltration rates on rootplow-treated rangeland. American Geophysical Union, EOS Trans. 59:1071.
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1978. Infiltration rates on rootplowed rangeland. Journal of Range Management. 33:423-425.
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1980. Infiltration and runoff water quality of selected sites within four critical yield watersheds: A hydrologic assessment of land use practices in New Mexico. 19th Annual Meeting of the American Water Resources Association.
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1983. Inference space vs. sampling requirements: A simulation study of soil properties on rangeland ecosites. 62nd Society for Range Management Annual Meeting. :90-7.
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2009. Indicators of Great Basin rangeland health. Journal of Arid Environments. 45:289-304.
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2000. Indicators and benchmarks for wind erosion monitoring, assessment and management. Ecological Indicators. 110(105881)
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2020. Incorporating invasive species and degraded landscapes into ecological site descriptions. Society for Range Management Annual Meeting. :2100.
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2008. Improving the effectiveness of ecological site descriptions: General state-and-transition models and the Ecosystem Dynamics Interpretive Tool (EDIT). Rangelands. 38:329-335
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2016. Improving production from arid rangelands of the southwestern United States. Proceedings of the 13th International Grassland Congress. :625-628.
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1977. Improving Landsat predictions of rangeland fractional cover with multitask learning and uncertainty. Methods in Ecology and Evolution. 12(5):841-846.
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2021. Improving ground cover monitoring for wind erosion assessment using MODIS BRDF parameters. Remote Sensing of Environment. 204:756-768.
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2018. Improved satellite snow mapping, snowmelt runoff forecasting, and climate change in simulations in the upper Rio Grande basin. World Resource Review. 15:25-41.
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2003.