Jornada Bibliography
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Nonprotein and carotene as an index of plant activity in range forage. Journal of Agricultural Research. 75:63-69.
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1947. The monthly protein and phosphorus contents of two important range grasses of Southern New Mexico. Journal of Animal Science. 4:298-305.
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1945. .
1943. Monthly variation in carotene content of two important range grasses, Sporobolus flexuosus and Bouteloua eriopoda. Journal of Agricultural Research. 58:695-99.
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1939. .
1937. Some new and little known insects of economic importance on range grasses. Journal of Economic Entomology. 60:961-63.
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1967. .
1965. Insects associated with black grama grass, Bouteloua eriopoda. Annals of the Entomological Society of America. 56:374-379.
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1963. A National Wind Erosion Monitoring Network to support and all-lands wind erosion model. Eighth International Conference on Aeolian Research (ICAR VIII). :p.427.
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2014. Reducing sampling uncertainty in aeolian research to improve change detection. Journal of Geophysical Research. 124:1-12.
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2019. Soil organic carbon dust emission: a synthesis of recent Australian research . Eighth International Conference on Aeolian Research (ICAR VIII). :p.196.
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2014. Indicators and benchmarks for wind erosion monitoring, assessment and management. Ecological Indicators. 110(105881)
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2020. A note on the use of drag partition in aeolian transport models. Aeolian Research. 42(100560)
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2020. A national wind erosion research network. 18th International Soil Conservation Organization Conference.
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2015. Defining thresholds for wind erosion in desert rangeland STMs. Society for Rangeland Meetings. Session 9
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2020. Threshold wind velocity dynamics as a driver of aeolian sediment mass flux. Aeolian Research. 20:45-59.
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2016. Ecosystem dynamics and aeolian sediment transport in the southern Kalahari. African Journal of Ecology. 58:337-344.
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2020. .
2015. Vegetation Canopy Gap Size and Height: Critical Indicators for Wind Erosion Monitoring and Management. Rangeland Ecology & Management. 76:78-83.
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2021. Implications of carbon dust emission for terrestrail carbon cycling and carbon accounting. American Geophysical Union. A33D-0184
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2012. Size distribution of mineral dust emissions from sparsely vegetated and supply-limited dryland soils. Journal of Geophysical Research: Atmospheres. 126(22):e2021JD035478.
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2021. The National Wind Erosion Research Network: Building a standardized long-term data resource for aeolian research, modeling and land management. Aeolian Research. 22:23-36.
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2016. Invasive plant species effects on wind and water erosion across US grazing lands . LTAR Annual Meeting.
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2021. Using albedo to reform wind erosion modelling, mapping and monitoring. Aeolian Research. 23
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2016. The National Wind Erosion Research Network: Building a standardized long-term data resource for aeolian research, modeling and land management. 9th International Conference on Aeolian Research.
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2016. Using state-and-transition models to evaluate impacts of land cover change on wind erosion. Society for Range Management Meeting Abstracts. Jan 29 - Feb 02, 2017
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2017. Enhancing wind erosion monitoring and assessment for US rangelands. Rangelands. 39:85-96.
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2017. Land degradation and climate change: building climate resilience in agriculture. Frontiers in Ecology and the Environment. 15:450-459.
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2017. The significance of carbon-enriched dust for global carbon accounting. Global Change Biology. 18:3275-3278.
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2012. Primary productivity and water use in native forest, grassland, and desert ecosystem. Ecology. 59:1239-1247.
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1978. Multi-scale wind erosion monitoring and assessment for US rangelands. Society for Range Management Meeting. January 28-February 2, 2018
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2018. .
2013. The effect of roughness elements on wind erosion: The importance of surface shear stress distribution. Journal of Geophysical Research: Atmospheres. 119:6066-6084.
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2014. Ecological site-based assessments of wind and water erosion: Informing accelerated soil erosion management in rangelands. Ecological Applications. 24(6):1405-1420.
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2014. Roughness configuration matters for aeolian sediment flux. Eighth International Conference on Aeolian Research (ICAR VIII). :p.12.
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2014. How to detect change in aeolian sediment transport. International Conference on Aeolian Research.
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2018. Quantifying accelerated soil erosion through ecological site-based assessments of wind and water erosion. Eighth International Conference on Aeolian Research (ICAR VIII). :p.357.
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2014. A more or less dusty future? Ecological Society of America Meeting.
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2018. Feed production. Animal Agriculture, Research to Meet Human Needs in the 21st Century. :153-191.
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1980. A field test of a model for the stability of androdioecy in the freshwater shrimp, Eulimnadia texana. Journal of Evolutionary Biology. :1-16.
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2014. .
2007. Banded vegetation-dune development during the Medieval Warm Period and 20th century, Chihuahuan Desert, New Mexico, USA. Ecosphere. 3(3):art21.
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2012. Observations of Snow Crystals using Low-Temperature Scanning Electron Microscopy. Scanning: The Journal of Scanning Microscopies. 17(1):41-49.
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1995. Using salt to regulate grazing. American Hereford Journal. 28:30-31.
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1937. .
1972. Some ecological relationships between creosotebush and bush muhly. Journal of Range Management. 29:427-475.
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1976. Setting the stage to enhance ecological site description appplications to wildlife management in sagebrush ecosystems: A 2007 society for range management workshop. Society for Range Management Annual Meeting. :1000-16.
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2009. Low temperature SEM of precipitated and metamorphosed snow crystals collected and transported from remote sites. Hitachi Instrument News. 37:11-24.
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1996. Observations of snow and ice crystals with low temperature scanning electron microscopy (Review). 74th Annual Western Snow Conference. :3-14.
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2006. Cryobionts in Snow and Ice Observed with Low Temperature Scanning Electron Microscope (SEM) and Transmission Electron Microscopy (TEM). Geological Society of American Meeting. 37:267,PaperNo.118-6.
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2005.