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Juniperus woodlands are widely distributed in western North America. Few studies of seedling emergence, long-term survival, growth or mortality of the dominant Juniperus spp. in these woodlands have been carried out. Consequently, regeneration dynamics in these woodlands are poorly understood. Juniperus ashei is the dominant woody plant in the majority of woodland and savanna communities of the Edwards Plateau region in central Texas. We examined the emergence, mortality and growth of various spatial and temporal cohorts of J. ashei seedlings over an eight or nine-year period. Greatest emergence was found during the cool, mostly winter months and under the canopy of mature J. ashei trees. Emergence was significantly...
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This dataset presents current and future change agent models and combined future potential for change (PFC) within the pinyon-juniper woodland system Conservation Element.The pinyon-juniper woodland system extent was determined by querying the LANDFIRE existing vegetation dataset for Pinyon-Juniper Woodland and clipping the data to the ecoregion boundary.This dataset presents current and future change agent models and combined future potential for change (PFC). Potential for change (PFC) was determined by calculating the maximum potential for change among all change agents within each 1 km reporting unit. Current and future landscape intactness (LCM_C_FZ and LCM_N_FZ) are based on measures of landscape development...
This data set contains imagery from the National Agriculture Imagery Program (NAIP). The NAIP program is administered by USDA FSA and has been established to support two main FSA strategic goals centered on agricultural production. These are, increase stewardship of America's natural resources while enhancing the environment, and to ensure commodities are procured and distributed effectively and efficiently to increase food security. The NAIP program supports these goals by acquiring and providing ortho imagery that has been collected during the agricultural growing season in the U.S. The NAIP ortho imagery is tailored to meet FSA requirements and is a fundamental tool used to support FSA farm and conservation programs....
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This dataset presents current and future change agent models and combined future potential for change (PFC) within the pinyon-juniper woodland system Conservation Element.The pinyon-juniper woodland system extent was determined by querying the LANDFIRE existing vegetation dataset for Pinyon-Juniper Woodland and clipping the data to the ecoregion boundary.This dataset presents current and future change agent models and combined future potential for change (PFC). Potential for change (PFC) was determined by calculating the maximum potential for change among all change agents within each 1 km reporting unit. Current and future landscape intactness (LCM_C_FZ and LCM_N_FZ) are based on measures of landscape development...
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This map shows the current and near-term status of aquatic ecosystems, in addition to the input datasets used for the analysis and distribution modeling that were involved in producing these status datasets. These data are provided by Bureau of Land Management (BLM) "as is" and may contain errors or omissions. The User assumes the entire risk associated with its use of these data and bears all responsibility in determining whether these data are fit for the User's intended use. These data may not have the accuracy, resolution, completeness, timeliness, or other characteristics appropriate for applications that potential users of the data may contemplate. The User is encouraged to carefully consider the content of...
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To map the baseline distribution of juniper woodlands, we included all juniper, pinyon juniper, and mixed limber pine and juniper LANDFIRE Existing Vegetation Types (EVT). For additional details see the Wyoming Basin Rapid Ecoregional Assessment Open File Report Appendix. These data are provided by Bureau of Land Management (BLM) "as is" and may contain errors or omissions. The User assumes the entire risk associated with its use of these data and bears all responsibility in determining whether these data are fit for the User's intended use. These data may not have the accuracy, resolution, completeness, timeliness, or other characteristics appropriate for applications that potential users of the data may contemplate....
Pi�on pine and juniper woodlands in the southwestern United States are often represented as an expanding and even invasive vegetation type, a legacy of historic grazing, and culpable in the degradation of western rangelands. A long-standing emphasis on forage production, in combination with recent hazard fuel concerns, has prompted a new era of woodland management with stated restoration objectives. Yet the extent and dynamics of pi�on-juniper communities that predate intensive Euro-American settlement activities are poorly known or understood, while the intrinsic ecological, aesthetic, and economic values of old-growth woodlands are often overlooked. Historical changes in pi�on-juniper stands include two related,...
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The FSim burn probability was used to determine the majority (most common) burn probability within a 4km analysis unit in areas with juniper vegetation communities withing the ecoregion.
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This dataset presents current and future change agent models and combined future potential for change (PFC) within the pinyon-juniper woodland system Conservation Element.The pinyon-juniper woodland system extent was determined by querying the LANDFIRE existing vegetation dataset for Pinyon-Juniper Woodland and clipping the data to the ecoregion boundary.This dataset presents current and future change agent models and combined future potential for change (PFC). Potential for change (PFC) was determined by calculating the maximum potential for change among all change agents within each 1 km reporting unit. Current and future landscape intactness (LCM_C_FZ and LCM_N_FZ) are based on measures of landscape development...
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This dataset presents current and future change agent models and combined future potential for change (PFC) within the pinyon-juniper woodland system Conservation Element.The pinyon-juniper woodland system extent was determined by querying the LANDFIRE existing vegetation dataset for Pinyon-Juniper Woodland and clipping the data to the ecoregion boundary.This dataset presents current and future change agent models and combined future potential for change (PFC). Potential for change (PFC) was determined by calculating the maximum potential for change among all change agents within each 1 km reporting unit. Current and future landscape intactness (LCM_C_FZ and LCM_N_FZ) are based on measures of landscape development...
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A 10 km moving window was used on the Juniper conservation element to determine the relative density of Juniper within the moving window.
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This dataset presents current and future change agent models and combined future potential for change (PFC) within the pinyon-juniper woodland system Conservation Element.The pinyon-juniper woodland system extent was determined by querying the LANDFIRE existing vegetation dataset for Pinyon-Juniper Woodland and clipping the data to the ecoregion boundary.This dataset presents current and future change agent models and combined future potential for change (PFC). Potential for change (PFC) was determined by calculating the maximum potential for change among all change agents within each 1 km reporting unit. Current and future landscape intactness (LCM_C_FZ and LCM_N_FZ) are based on measures of landscape development...
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This data set contains imagery from the National Agriculture Imagery Program (NAIP). The NAIP program is administered by USDA FSA and has been established to support two main FSA strategic goals centered on agricultural production. These are, increase stewardship of America's natural resources while enhancing the environment, and to ensure commodities are procured and distributed effectively and efficiently to increase food security. The NAIP program supports these goals by acquiring and providing ortho imagery that has been collected during the agricultural growing season in the U.S. The NAIP ortho imagery is tailored to meet FSA requirements and is a fundamental tool used to support FSA farm and conservation programs....
Pi�on pine and juniper woodlands in the southwestern United States are often represented as an expanding and even invasive vegetation type, a legacy of historic grazing, and culpable in the degradation of western rangelands. A long-standing emphasis on forage production, in combination with recent hazard fuel concerns, has prompted a new era of woodland management with stated restoration objectives. Yet the extent and dynamics of pi�on-juniper communities that predate intensive Euro-American settlement activities are poorly known or understood, while the intrinsic ecological, aesthetic, and economic values of old-growth woodlands are often overlooked. Historical changes in pi�on-juniper stands include two related,...


map background search result map search result map Proportion of Juniper Land Cover (1-km scale) in the Wyoming Basins Ecoregional Assessment area Proportion of Juniper Land Cover (3-km scale) in the Wyoming Basins Ecoregional Assessment area Proportion of Juniper Land Cover (270-m scale) in the Wyoming Basins Ecoregional Assessment area Plat of the Juno and Gold Ridge Group and Adjoining and Conflicting Lodes in the Dos Cabezas Mining District Eureka Mine Section with Assay Data FSA 10:1 NAIP Imagery m_4211249_se_12_1_20150619_20151207 3.75 x 3.75 minute JPEG2000 from The National Map ADMMR Photo Archive file: Eureka 40-24 FSA 10:1 NAIP Imagery m_4511908_se_11_1_20160701_20160919 3.75 x 3.75 minute JPEG2000 from The National Map BLM REA NGB 2011 Juniper Burn Probability within 4km Analysis Unit BLM REA NGB 2011 Juniper Density within Moving Window BLM REA SLV 2013 Pinyon Juniper PFC 1km Poly Near Term Climate BLM REA SLV 2013 Pinyon Juniper PFC 1km Poly Vegetation Departure BLM REA SLV 2013 Pinyon Juniper PFC 1km Poly Fire BLM REA SLV 2013 Pinyon Juniper PFC 1km Poly Climate BLM REA SLV 2013 Pinyon Juniper 1km Poly BLM REA MBR 2010 Terrestrial Ecosystems Status - Great Basin Pinyon-Juniper Woodland BLM REA WYB 2011 Ch17 Juniper ADMMR Photo Archive file: Eureka 40-24 BLM REA SLV 2013 Pinyon Juniper PFC 1km Poly Near Term Climate BLM REA SLV 2013 Pinyon Juniper PFC 1km Poly Vegetation Departure BLM REA SLV 2013 Pinyon Juniper PFC 1km Poly Fire BLM REA SLV 2013 Pinyon Juniper PFC 1km Poly Climate BLM REA SLV 2013 Pinyon Juniper 1km Poly BLM REA MBR 2010 Terrestrial Ecosystems Status - Great Basin Pinyon-Juniper Woodland BLM REA NGB 2011 Juniper Burn Probability within 4km Analysis Unit BLM REA NGB 2011 Juniper Density within Moving Window BLM REA WYB 2011 Ch17 Juniper Proportion of Juniper Land Cover (1-km scale) in the Wyoming Basins Ecoregional Assessment area Proportion of Juniper Land Cover (3-km scale) in the Wyoming Basins Ecoregional Assessment area Proportion of Juniper Land Cover (270-m scale) in the Wyoming Basins Ecoregional Assessment area