Showing 1 - 13 results of 13 for search '"Esri"', query time: 0.04s Refine Results
  1. 1

    Application of the ESRI Geostatistical Analyst for Determining the Adequacy and Sample Size Requirements of Ozone Distribution Models in the Carpathian and Sierra Nevada Mountains by Witold Fraczek, Andrzej Bytnerowicz, Michael J. Arbaugh

    Published 2001-01-01
    “…Models of O3 distribution in two mountain ranges, the Carpathians in Central Europe and the Sierra Nevada in California were constructed using ArcGIS Geostatistical Analyst extension (ESRI, Redlands, CA) using kriging and cokriging methods. …”
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    Article
  2. 2

    Appennino: A GIS Tool for Analyzing Wildlife Habitat Use by Marco Ferretti, Marco Foi, Gisella Paci, Walter Tosi, Marco Bagliacca

    Published 2012-01-01
    “…Visual Basic for Application programming language was employed to prepare the ESRI ArcGIS 9.x utility. The tool was tested on a dataset of 546 pheasant positions obtained from a study carried out in Tuscany (Italy). …”
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  3. 3

    Usage of Fuzzy Spatial Theory for Modelling of Terrain Passability by Alois Hofmann, Sarka Hoskova-Mayerova, Vaclav Talhofer

    Published 2013-01-01
    “…The concept of fuzzy sets is used for representation of classes, whose boundaries are not clearly (not sharply) set, namely, the fuzzy approach in overlaying operations realized in ESRI ArcGIS environment. The paper is based on a research project which is being solved at the Faculty of Military Technologies of the University of Defence. …”
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  4. 4

    Data mining and socio-spatial patterns of COVID-19: geo-prevention keys for tackling the pandemic by Olga De Cos Guerra, Valentín Castillo Salcines, David Cantarero Prieto

    Published 2021-12-01
    “…The main source is the daily records of micro-data on COVID-19 cases and the methodology is based on ESRI geo-technologies, and more specifically on a tool called SITAR (a Spanish acronym which stands for Fast-Action Territorial Information System). …”
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  5. 5

    GIS-Enabled Culvert Design: A Case Study in Tuscaloosa, Alabama by Ashton D. Greer, Zachary B. Wilbanks, Leah D. Clifton, Bradford Wilson, Andrew J. Graettinger

    Published 2018-01-01
    “…The module is embedded within ESRI ArcGIS 10.4 software, providing a seamless single platform that eliminates error propagation associated with cross-platform data transfer as well as providing 95% time savings over traditional calculation methods. …”
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  6. 6

    Estimación de Erosión Hidrica de Suelos para plan de Manejo del Campo Forestal Aguas Frías, Patagonia Argentina by Ana Cecilia Dufilho, María Cristina Frugoni, Pablo Macchi, Alan Thot

    Published 2011-12-01
    “…La estimación de la erosión potencial de los suelos del campo forestal se realizó utilizando la Ecuación Universal de Perdida de Suelos (USLE) y ArcGis 9.2 (ESRI, 2006) para realizar el análisis espacial, obteniendo un mapa de pérdida anual de suelos en tn/ha/año con una resolución espacial de 30 m. …”
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  7. 7

    Biodiversity conservation and threat reduction in Kibale and Queen Elizabeth conservation areas, Uganda by Joseph Katswera, Norah M. Mutekanga, Charles K.Twesigye

    Published 2020-07-01
    “…The data was analysed using Geographical Information System software ESRI ArcGIS version 10.31, threat reduction assessment tool, Pearson Chi square test, Spearman’s rho correlation coefficient, Paired Samples t Test, and one-way Analysis of Variables; and presented in tables and figures. …”
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  8. 8

    Revealing Halal Certification Oversight Gaps for MSEs through ArcGIS Dashboard Integration by Imam Arifa’illah Syaiful Huda, Maratun Saadah, Agus Sugiarto, Mohd Hairy Bin Ibrahim, Ravinesh Rohit Prasad, Alfyananda Kurnia Putra, Ahyat Budianto

    Published 2024-08-01
    “…Methods for developing geospatial technology-based management of halal industry applications use analysis, design, development and evaluation through the ArcGIS online platform developed by Environmental Systems Research Institute (Esri). The findings of this research highlight the potential of geospatial technology in the halal industry. …”
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  9. 9

    Biodiversity conservation and threat reduction in Kibale and Queen Elizabeth conservation areas, Uganda by Joseph Katswera, Norah M. Mutekanga, Charles K.Twesigye

    Published 2020-07-01
    “…The data was analysed using Geographical Information System software ESRI ArcGIS version 10.31, threat reduction assessment tool, Pearson Chi square test, Spearman’s rho correlation coefficient, Paired Samples t Test, and one-way Analysis of Variables; and presented in tables and figures. …”
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    Article
  10. 10

    Soil erosion assessment and watershed prioritization using GIS-based RUSLE in lower Shivaliks of Northwest India by Abrar Yousuf, Navneet Sharma, Mohammad Amin Bhat, Anil Khokhar, Parminder Singh Sandhu, Balwinder Singh Dhillon, Ahmed Abdullah Al Dughairi, Hussein Almohamad, Hazem Ghassan Abdo

    Published 2025-01-01
    “…The R factor was obtained from gridded rainfall data of IMD, K factor from FAO soil map, LS factor from ALOS PALSAR DEM, and C from ESRI LULC map. The study area was delineated into seven watersheds (WS-1 to WS-7) based on the map of Soil and Land Use Survey of India. …”
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  11. 11

    ESTIMACIÓN DE EROSIÓN HIDRICA DE SUELOS PARA PLAN DE MANEJO DEL CAMPO FORESTAL AGUAS FRÍAS, PATAGONIA ARGENTINA by Ana C. Dufilho, María C. Frugoni, Pablo Macchi, Alan Toth

    Published 2011-12-01
    “…The estimation of the potential erosion of the floors of the forest field was carried out utilizing the Universal Soil Lost Equation (USLE) and ArcGis 9,2 (ESRI, 2006) to carry out the spatial analysis, obtaining a map of annual soil loss ( tn/has/year) with a spatial resolution of 30 m. …”
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  12. 12

    Spatiotemporal Correlation Analysis for the Incidence of Esophageal and Gastric Cancer From 2010 to 2019: Ecological Study by Zixuan Cui, Chen Suo, Yidan Zhao, Shuo Wang, Ming Zhao, Ruilin Chen, Linyao Lu, Tiejun Zhang, Xingdong Chen

    Published 2025-01-01
    “…Spatial autocorrelation analysis using Moran I in ArcGIS 10.8 (Esri) was performed to determine spatial clustering of each cancer incidence. …”
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  13. 13