38 datasets found
  1. Build a health resources inventory using Web AppBuilder for ArcGIS (video)

    • data.amerigeoss.org
    • coronavirus-disasterresponse.hub.arcgis.com
    esri rest, html
    Updated Mar 17, 2020
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    ESRI (2020). Build a health resources inventory using Web AppBuilder for ArcGIS (video) [Dataset]. https://data.amerigeoss.org/ja/dataset/activity/build-a-health-resources-inventory-using-web-appbuilder-for-arcgis-video
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    html, esri restAvailable download formats
    Dataset updated
    Mar 17, 2020
    Dataset provided by
    Esrihttp://esri.com/
    Description

    Build a health resources inventory using Web AppBuilder for ArcGIS (YouTube video).


    This application is used by public health and human services agencies to inventory homeless, drug treatment, and other health and human service providers in a community.

    _

    Communities around the world are taking strides in mitigating the threat that COVID-19 (coronavirus) poses. Geography and location analysis have a crucial role in better understanding this evolving pandemic.

    When you need help quickly, Esri can provide data, software, configurable applications, and technical support for your emergency GIS operations. Use GIS to rapidly access and visualize mission-critical information. Get the information you need quickly, in a way that’s easy to understand, to make better decisions during a crisis.

    Esri’s Disaster Response Program (DRP) assists with disasters worldwide as part of our corporate citizenship. We support response and relief efforts with GIS technology and expertise.


  2. Landsat Explorer App

    • data.amerigeoss.org
    esri rest, html
    Updated Jun 1, 2020
    + more versions
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    Esri (2020). Landsat Explorer App [Dataset]. https://data.amerigeoss.org/de/dataset/landsat-explorer-app2
    Explore at:
    esri rest, htmlAvailable download formats
    Dataset updated
    Jun 1, 2020
    Dataset provided by
    Esrihttp://esri.com/
    Description

    This web application highlights some of the capabilities for accessing Landsat imagery layers, powered by ArcGIS for Server, accessing Landsat Public Datasets running on the Amazon Web Services Cloud. The layers are updated with new Landsat images on a daily basis.

    Created for you to visualize our planet and understand how the Earth has changed over time, the Esri Landsat Explorer app provides the power of Landsat satellites, which gather data beyond what the eye can see. Use this app to draw on Landsat's different bands to better explore the planet's geology, vegetation, agriculture, and cities. Additionally, access the entire Landsat archive to visualize how the Earth's surface has changed over the last forty years.

    Quick access to the following band combinations and indices is provided:

    • Agriculture : Highlights agriculture in bright green; Bands 6, 5, 2
    • Natural Color : Sharpened with 15m panchromatic band; Bands 4, 3, 2 +8
    • Color Infrared : Healthy vegetation is bright red; Bands 5, 4 ,3
    • SWIR (Short Wave Infrared) : Highlights rock formations; Bands 7, 6, 4
    • Geology : Highlights geologic features; Bands 7, 6, 2
    • Bathymetric : Highlights underwater features; Bands 4, 3, 1
    • Panchromatic : Panchromatic images at 15m; Band 8
    • Vegetation Index : Normalized Difference Vegetation Index(NDVI); (Band 5 - Band 4)/(Band 5 + Band 4)
    • Moisture Index : Normalized Difference Moisture Index (NDMI); (Band 5 - Band 6)/(Band 5 + Band 6)
    • SAVI : Soil Adjusted Veg. Index); Offset + Scale*(1.5*(Band 5 - Band 4)/(Band 5 + Band 4 + 0.5))
    • Water Index : Offset + Scale*(Band 3 - Band 6)/(Band 3 + Band 6)
    • Burn Index : Offset + Scale*(Band 5 - Band 7)/(Band 5 + Band 7)
    • Urban Index : Offset + Scale*(Band 5 - Band 6)/(Band 5 + Band 6)
    Optionally, you can also choose the "Custom Bands" or "Custom Index" option to create your own band combinations

    The Time tool enables access to a temporal time slider and a temporal profile of different indices for a selected point. The Time tool is only accessible at larger zoom scales. It provides temporal profiles for NDVI (Normalized Difference Vegetation Index), NDMI (Normalized Difference Moisture Index) and Urban Index. The Identify tool enables access to information on the images, and can also provide a spectral profile for a selected point. The Stories tool will direct you to pre-selected interesting locations.

    The application is written using Web AppBuilder for ArcGIS accessing imagery layers using ArcGIS API for JavaScript.

    The following Imagery Layers are being accessed :
    • Multispectral Landsat - Provides access to 30m 8-band multispectral imagery and a range of functions that provide different band combinations and indices.
    • Pansharpened Landsat - Provides access to 15m 4-band (Red, Green, Blue and NIR) panchromatic-sharpened imagery.
    • Panchromatic Landsat - Provides access to 15m panchromatic imagery.

    These imagery layers can be accessed through the public group Landsat Community on ArcGIS Online.

  3. Arctic DEM Explorer (Mature Support)

    • sdgs.amerigeoss.org
    • communities-amerigeoss.opendata.arcgis.com
    Updated Aug 30, 2016
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    Esri (2016). Arctic DEM Explorer (Mature Support) [Dataset]. https://sdgs.amerigeoss.org/datasets/esri::arctic-dem-explorer-mature-support
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    Dataset updated
    Aug 30, 2016
    Dataset authored and provided by
    Esrihttp://esri.com/
    Description

    Important Note: This item is in mature support as of July 2024 and will retire in December 2025. A new version of this item is available for your use. Esri recommends updating your maps and apps to use the new version.This web application enables the exploration of Arctic elevation based on the 2m resolution Arctic Digital Elevation Models (DEM) created by the Polar Geospatial Center. The app displays multiple different renderings as well as profiles of the data. In many areas the coverage is available from multiple dates and the app displays temporal profiles as well as computing the differences. The current datasets consisting of 2m DEMs, cover the Arctic from 60*N to the Pole and will gradually, and incrementally be replaced with better 2m versions as they are produced during 2018. The elevations are digital surface models photogrammetrically generated from stereo satellite imagery and have not been edited to create terrain heights. The current datasets are preliminary and are known to contain some errors and artifacts. As more control becomes available, the elevation values will be refined and adjusted. The original PGC datasets have been adjusted according to the PGC proposed correction parameters, to give WGS84 ellipsoidal heights, but available in this service also as orthometric heights computed using the EGM2008 geoid separation. Details on how the DEMs are generated and their use can be found in ArcticDEM datasets. The DEMs were created from DigitalGlobe, Inc., imagery and funded under National Science Foundation awards 1043681, 1559691, and 1542736.The app also provides access to the Arctic Landsat imagery that is updated daily and also served through ArcGIS Online.Quick access to server functions defined for the following elevation derivatives are provided:Hillshade – Hillshaded surface generated dynamically on elevation layer, with a solar azimuth of 315 degrees and solar altitude of 45 degreesMulti-Directional Hillshade – Multi-directional hillshaded surface generated dynamically on elevation layer, computing hillshade from 6 different directionsElevation Tinted Hillshade – Elevation tinted hillshade surface generated dynamically on elevation layerSlopeMap – A color visualization of Slope surface generated dynamically on elevation layer, where flat surfaces is gray, shallow slopes are yellow and steep slopes are orangeAspectMap - A color visualization of aspect generated dynamically on elevation layerContour – Dynamically generated contours with specified contour intervals and options for smoothing to create more cartographically pleasing contours.The Time tool enables access to a temporal time slider and temporal profile for a selected point. The Time tool is only accessible at larger zoom scales. The Identify tool enables access to elevation, slope and aspect values for the specified point as well as information on the source image and links to download the source data. From the app it is also possible to export defined areas of the DEMs. These can be exported in user defined projections and resolutions. The Bookmark tool link to pre-selected interesting locations.For more information on the underlying services see Arctic DEM layer.The application is written using Web AppBuilder for ArcGIS accessing imagery layers using the ArcGIS API for JavaScript.

  4. V

    Land Disturbing Web App

    • data.virginia.gov
    Updated Dec 5, 2019
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    Bedford County GIS Portal (2019). Land Disturbing Web App [Dataset]. https://data.virginia.gov/dataset/land-disturbing-web-app
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    arcgis geoservices rest api, htmlAvailable download formats
    Dataset updated
    Dec 5, 2019
    Dataset provided by
    Bedford County GIS
    Authors
    Bedford County GIS Portal
    Description

    This web app is designed to display all land disturbance permits in Bedford County, VA. In this application, the permit points are red if the land disturbance is residential and blue if it is commercial. The user can view which district, subdivision, or hydrologic boundary each point is in by turning the layers on and off. Another feature of the web application is that, instead of scanning through the map looking for a specific point, the user can search for the point by its LD Number or its RPC Number.

  5. Dufferin County: Data Dufferin

    • municipalities-ontarioregion.hub.arcgis.com
    Updated Feb 22, 2019
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    Esri Canada App Showcase (2019). Dufferin County: Data Dufferin [Dataset]. https://municipalities-ontarioregion.hub.arcgis.com/datasets/esrica-apps::dufferin-county-data-dufferin
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    Dataset updated
    Feb 22, 2019
    Dataset provided by
    Esri Canada
    Esrihttp://esri.com/
    Authors
    Esri Canada App Showcase
    Area covered
    Description

    This is the community's public platform for exploring and downloading open data, discovering and building apps, and engaging to solve important local issues. You can analyze and combine Open Datasets using maps, as well as develop new web and mobile applications. [Dufferin County]

  6. Daily Sea Surface Temperature - Time Aware

    • hub.arcgis.com
    • angola.africageoportal.com
    • +4more
    Updated Jun 16, 2017
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    Esri Ocean and Coastal Environments (2017). Daily Sea Surface Temperature - Time Aware [Dataset]. https://hub.arcgis.com/items/f4da876dce3a4ce58b165a3e4eb6819e
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    Dataset updated
    Jun 16, 2017
    Dataset provided by
    Esrihttp://esri.com/
    Authors
    Esri Ocean and Coastal Environments
    Area covered
    Description

    The Daily Sea Surface Temperature application was built using the Web App Builder. The content used in the application comes from Esri's Living Atlas of the World. The time slider widget was used to configure the time-aware Sea Surface Temperature service.This application is intended to help users view and explore the temporal sea surface temperature service.

  7. Landsat Explorer Classic (Mature Support)

    • morocco.africageoportal.com
    • agriculture.africageoportal.com
    • +5more
    Updated Jan 9, 2018
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    Esri (2018). Landsat Explorer Classic (Mature Support) [Dataset]. https://morocco.africageoportal.com/datasets/esri::landsat-explorer-classic-mature-support
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    Dataset updated
    Jan 9, 2018
    Dataset authored and provided by
    Esrihttp://esri.com/
    Description

    Important Note: This item is in mature support as of February 2024 and is no longer being updated. A new version of this item is available for your use.This web application highlights some of the capabilities for accessing Landsat imagery layers, powered by ArcGIS for Server, accessing Landsat Public Datasets running on the Amazon Web Services Cloud. The layers are updated with new Landsat images on a daily basis.Created for you to visualize our planet and understand how the Earth has changed over time, the Esri Landsat Explorer app provides the power of Landsat satellites, which gather data beyond what the eye can see. Use this app to draw on Landsat's different bands to better explore the planet's geology, vegetation, agriculture, and cities. Additionally, access the entire Landsat archive to visualize how the Earth's surface has changed over the last forty years.Quick access to the following band combinations and indices is provided:Agriculture : Highlights agriculture in bright green; Bands 6, 5, 2Natural Color : Sharpened with 15m panchromatic band; Bands 4, 3, 2 +8Color Infrared : Healthy vegetation is bright red; Bands 5, 4 ,3 SWIR (Short Wave Infrared) : Highlights rock formations; Bands 7, 6, 4Geology : Highlights geologic features; Bands 7, 6, 2Bathymetric : Highlights underwater features; Bands 4, 3, 1Panchromatic : Panchromatic images at 15m; Band 8Vegetation Index : Normalized Difference Vegetation Index(NDVI); (Band 5 - Band 4)/(Band 5 + Band 4)Moisture Index : Normalized Difference Moisture Index (NDMI); (Band 5 - Band 6)/(Band 5 + Band 6)SAVI : Soil Adjusted Veg. Index); Offset + Scale*(1.5*(Band 5 - Band 4)/(Band 5 + Band 4 + 0.5))Water Index : Offset + Scale*(Band 3 - Band 6)/(Band 3 + Band 6)Burn Index : Offset + Scale*(Band 5 - Band 7)/(Band 5 + Band 7)Urban Index : Offset + Scale*(Band 5 - Band 6)/(Band 5 + Band 6)Optionally, you can also choose the "Custom Bands" or "Custom Index" option to create your own band combinationsThe Time tool enables access to a temporal time slider and a temporal profile of different indices for a selected point. The Time tool is only accessible at larger zoom scales. It provides temporal profiles for NDVI (Normalized Difference Vegetation Index), NDMI (Normalized Difference Moisture Index) and Urban Index. The Identify tool enables access to information on the images, and can also provide a spectral profile for a selected point. The Stories tool will direct you to pre-selected interesting locations.The application is written using Web AppBuilder for ArcGIS accessing imagery layers using ArcGIS API for JavaScript.The following Imagery Layers are being accessed : Multispectral Landsat - Provides access to 30m 8-band multispectral imagery and a range of functions that provide different band combinations and indices.Pansharpened Landsat - Provides access to 15m 4-band (Red, Green, Blue and NIR) panchromatic-sharpened imagery.Panchromatic Landsat - Provides access to 15m panchromatic imagery. These imagery layers can be accessed through the public group Landsat Community on ArcGIS Online.

  8. f

    PublicSpaceInvestment

    • data.ferndalemi.gov
    • detroitdata.org
    • +2more
    Updated Aug 23, 2018
    + more versions
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    Downtown Detroit Partnership (2018). PublicSpaceInvestment [Dataset]. https://data.ferndalemi.gov/datasets/4919519ff7f047f78679c4a80384f416
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    Dataset updated
    Aug 23, 2018
    Dataset authored and provided by
    Downtown Detroit Partnership
    License

    MIT Licensehttps://opensource.org/licenses/MIT
    License information was derived automatically

    Area covered
    Description

    This host layers are the source of the DDP development web application, which includes new development projects and public space investment project in downtown Detroit. Data SourceNew Development: DDP Public space investment: DDPDevelopment Meta Data: OBJECTID: automatically produced id(unique)PARCELNO: (Foreign Key) Parcel number for this development projectSaleDate: Sale date for this parcel SalePrice: Sale price for this parcelTaxpayer1: Name of the taxpayer for this propertyPropClass: Class for this propertyTotSqFt: (used in web app) total Square feet for this propertyFull Address: full addressDowntownBIZ: if this development inside BIZParcelID: parcel IDBuildingName: (used in web app) Name of the building, used as the web app title for this developmentBuildingAddress: address for this building BuildingStatus: building status Owner: Owner of this development siteContactName: the contact name of this development ContactEmail:contact email CompletionData: Complete dateUseType: use type(primary, secondary)ProjectCost: (used in web app) project costFinancingSources: financing sourceMjrTenants: Major tenantsUnits: (used in web app) number of unitsSaleRent: rent description: (used in web app) Summary of this development, Public Space Investment Metadata:OBJECTID: automatically produced id(unique)Project: project nameLeadOrg: leading Organization Partners: partner nameTotalInvestment: total investment Description: description for this projectPicture: picture

  9. Sentinel Explorer Classic (Mature Support)

    • angola.africageoportal.com
    • morocco.africageoportal.com
    • +17more
    Updated May 22, 2018
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    Esri (2018). Sentinel Explorer Classic (Mature Support) [Dataset]. https://angola.africageoportal.com/items/93ba20b268fb426c9c665a6bcd816da8
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    Dataset updated
    May 22, 2018
    Dataset authored and provided by
    Esrihttp://esri.com/
    Description

    Important Note: This item is in mature support as of February 2025 and is no longer being updated. A new version of this item is available for your use.This web application highlights some of the capabilities for accessing Sentinel-2 imagery layers, powered by ArcGIS for Server, accessing Landsat Public Datasets running on the Amazon Web Services Cloud. The layers are updated with new Sentinel-2 images on a daily basis.Created for you to visualize our planet and understand how the Earth has changed over time, the Esri Sentinel-2 Explorer app provides the power of Sentinel-2 satellites, which gather data beyond what the eye can see. Use this app to draw on Sentinel's different bands to better explore the planet's geology, vegetation, agriculture, and cities. Additionally, access the Sentinel-2 archive to visualize how the Earth's surface has changed over the last fourteen monthsQuick access to the following band combinations and indices is provided:BandDescriptionWavelength (µm)Resolution (m)1Coastal aerosol0.433 - 0.453602Blue0.458 - 0.523103Green0.543 - 0.578104Red0.650 - 0.680105Vegetation Red Edge0.698 - 0.713206Vegetation Red Edge0.733 - 0.748207Vegetation Red Edge0.773 - 0.793208NIR0.785 - 0.900108ANarrow NIR0.855 - 0.875209Water vapour0.935 - 0.9556010SWIR – Cirrus1.365 - 1.3856011SWIR-11.565 - 1.6552012SWIR-22.100 - 2.28020Agriculture : Highlights vigorous vegetation in bright green, stressed vegetation dull green and bare areas brown; Bands 11, 8, 2Natural Color : Bands 4, 3, 2Color Infrared : Healthy vegetation is bright red while stressed vegetation is dull red; Bands 8, 4 ,3 SWIR (Short-wave Infrared) : Highlights rock formations; Bands 12, 11, 4Geology : Highlights geologic features; Bands 12, 11, 2Bathymetric : Highlights underwater features; Bands 4, 3, 1Vegetation Index : Normalized Difference Vegetation Index(NDVI) with Colormap ; (Band 8 - Band 4)/(Band 8 + Band 4)Moisture Index : Normalized Difference Moisture Index (NDMI); (Band 8 - Band 11)/(Band 8 + Band 11)Normalized Burn Ratio : (Band 8 - Band 12)/(Band 8 + Band 12)Built-Up Index : (Band 11 - Band 8)/(Band 11 + Band 8)NDVI Raw : Normalized Difference Vegetation Index(NDVI); (Band 8 - Band 4)/(Band 8 + Band 4)NDVI - VRE only Raw : NDVI with VRE bands only; (Band 6 - Band 5)/(Band 6 + Band 5)NDVI - VRE only Colorized : NDVI with VRE bands only with Colormap; (Band 6 - Band 5)/(Band 6 + Band 5)NDVI - with VRE Raw : Also known as NDRE. NDVI with VRE band 5 and NIR band 8; (Band 8 - Band 5)/(Band 8 + Band 5)NDVI - with VRE Colorized : Also known as NDRE with Colormap; (Band 8 - Band 5)/(Band 8 + Band 5)NDWI Raw : Normalized Difference Water index with Green band and NIR band; (Band 3 - Band 8)/(Band 3 + Band 8)NDWI - with VRE Raw : Normalized Difference Water index with VRE band 5 and Green band 3; (Band 3 - Band 5)/(Band 3 + Band 5)NDWI - with VRE Colorized : NDWI index with VRE band 5 and Green band 3 with Colormap; (Band 3 - Band 5)/(Band 3 + Band 5)Custom SAVI : (Soil Adjusted Veg. Index); Offset + Scale*(1.5*(Band 8 - Band 4)/(Band 8 + Band 4 + 0.5))Custom Water Index : Offset + Scale*(Band 3 - Band 12)/(Band 3 + Band 12)Custom Burn Index : Offset + Scale*(Band 8 - Band 13)/(Band 8 + Band 13)Urban Index : Offset + Scale*(Band 8 - Band 12)/(Band 8 + Band 12)Optionally, you can also choose the "Custom Bands" or "Custom Index" option to create your own band combinationsThe Time tool enables access to a temporal time slider and a temporal profile of different indices for a selected point. The Time tool is only accessible at larger zoom scales. It provides temporal profiles for indices like NDVI (Normalized Difference Vegetation Index), NDMI (Normalized Difference Moisture Index) and Urban Index. The Identify tool enables access to information on the images, and can also provide a spectral profile for a selected point. The Bookmark tool will direct you to pre-selected interesting locations.NOTE: Using the Time tool to access imagery in the Sentinel-2 archive requires an ArcGIS account.The application is written using Web AppBuilder for ArcGIS accessing imagery layers using ArcGIS API for JavaScript.The following Imagery Layer are being accessed : Sentinel-2 - Provides access to 10, 20, and 60m 13-band multispectral imagery and a range of functions that provide different band combinations and indices.

  10. Sentinel Explorer

    • geoglows.amerigeoss.org
    • cotedivoire.africageoportal.com
    • +2more
    Updated May 22, 2018
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    Esri (2018). Sentinel Explorer [Dataset]. https://geoglows.amerigeoss.org/app/esri::sentinel-explorer
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    Dataset updated
    May 22, 2018
    Dataset authored and provided by
    Esrihttp://esri.com/
    Description

    This web application highlights some of the capabilities for accessing Sentinel-2 imagery layers, powered by ArcGIS for Server, accessing Landsat Public Datasets running on the Amazon Web Services Cloud. The layers are updated with new Sentinel-2 images on a daily basis.Created for you to visualize our planet and understand how the Earth has changed over time, the Esri Sentinel-2 Explorer app provides the power of Sentinel-2 satellites, which gather data beyond what the eye can see. Use this app to draw on Sentinel's different bands to better explore the planet's geology, vegetation, agriculture, and cities. Additionally, access the Sentinel-2 archive to visualize how the Earth's surface has changed over the last fourteen monthsQuick access to the following band combinations and indices is provided:BandDescriptionWavelength (µm)Resolution (m)1Coastal aerosol0.433 - 0.453602Blue0.458 - 0.523103Green0.543 - 0.578104Red0.650 - 0.680105Vegetation Red Edge0.698 - 0.713206Vegetation Red Edge0.733 - 0.748207Vegetation Red Edge0.773 - 0.793208NIR0.785 - 0.900108ANarrow NIR0.855 - 0.875209Water vapour0.935 - 0.9556010SWIR – Cirrus1.365 - 1.3856011SWIR-11.565 - 1.6552012SWIR-22.100 - 2.28020Agriculture : Highlights vigorous vegetation in bright green, stressed vegetation dull green and bare areas brown; Bands 11, 8, 2Natural Color : Bands 4, 3, 2Color Infrared : Healthy vegetation is bright red while stressed vegetation is dull red; Bands 8, 4 ,3 SWIR (Short-wave Infrared) : Highlights rock formations; Bands 12, 11, 4Geology : Highlights geologic features; Bands 12, 11, 2Bathymetric : Highlights underwater features; Bands 4, 3, 1Vegetation Index : Normalized Difference Vegetation Index(NDVI) with Colormap ; (Band 8 - Band 4)/(Band 8 + Band 4)Moisture Index : Normalized Difference Moisture Index (NDMI); (Band 8 - Band 11)/(Band 8 + Band 11)Normalized Burn Ratio : (Band 8 - Band 12)/(Band 8 + Band 12)Built-Up Index : (Band 11 - Band 8)/(Band 11 + Band 8)NDVI Raw : Normalized Difference Vegetation Index(NDVI); (Band 8 - Band 4)/(Band 8 + Band 4)NDVI - VRE only Raw : NDVI with VRE bands only; (Band 6 - Band 5)/(Band 6 + Band 5)NDVI - VRE only Colorized : NDVI with VRE bands only with Colormap; (Band 6 - Band 5)/(Band 6 + Band 5)NDVI - with VRE Raw : Also known as NDRE. NDVI with VRE band 5 and NIR band 8; (Band 8 - Band 5)/(Band 8 + Band 5)NDVI - with VRE Colorized : Also known as NDRE with Colormap; (Band 8 - Band 5)/(Band 8 + Band 5)NDWI Raw : Normalized Difference Water index with Green band and NIR band; (Band 3 - Band 8)/(Band 3 + Band 8)NDWI - with VRE Raw : Normalized Difference Water index with VRE band 5 and Green band 3; (Band 3 - Band 5)/(Band 3 + Band 5)NDWI - with VRE Colorized : NDWI index with VRE band 5 and Green band 3 with Colormap; (Band 3 - Band 5)/(Band 3 + Band 5)Custom SAVI : (Soil Adjusted Veg. Index); Offset + Scale*(1.5*(Band 8 - Band 4)/(Band 8 + Band 4 + 0.5))Custom Water Index : Offset + Scale*(Band 3 - Band 12)/(Band 3 + Band 12)Custom Burn Index : Offset + Scale*(Band 8 - Band 13)/(Band 8 + Band 13)Urban Index : Offset + Scale*(Band 8 - Band 12)/(Band 8 + Band 12)Optionally, you can also choose the "Custom Bands" or "Custom Index" option to create your own band combinationsThe Time tool enables access to a temporal time slider and a temporal profile of different indices for a selected point. The Time tool is only accessible at larger zoom scales. It provides temporal profiles for indices like NDVI (Normalized Difference Vegetation Index), NDMI (Normalized Difference Moisture Index) and Urban Index. The Identify tool enables access to information on the images, and can also provide a spectral profile for a selected point. The Bookmark tool will direct you to pre-selected interesting locations.NOTE: Using the Time tool to access imagery in the Sentinel-2 archive requires an ArcGIS account.The application is written using Web AppBuilder for ArcGIS accessing imagery layers using ArcGIS API for JavaScript.The following Imagery Layer are being accessed : Sentinel-2 - Provides access to 10, 20, and 60m 13-band multispectral imagery and a range of functions that provide different band combinations and indices.

  11. a

    Lines

    • arc-gis-hub-home-arcgishub.hub.arcgis.com
    • dataportal.kenoshacounty.org
    • +2more
    Updated May 28, 2020
    + more versions
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    Archuleta County (2020). Lines [Dataset]. https://arc-gis-hub-home-arcgishub.hub.arcgis.com/datasets/ArchuletaCo::parceldrafter?layer=0
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    Dataset updated
    May 28, 2020
    Dataset authored and provided by
    Archuleta County
    Area covered
    Description

    Lines layer used to publish services used by the Parcel Drafter Web Application Builder widget.

  12. NOAA NCCOS Assessment: Prioritizing Areas for Future Seafloor Mapping and...

    • zenodo.org
    • datasets.ai
    • +3more
    zip
    Updated Oct 26, 2023
    + more versions
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    Jennifer Kraus; Bethany Williams; Tim Battista; Ken Buja; Jennifer Kraus; Bethany Williams; Tim Battista; Ken Buja (2023). NOAA NCCOS Assessment: Prioritizing Areas for Future Seafloor Mapping and Exploration in the U.S. Caribbean from 2019-06-28 to 2019-07-28 [Dataset]. http://doi.org/10.5281/zenodo.3909729
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    zipAvailable download formats
    Dataset updated
    Oct 26, 2023
    Dataset provided by
    Zenodohttp://zenodo.org/
    Authors
    Jennifer Kraus; Bethany Williams; Tim Battista; Ken Buja; Jennifer Kraus; Bethany Williams; Tim Battista; Ken Buja
    License

    CC0 1.0 Universal Public Domain Dedicationhttps://creativecommons.org/publicdomain/zero/1.0/
    License information was derived automatically

    Area covered
    Caribbean, United States
    Description

    Spatial information about the seafloor is critical for decision-making by marine resource science, management and tribal organizations. Coordinating data needs can help organizations leverage collective resources to meet shared goals. To help enable this coordination, the National Oceanic and Atmospheric Administration (NOAA) National Centers for Coastal Ocean Science (NCCOS) developed a spatial framework, process and online application to identify common data collection priorities for seafloor mapping, sampling and visual surveys off the US Caribbean territories of Puerto Rico and the US Virgin Islands. Fifteen participants from local federal, state, and academic institutions entered their priorities in an online application, using virtual coins to denote their priorities in 2.5x2.5 kilometer (nearshore) and 10x10 kilometer (offshore) grid size. Grid cells with more coins were higher priorities than cells with fewer coins. Participants also reported why these locations were important and what data types were needed. Results were analyzed and mapped using statistical techniques to identify significant relationships between priorities, reasons for those priorities and data needs. Fifteen high priority locations were broadly identified for future mapping, sampling and visual surveys. These locations include: (1) a coastal location in northwest Puerto Rico (Punta Jacinto to Punta Agujereada), (2) a location approximately 11 km off Punta Agujereada, (3) coastal Rincon, (4) San Juan, (5) Punta Arenas (west of Vieques Island), (6) southwest Vieques, (7) Grappler Seamount, (8) southern Virgin Passage, (9) north St. Thomas, (10) east St. Thomas, (11) south St. John, (12) west offshore St. Croix, (13) west nearshore St. Croix, (14) east nearshore St. Croix, and (15) east offshore St. Croix. Participants consistently selected (1) Biota/Important Natural Area, (2) Commercial Fishing and (3) Coastal/Marine Hazards as their top reasons (i.e., justifications) for prioritizing locations, and (1) Benthic Habitat Map and (2) Sub-bottom Profiles as their top data or product needs. This ESRI shapefile summarizes the results from this spatial prioritization effort. This information will enable US Caribbean organization to more efficiently leverage resources and coordinate their mapping of high priority locations in the region.

    This effort was funded by NOAA’s NCCOS and supported by CRCP. The overall goal of the project was to systematically gather and quantify suggestions for seafloor mapping, sampling and visual surveys in the US Caribbean territories of Puerto Rico and the US Virgin Islands. The results are will help organizations in the US Caribbean identify locations where their interests overlap with other organizations, to coordinate their data needs and to leverage collective resources to meet shared goals.

    There were four main steps in the US Caribbean spatial prioritization process. The first step was to identify the technical advisory team, which included the 4 CRCP members: 2 from each the Puerto Rico and USVI regions. This advisory team recommended 33 organizations to participate in the prioritization. Each organization was then requested to designate a single representative, or respondent, who would have access to the web tool. The respondent would be responsible for communicating with their team about their needs and inputting their collective priorities. Step two was to develop the spatial framework and an online application. To do this, the US Caribbean was divided into 4 sub regions: nearshore and offshore for both Puerto Rico and USVI. The total inshore regions had 2,387 square grid cells approximately 2.5x2.5 km in size. The total offshore regions consisted of 438 square grid cells 10x10 km in size. Existing relevant spatial datasets (e.g., bathymetry, protected area boundaries, etc.) were compiled to help participants understand information and data gaps and to identify areas they wanted to prioritize for future data collections. These spatial datasets were housed in the online application, which was developed using Esri’s Web AppBuilder. In step three, this online application was used by 15 participants to enter their priorities in each subregion of interest. Respondents allocated virtual coins in the grid cells to denote their priorities for each region. Respondents were given access to all four regions, despite which territory they represented, but were not required to provide input into each region. Grid cells with more coins were higher priorities than cells with fewer coins. Participants also reported why these locations were important and what data types were needed. Coin values were standardized across the nearshore and offshore zones and used to identify spatial patterns across the US Caribbean region as a whole. The number of coins were standardized because each subregion had a different number of grid cells and participants. Standardized coin values were analyzed and mapped using statistical techniques, including hierarchical cluster analysis, to identify significant relationships between priorities, reasons for those priorities and data needs. This ESRI shapefile contains the 2.5x2.5 km and 10x10 km grid cells used in this prioritization effort and associated the standardized coin values overall, as well as by organization, justification and product. For a complete description of the process and analysis please see: Kraus et al. 2020.

  13. Town of Oakville Open Data Portal

    • municipalities-ontarioregion.hub.arcgis.com
    Updated Feb 22, 2019
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    Esri Canada App Showcase (2019). Town of Oakville Open Data Portal [Dataset]. https://municipalities-ontarioregion.hub.arcgis.com/items/085fce93f98447e5a71ea8580bad8734
    Explore at:
    Dataset updated
    Feb 22, 2019
    Dataset provided by
    Esrihttp://esri.com/
    Esri Canada
    Authors
    Esri Canada App Showcase
    Area covered
    Description

    Welcome to the town's new Open Data Portal. The portal offers users of our datasets more ways to interact with and easily download the data. Explore our datasets by browsing the categories, or by entering keywords into the search bar. [Town of Oakville]

  14. A

    RTB Mapping application

    • data.amerigeoss.org
    • sdgs.amerigeoss.org
    • +1more
    esri rest, html
    Updated Aug 12, 2015
    + more versions
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    AmeriGEO ArcGIS (2015). RTB Mapping application [Dataset]. https://data.amerigeoss.org/ro/dataset/rtb-mapping-application
    Explore at:
    html, esri restAvailable download formats
    Dataset updated
    Aug 12, 2015
    Dataset provided by
    AmeriGEO ArcGIS
    Description

    RTB Maps is a cloud-based electronic Atlas. We used ArGIS 10 for Desktop with Spatial Analysis Extension, ArcGIS 10 for Server on-premise, ArcGIS API for Javascript, IIS web services based on .NET, and ArcGIS Online combining data on the cloud with data and applications on our local server to develop an Atlas that brings together many of the map themes related to development of roots, tubers and banana crops. The Atlas is structured to allow our participating scientists to understand the distribution of the crops and observe the spatial distribution of many of the obstacles to production of these crops. The Atlas also includes an application to allow our partners to evaluate the importance of different factors when setting priorities for research and development. The application uses weighted overlay analysis within a multi-criteria decision analysis framework to rate the importance of factors when establishing geographic priorities for research and development.


    Datasets of crop distribution maps, agroecology maps, biotic and abiotic constraints to crop production, poverty maps and other demographic indicators are used as a key inputs to multi-objective criteria analysis.


    Further metadata/references can be found here: http://gisweb.ciat.cgiar.org/RTBmaps/DataAvailability_RTBMaps.html


    DISCLAIMER, ACKNOWLEDGMENTS AND PERMISSIONS:

    This service is provided by Roots, Tubers and Bananas CGIAR Research Program as a public service. Use of this service to retrieve information constitutes your awareness and agreement to the following conditions of use.


    This online resource displays GIS data and query tools subject to continuous updates and adjustments. The GIS data has been taken from various, mostly public, sources and is supplied in good faith.


    RTBMaps GIS Data Disclaimer

    • The data used to show the Base Maps is supplied by ESRI.


    • The data used to show the photos over the map is supplied by Flickr.


    • The data used to show the videos over the map is supplied by Youtube.


    • The population map is supplied to us by CIESIN, Columbia University and CIAT.


    • The Accessibility map is provided by Global Environment Monitoring Unit - Joint Research Centre of the European Commission. Accessibility maps are made for a specific purpose and they cannot be used as a generic dataset to represent "the accessibility" for a given study area.


    • Harvested area and yield for banana, cassava, potato, sweet potato and yam for the year 200, is provided by EarthSat (University of Minnesota’s Institute on the Environment-Global Landscapes initiative and McGill University’s Land Use and the Global Environment lab). Dataset from Monfreda C., Ramankutty N., and Foley J.A. 2008.


    • Agroecology dataset: global edapho-climatic zones for cassava based on mean growing season, temperature, number of dry season months, daily temperature range and seasonality. Dataset from CIAT (Carter et al. 1992)


    • Demography indicators: Total and Rural Population from Center for International Earth Science Information Network (CIESIN) and CIAT 2004.


    • The FGGD prevalence of stunting map is a global raster datalayer with a resolution of 5 arc-minutes. The percentage of stunted children under five years old is reported according to the lowest available sub-national administrative units: all pixels within the unit boundaries will have the same value. Data have been compiled by FAO from different sources: Demographic and Health Surveys (DHS), UNICEF MICS, WHO Global Database on Child Growth and Malnutrition, and national surveys. Data provided by FAO – GIS Unit 2007.


    • Poverty dataset: Global poverty headcount and absolute number of poor. Number of people living on less than $1.25 or $2.00 per day. Dataset from IFPRI and CIAT


    THE RTBMAPS GROUP MAKES NO WARRANTIES OR GUARANTEES, EITHER EXPRESSED OR IMPLIED AS TO THE COMPLETENESS, ACCURACY, OR CORRECTNESS OF THE DATA PORTRAYED IN THIS PRODUCT NOR ACCEPTS ANY LIABILITY, ARISING FROM ANY INCORRECT, INCOMPLETE OR MISLEADING INFORMATION CONTAINED THEREIN. ALL INFORMATION, DATA AND DATABASES ARE PROVIDED "AS IS" WITH NO WARRANTY, EXPRESSED OR IMPLIED, INCLUDING BUT NOT LIMITED TO, FITNESS FOR A PARTICULAR PURPOSE.


    By accessing this website and/or data contained within the databases, you hereby release the RTB group and CGCenters, its employees, agents, contractors, sponsors and suppliers from any and all responsibility and liability associated with its use. In no event shall the RTB Group or its officers or employees be liable for any damages arising in any way out of the use of the website, or use of the information contained in the databases herein including, but not limited to the RTBMaps online Atlas product.


    APPLICATION DEVELOPMENT:

    Desktop and web development - Ernesto Giron E. (GeoSpatial Consultant) e.giron.e@gmail.com

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  15. a

    Lead Service Line Public Viewer

    • lead-cityofharvard.hub.arcgis.com
    • lead-service-line-inventory-5-novotny.hub.arcgis.com
    • +14more
    Updated Jun 20, 2024
    + more versions
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    coh6468 (2024). Lead Service Line Public Viewer [Dataset]. https://lead-cityofharvard.hub.arcgis.com/items/85fbac2e956d44f68e291df8e24e423c
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    Dataset updated
    Jun 20, 2024
    Dataset authored and provided by
    coh6468
    License
    Area covered
    Description

    An ArcGIS Web AppBuilder application used by the public to view the material of their service line.

  16. a

    Lead Service Line Editor

    • lead-service-line-inventory-badelf.hub.arcgis.com
    • lead-service-line-inventory-newedgeservices.hub.arcgis.com
    • +4more
    Updated May 22, 2023
    + more versions
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    noah_badelf (2023). Lead Service Line Editor [Dataset]. https://lead-service-line-inventory-badelf.hub.arcgis.com/items/d592edbf1d09460682d446041833a8db
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    Dataset updated
    May 22, 2023
    Dataset authored and provided by
    noah_badelf
    License
    Description

    An ArcGIS Web AppBuilder application used to edit lead service lines.

  17. a

    Lead Service Line Viewer

    • lead-blueisland.hub.arcgis.com
    • lead-cityofzion.hub.arcgis.com
    • +7more
    Updated Jul 10, 2024
    + more versions
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    CityofBlueIsland (2024). Lead Service Line Viewer [Dataset]. https://lead-blueisland.hub.arcgis.com/items/7fac93dbd858433396eb1bd46c91bea5
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    Dataset updated
    Jul 10, 2024
    Dataset authored and provided by
    CityofBlueIsland
    License
    Area covered
    Description

    An ArcGIS Web AppBuilder application used to view lead service lines.

  18. a

    Create a Map Maker app

    • resources-gisinschools-nz.hub.arcgis.com
    • gisinschools.eagle.co.nz
    Updated Sep 4, 2023
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    GIS in Schools - Teaching Materials - New Zealand (2023). Create a Map Maker app [Dataset]. https://resources-gisinschools-nz.hub.arcgis.com/datasets/create-a-map-maker-app
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    Dataset updated
    Sep 4, 2023
    Dataset authored and provided by
    GIS in Schools - Teaching Materials - New Zealand
    Description

    This Story Map is designed to help teachers to create a web application that is similar to the National Geographic Map Maker app.This application is made with the Atlas ArrcGIS Online Instant App TemplateNo audio is included in any of the videos in this StoryMap

  19. a

    Lead Service Line Replacement Manager

    • lead-service-line-inventory-miamibeach.hub.arcgis.com
    • lead-service-line-inventory-government.hub.arcgis.com
    Updated Jan 23, 2023
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    Miami Beach Public Works GIS (2023). Lead Service Line Replacement Manager [Dataset]. https://lead-service-line-inventory-miamibeach.hub.arcgis.com/datasets/lead-service-line-replacement-manager
    Explore at:
    Dataset updated
    Jan 23, 2023
    Dataset authored and provided by
    Miami Beach Public Works GIS
    License
    Description

    An ArcGIS Web AppBuilder application used to manage the replacement status of lead service lines.

  20. a

    Regions

    • idpr-data-idaho.hub.arcgis.com
    • the-idaho-map-open-data-idaho.hub.arcgis.com
    Updated Mar 16, 2024
    + more versions
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    State of Idaho (2024). Regions [Dataset]. https://idpr-data-idaho.hub.arcgis.com/datasets/regions-3
    Explore at:
    Dataset updated
    Mar 16, 2024
    Dataset authored and provided by
    State of Idaho
    Area covered
    Description

    IDPR's Idaho Trails App Dataset, Web Map, and Web App have been extensively retooled for 2024.

    Feature Service

    The new App is served by this Hosted Feature Layer dataset which can be updated more frequently and on-the-fly-- changes will appear on the App and through the feature Service in real time. The newest web presentation technology under AGOL, Experience Builder, served by this dataset, will make possible several extended features to come in future updates to the App. This packaged release replaces the App created with predecessor technology Web App Builder. Web App Builder technology is scheduled to be phased out by Esri by the end of 2024.

    Under the hood

    Linear routes, closure routes and areas, and boundary area data are ported through a Web Map from the underlying Hosted Feature Service (HFS). In addition to view settings for attributes popups set in the Web Map, additional visibility option not available directly included in the HFS data or controllable in the Web Map will be further processed in the Experience App presentation.

    Underlaying Classes in the Dataset:

    One single linear class "Idaho Routes" contains all road and trail features (60,000+ route segments):

    Routes characterized as recreational in nature include "High Clearance" (previously "Jeep" treated as a road type, now as a full-width "trail" type): High-clearance, Special Vehicle Designation (mostly OHVs >50"), OHVs 50" and under, and single-track (each width class separated by seasonal and not); E-Bike; and, non-motorized and non-mechanized. Routes where vehicles either must be highway-legal (OHVs prohibited; typically paved roads), or routes requiring Restricted plate for legal OHV travel (mostly JURISDICTION = County); combined from previously-separate Layers: Highway-legal, Automobile, Other Roads (each with subcategories for seasonal access restrictions).

    (Note: Different route types are no longer kept in separate layers as with the legacy Map Service dataset. Route symbology, and selectable visibility will be filtered based on the value in the SYMBOL attribute from the above linear class within the Web Map and Experience-based App. If dynamically consuming the Feature Service, provisions will need to be made to filter to select visibility by road and trail types based on the value in the SYMBOL field.)

    "Points of Interest" (point type data) is comprised of a layer previously titled "Trailheads" and now includes the flexibility of other types of lat/lon point-based information such as links to external maps and "attractions" information such as site seeing destinations not previously included in IDPR's map presentation.
    "Emergency Route Closures" contains linear route Closures (overlays any route where a Closure Order applies in web map) "Area Restrictions" is added for areas such as defined by human exclusion Orders (polygon; usually planned annual human or vehicle exclusion areas, but can be emergency closure as well) Multiple "Boundary" polygon classes contain boundary outlines and attributes information for IDPR Regions (3), Counties (44), Wildernesses (42), National Forests and Ranger Districts (39), and BLM District and Field Offices (12), and BLM land units (700+). These separate classes reduce the data footprint of the Routes data and are joined in App popups by geographic Intersection logic.

    Bonus Material:

    Added to the App are several optional, dynamic layers via publicly-available REST services selectable for visibility:

    Idaho Department of Lands- Lands Available for Recreational Use (visible by-default) Idaho Department of Fish & Game Hunting Units boundaries and numbers BLM Surface Management Agency layer for all local, state, and federal agencies which manage public lands (accessible, and not)
    US Forest Service Motor Vehicle Use Map, National Dataset (mirrors local MVUM paper and GeoPDF maps, where data available, lags local data when changes are made) National Park Service (NPS) Parks and Monuments areas and boundaries NOAA Snow Depth Other REST Services to be added based on utility in researching recreational access

    This dataset is published for the use of the individuals who fund this Program. Organizations wishing to consume this Feature Service into their own application should inquire to IDPR to obtain a use agreement and schema information to aid in development.AGOL Experience App here: https://experience.arcgis.com/experience/97a42a2a73c944ba918042faf518c689

    Inquire to maps@idpr.idaho.gov

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ESRI (2020). Build a health resources inventory using Web AppBuilder for ArcGIS (video) [Dataset]. https://data.amerigeoss.org/ja/dataset/activity/build-a-health-resources-inventory-using-web-appbuilder-for-arcgis-video
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Build a health resources inventory using Web AppBuilder for ArcGIS (video)

Explore at:
html, esri restAvailable download formats
Dataset updated
Mar 17, 2020
Dataset provided by
Esrihttp://esri.com/
Description

Build a health resources inventory using Web AppBuilder for ArcGIS (YouTube video).


This application is used by public health and human services agencies to inventory homeless, drug treatment, and other health and human service providers in a community.

_

Communities around the world are taking strides in mitigating the threat that COVID-19 (coronavirus) poses. Geography and location analysis have a crucial role in better understanding this evolving pandemic.

When you need help quickly, Esri can provide data, software, configurable applications, and technical support for your emergency GIS operations. Use GIS to rapidly access and visualize mission-critical information. Get the information you need quickly, in a way that’s easy to understand, to make better decisions during a crisis.

Esri’s Disaster Response Program (DRP) assists with disasters worldwide as part of our corporate citizenship. We support response and relief efforts with GIS technology and expertise.


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