To help you get your maps code up and running, Brendan Kenny and Mano Marks point out some common mistakes and how to fix them in this video.  Look for typos. Remember that JavaScript is a case-sensitive language. Check the basics - some of the most common problems occur with the initial map creation. Such as:  Confirm that you've specified the zoom and center properties in your map options. Ensure that you have declared a div element in which the map will appear on the screen. Ensure that the div element for the map has a height. By default, div elements are created with a height of 0, and are therefore invisible.  Refer to our examples for a reference implementation.  Use a JavaScript debugger to help identify problems, like the one available in the Chrome Developer Tools. Start by looking in the JavaScript console for errors.  Post questions to Stack Overflow. Guidelines on how to post great questions are available on the Support page. Send feedback Except as otherwise noted, the content of this page is licensed under the Creative Commons Attribution 4.0 License, and code samples are licensed under the Apache 2.0 License. For details, see the Google Developers Site Policies. Java is a registered trademark of Oracle and/or its affiliates.

I use to utilize Arc2Earth to bring Googlemaps right into my GIS projects as background imagery. Imagery was sharp and loaded quickly. Unfortunately Arc2Earth went out of business and no one seems to have replaced them. I think there was licensing problems with Google. Where can I access imagery as good as Google for a decent cost? I am not interested in downloading data/tiles for every project. Right now I am using Bing maps thru ArcGIS online. Their imagery seems to be not as sharp as Google in most cases.


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Embed Google Map is a plugin for embedding one or more Google Maps to Joomla articles. Adding maps to an article is very simple, just add the address or the coordinates which location you want to show an a map inside google_maps tags to an article, and that's it! It's also possible to define the version of Google Maps (Google Maps, Google Maps Classic, Google Maps Embed API), the type of the map (normal, satellite, hybrid, terrain), the size of the map, the language of the Google Maps interface, zoom level, border layout and link to the full size map. Embedding maps created in Google Maps Engine is supported as well.

In 1994, the Clinton Administration privatized the internet backbone. Commercial firms took over the job of carrying long-distance internet traffic, allowing the government-funded NSFNET to be decommissioned. Officials were careful to ensure that no single company controlled too much of the backbone, helping to create a competitive market for internet connectivity that still exists today. These four maps illustrate how the market had evolved by the turn of the century. Four of the largest private long-distance network providers were UUNet, AT&T, Sprint, and Level 3. Each had its own nationwide (and global) network, and they competed with each other to provide long-distance connectivity to smaller networks. UUNet became part of WorldCom in 1996, and became part of Verizon in 2006. Today, Verizon operates one of the world's largest internet backbones, in competition with AT&T, Sprint, Level 3 and many other companies.

CesiumJS is an open source JavaScript library for creating world-class 3D globes and maps with the best possible performance, precision, visual quality, and ease of use. Developers across industries, from aerospace to smart cities to drones, use CesiumJS to create interactive web apps for sharing dynamic geospatial data.

Benjamin Strick is a digital investigator with a background in law, military and technology and is the Director of Investigations for the Centre for Information Resilience. He specialises in open source intelligence (OSINT), satellite imagery, influence, data and maps.

However, as the alerts are meant to draw users to the maps, we think this will still provide the spatial pattern of the heat stress - now at 5km resolution. 


 NOAA CRW also expanded the geographic network of the daily 5km Regional Virtual Stations to include all coral reefs around the world, based on available references. These included the Millennium Coral Reef project maps, the IUCN Coral Reefs of the World three-volume set, the UNEP/WCMC World Atlas of Coral Reefs, several country scale atlas publications, and a few other resources. These references also were used to develop the outline (in black) for each new 5km Regional Virtual Station. Each Station outline is based on a global 5km reef pixel mask developed by NOAA CRW, with the addition of a 20km buffer around each 5km reef mask. If we have missed a coral reef that you know of, please let us know the name and coordinates of the missing reef. 


 We do plan to produce an extensive set of Virtual Stations to represent single reefs using one to a few 5km pixels. This is a major undertaking that we are planning as a next phase of our implementation. However, this list of potentially more than a thousand Virtual Stations will be rather unwieldy for many users. We also may provide products that allow users to better query individual or groups of pixels. For now, that is best done using the netCDF files we have released for our 5km products. These will be fully compatible with the NOAA CoastWatch Data Analysis Tool (CDAT) available from our website, ArcGIS, and many other tools. 


 We encourage you to look over these daily 5km Regional Virtual Stations and send us your comments at coralreefwatch@noaa.gov. e24fc04721

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