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Python Geospatial Development

Python Geospatial Development - Third Edition

By : Westra
4.3 (4)
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Python Geospatial Development

Python Geospatial Development

4.3 (4)
By: Westra

Overview of this book

Geospatial development links your data to locations on the surface of the Earth. Writing geospatial programs involves tasks such as grouping data by location, storing and analyzing large amounts of spatial information, performing complex geospatial calculations, and drawing colorful interactive maps. In order to do this well, you’ll need appropriate tools and techniques, as well as a thorough understanding of geospatial concepts such as map projections, datums, and coordinate systems. This book provides an overview of the major geospatial concepts, data sources, and toolkits. It starts by showing you how to store and access spatial data using Python, how to perform a range of spatial calculations, and how to store spatial data in a database. Further on, the book teaches you how to build your own slippy map interface within a web application, and finishes with the detailed construction of a geospatial data editor using the GeoDjango framework. By the end of this book, you will be able to confidently use Python to write your own geospatial applications ranging from quick, one-off utilities to sophisticated web-based applications using maps and other geospatial data.
Table of Contents (15 chapters)
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14
Index

Summary

In this chapter, we learned about the various tools and techniques involved in developing geospatial applications that can be accessed via a web interface. We saw how web applications can be structured, learned that web application frameworks can simplify the process of building a web application, and saw how user-interface libraries make the job of implementing web applications much easier. We then looked at the concept of web services and saw how to implement a great-circle distance calculator as a web service. We also looked at how map rendering can be implemented as a web service and saw how tile caching can speed up the process of displaying maps within a web browser.

We next looked at the concept of slippy maps and saw how these can be built using a stack of off-the-shelf components. We also examined a number of common protocols for sharing and manipulating geospatial data.

Finally, we took an in-depth look at three particular tools and techniques that we will make use of in...

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Python Geospatial Development
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