Richard W. Ehrlich is a computer scientist who works for the National Center for Atmospheric Research in Boulder, Colorado. He received a B.S. in computer science from the University of Colorado at Boulder, and an M.S. and Ph.D. in computer science from the University of California, Berkeley. His research interests are in the area of wireless sensor networks, distributed systems, software engineering, and combinatorial optimization. For a long time, he has had an interest in GIS, and he has had the opportunity to develop and use GIS software. He sees GIS as an important tool for improving the situation of many people who have limited access to reliable information. He hopes that this work will ultimately help to improve the lives of these people and their capacity to contribute to society.
GIS is a tool that can be used to analyze and visualize all types of information. Land planning and the resulting patterns of development will be impacted by what may be considered to be one of the most important GIS tools for the future: flood forecasting. With the increasing popularity of computer games such as Pac-Man and Metroid on the Nintendo Entertainment System, the demand for information on the effects of large storm surges and tsunamis in coastal areas will only increase.
Geographic information systems have been used to incorporate various time data, such as time of day, into geospatial systems. GIS can also be used to coordinate datasets of various granularity or timeliness, such as satellite imagery, environmental data, and time of day, into geo-spatial information systems. The latter usage of GIS is often called geospatial information systems (GISt).
Geospatial information systems (GISt) is the most common term for the industry and profession concerned with these systems, and is roughly synonymous with geoinformatics and part of the broader geospatial field, which also includes GPS, remote sensing, etc. Geographic information science, the academic discipline that studies these systems and their underlying geographic principles, is often abbreviated as GIS, but the unambiguous GIScience is more common. GIScience is often considered a subdiscipline of geography within the branch of technical geography.
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One of the drawbacks to this approach was that we needed to recompile every time we made even a small change to the code. This slowed everything else we were doing down and because we couldn't always have someone waiting for the application to finish building. 827ec27edc