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Location-allocation problems involve locating supply sites and simultaneously allocating demand to those sites so the entire system is optimized. With this course, you will learn the basic principles of the coverage and location-allocation problems and be able to solve them using LINGO software and map the results in QGIS.
By the end of this course you will understand the basic principles of area-based location optimization and be able to solve the knapsack, threshold, and shape problems using LINGO software. The course also shows how to map the results of these skills in QGIS.
This course demonstrates how to delineate neighborhoods and neighborhood centers in a given area and also illustrates a sample of neighborhood enhancing design improvements.
Course instructor Emily Talen guides viewers through the process of transferring a shapefile of building outlines into SketchUp and processes of basic manipulation necessary to create a 3D model. Learn how to load data into QGIS, set the coordinate reference system, and change the graphic display of data layers.
Urban planners and urban designers are interested in building places that embody beauty and hope. In this course, Emily Talen, PhD, FAICP, presents free urban design software tools that can help urban planners and urban designers visualize changes in the built environment to support the overarching goal of creating better places.
As the field of planning continues to trend toward multi-modal, sustainable transportation practices, tools to model or analyze the walkability of a given area have grown in number and complexity. In this course, students will learn how to apply ArcMap and the Spatial Analyst extension to model walkability. The course assumes students have a working knowledge of GIS and basic familiarity with Spatial Analyst.