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Area-Based Location Optimization: Urban Green Space Selection
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.
Solving Coverage and Location-Allocation Problems
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.
Location Optimization
This course introduces the basic principles of location optimization models and provides a hands-on tutorial on point-based location optimization using QGIS and LINGO.
Measuring Neighborhood Segregation and Diversity
This course reviews the various ways to measure both segregation and diversity at the neighborhood scale.
Urban Design for Planners 1: Software Tools
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.
Urban Design for Planners 2: Getting Started with QGIS and SketchUp
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 Design for Planners 3: Neighborhoods and Centers
This course demonstrates how to delineate neighborhoods and neighborhood centers in a given area and also illustrates a sample of neighborhood enhancing design improvements.
Urban Design for Planners 4: Mix and Proximity
Course instructor Emily Talen, PhD, FAICP provides step-by-step instruction on how to use data sets to visualize and map the configuration of mix and density along main commercial corridors and neighborhoods.
Urban Design for Planners 5: Density
Emily Talen, PhD, FAICP teaches urban design strategies for increasing density in neighborhoods and locating infill development appropriate to the context of specific neighborhoods. Talen also introduces urban design interventions proven to increase density.
Urban Design for Planners 6: Streetscape Design
Learn how to identify thoroughfares where traffic calming is a high priority, identify desired thoroughfare dimensions based on urban context, and redesign an existing thoroughfare.
Python Geospatial Analysis and Mapping
Learn how to use Python to work with urban spatial data.
Python Street Network Analysis
In this course we will learn how to use Python to conduct street network analysis with the OSMnx package.
CityEngine for Planners 3: Integration and GIS
Learn how to import real-world data from satellite imagery and terrain to GIS data.
Introduction to WebGIS
This course explains various Internet technologies commonly used to build web-based visualization applications with municipal data.
Building a Transit Map Web App
This course examines the entire process of building an interactive, web-based mapping application.
Transit Service Design 101
In this course, we will review the principles of transit service design, how resources are allocated and accounted for, and using the Remix software platform, we will design and evaluate a new transit route.
Conceptual Drawing for Planners
In this course, we will learn effective ways of drawing as a means to communicate design ideas and explore digital tools that support traditional drawing.
GIS Fundamentals: An Introduction
This first of a series of courses covering Geographic information Systems (GIS) will guide beginners interested in learning more about GIS, especially with the use of Esri's ArcGIS software.
GIS Fundamentals: Projections and Map Design
The course will continue core concepts of GIS that began in the first course, including projections, coordinate systems, cartography, and the difference between raster and vector data models.
GIS Fundamentals: Thematic Maps
This third GIS Fundamentals course covers the basics of making several kinds of thematic maps, including choropleth, dot density, and proportional symbol maps.
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