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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.
Building a Transit Map Web App
This course examines the entire process of building an interactive, web-based mapping application.
Introduction to WebGIS
This course explains various Internet technologies commonly used to build web-based visualization applications with municipal data.
MetroQuest Public Involvement Software: In Practice and In Action
This course provides an introduction to working with MetroQuest, what it helps planners achieve, and some of its most important features and capabilities. The course also presents a series of case studies to demonstrate the results MetroQuest has achieved for a wide range of planning projects.
Best Practices for Community Engagement
This course provides you with solid understanding of the benefits to community engagement, the psychology of public participants, an overview of the tools and tactics to choose from and advice on the creation of a public engagement plan to meet the needs of your projects.
CartoDB for Planners
In this course, we'll cover the web interface of CartoDB, an innovative online mapping platform. Learn how to setup a basic map, add data from ArcGIS and other sources, and publish your map on the web.
Urban Design for Planners 8: Parking and Traffic
The final course in the Urban Design for Planners series addresses the automobile as part of the urban fabric. The storage of cars and high levels of congestion can be very detrimental to neighborhoods, but good design can mitigate those negative effects.
GIS Fundamentals: Geocoding, Geoprocessing, and Online Sharing
This fifth installment of the GIS Fundamentals series provides instruction on how to geocode addresses, the basics of geoprocessing, and the use of ArcGIS Online for collaborative mapping and processing.
GIS Fundamentals: Importing, Selecting, and Managing Data
The fourth installment of the Geographic Information Systems Fundamentals series explains how to configure data sets, including advanced methods for selecting data through spatial and SQL queries, working with relational databases and geodatabases, and importing non-spatial data into ArcGIS.
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.
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: 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.
Geoanalysis with ArcGIS and Google Earth
Combining ArcGIS and Google Earth allows for a convenient, powerful way to create and share professional, accurate spatial visualizations of geographical analysis to a wide audience. This course explores how to prep shape files for ingestion into Google Earth, share city data with the public, and aid in pre-visualizing via geo-referencing around potential development sites.
GIS Walkability Modeling
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.

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