All Housing Courses
The DIY Form-Based Code: Research and Development
Covering concepts critical to developing the foundation for a code, this course takes a a tour through the creation of a code for the hypothetical city of Wrightville.
Drawing in the Landscape: Water and Oil
This is the fourth and final course in the Drawing series. In this course we inquire into the nature of observing and representing color works in transitive environments, building upon the initial sketch, and beginning water color and oil technique.
Drawing in the Landscape: Painting Color
This is the third course in the Drawing series. In this course we inquire into the nature of observing and representing color works in transitive environments, building upon the initial sketch, and beginning watercolor technique.
The DIY Form-Based Code: An Introduction
Citing standards and design guidelines from SmartCode and The Form-Based Code Guide, this first of several courses introduces a novel, iterative, and testable methodology.
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.
Visual Simulation: Rendering Styles and Presentation with SketchUp
Learn to create finalized drawings in SketchUp that look more hand drawn than photorealistic. Using SketchUp and Adobe Photoshop, this course will help you take more control over final images than possible when only exporting from SketchUp.
Visual Simulation: Advanced Rendering in SketchUp
In this course, you'll learn to create an advanced rendering of a SketchUp site model, using a free third-party renderer called Kerkythea to design realistic lighting and shading. Then add components to your rendering in Adobe Photoshop.
Tactical Urbanism: How It's Done
From unsanctioned crosswalks to city-led "Pavement-to-Plaza" programs, instructor Mike Lydon describes the success of short-term, temporary projects in influencing long-term physical and policy changes in cities across the United States and Canada.
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.
Working with Census.gov 1: Background and Geography
This first of four courses on the Census -- Background and Geography -- will prime you to understand how the Census works, where the data comes from, as well as vital terminology and data sets you should be familiar with in the built environment.
Working with Census.gov 2: Topics, Programs, Products
This second of four courses delves deeper into the Census 'architecture'. In course 2 of "Working with Census.gov", Dr. Chris Williamson, a.k.a. Dr. Data, provides an overview on the federally mandated topics that lead to programs which ultimately produce products for the public. Course 2 also delves into such tricky topics as Census data table analysis and gives insider tips and goodies from a Census Bureau veteran.
Working with Census.gov 3: Interacting with the Data
This third of four courses takes you into a series of live demonstrations and in-depth explanations and visuals from the Census.gov and American FactFiner websites. The course covers a comprehensive navigation of the pages, tools and interactive databases that form the expansive Census website and publicly accessible data stores and produced information.
Working with Census.gov 4: Quality, Interpreting and Examples
Chris Williamson, A.K.A. "Dr. Data" completes the final episode in this four course series on the 'architecture' and 'analysis' of the Census Bureau and its many products. In course 4 students will go through a brief introduction to margin of error and a range of error and data quality analysis. Along with some examples and case studies, this course takes us into Dr. Data's own Ventura County, California for a look at some of the more challenging sampling and non-sampling errors many planners and demographers must wrestle with.
CommunityViz Introduction
In this course you will learn practical applications for CommunityViz, one of the world's premiere GeoDesign and planning scenario tools. Planners, resource managers, local and regional governments, and others use CommunityViz to help them make decisions about development, land use, transportation, conservation and more.
Disaster Resilience and Recovery Through Land Use Planning
This course focuses on common planning tools and policies for hazard recovery and mitigation. Disaster Resilience is a product of Texas A&M's Hazard Reduction and Recovery Center, focusing principly on storms, hurricanes, water damage, climatological concerns, and flooding in a new era of catastrophes. Topics include social mitigation for vulnerable communities, adoption and implementation of mitigation strategies, and real-world examples of recovery efforts in areas impacted by Hurricane Ike.