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ContributorsGammage, Grady Jr. (Author) / Hall, John Stuart (Author) / Lang, Robert E. (Author) / Melnick, Rob (Author) / Welch, Nancy (Author) / Crow, Michael M. (Author) / Morrison Institute for Public Policy (Publisher)
Created2008-05
Description

Arizona is one of the nation’s most urban states, and now it includes one of 20 “megapolitan” areas in the U.S. People have predicted for 50 years that Phoenix and Tucson would grow together into a giant desert conglomerate. That possibility has been seen as exciting, intriguing, and distressing. While

Arizona is one of the nation’s most urban states, and now it includes one of 20 “megapolitan” areas in the U.S. People have predicted for 50 years that Phoenix and Tucson would grow together into a giant desert conglomerate. That possibility has been seen as exciting, intriguing, and distressing. While a solid city along Interstate 10 is unlikely given the diverse land ownership in central and southern Arizona, the two metro economies are already merging.

Megapolitan: Arizona’s Sun Corridor, one of the first reports on a single megapolitan area, recognizes a more sophisticated technique for analyzing urban growth—that shared economic and quality of life interests are more important than physically growing together.

Scholars at Virginia Tech defined the megapolitans based on economic and growth patterns.
The Sun Corridor, which cuts across six counties from the border with Mexico to the center of Yavapai County, is the home of eight out of 10 Arizonans. In the next several decades, two out of three Americans will live in a megapolitan accounting for 60% of the population on only 10% of U.S. land.

Megapolitan offers a bold new picture of Arizona’s geography and its future opportunities and “megaton” challenges. This report presents a scenario for 2035 based on current trends. It analyzes the Sun Corridor and provides insights into the region’s global potential, water, governance, sustainability, and “trillion dollar questions.” It discusses the “tragedy of the sunshine” and asks the indispensable question: In 2035, do you want to live in the Sun Corridor?

ContributorsPanchanathan, Sethuraman (Speaker)
Created2017-05-05
Description
In his talk, Panch considers the ever important question: How do we foster a culture of innovation?

Sethuraman Panchanathan is the chief research and innovation officer at Arizona State University. He is also the executive vice president of the ASU Office of Knowledge Enterprise Development, which advances research, innovation, strategic partnerships,

In his talk, Panch considers the ever important question: How do we foster a culture of innovation?

Sethuraman Panchanathan is the chief research and innovation officer at Arizona State University. He is also the executive vice president of the ASU Office of Knowledge Enterprise Development, which advances research, innovation, strategic partnerships, entrepreneurship, global and economic development at ASU.

Panchanathan was the founding director of the School of Computing and Informatics and was instrumental in founding the Biomedical Informatics Department at ASU. He also served as the chair of the Computer Science and Engineering Department. He founded the Center for Cognitive Ubiquitous Computing (CUbiC) at ASU, to develop person-centered tools and ubiquitous computing technologies for enhancing the quality of life for individuals with disabilities.

Panchanathan was appointed by President Barack Obama to the U.S. National Science Board (NSB) and is Chair of the Committee on Strategy. He has also been appointed by U.S. Secretary of Commerce Penny Pritzker to the National Advisory Council on Innovation and Entrepreneurship (NACIE). Panchanathan is a Fellow of the National Academy of Inventors (NAI), the Canadian Academy of Engineering, and the Institute of Electrical and Electronics Engineers (IEEE) among other prestigious organizations. He currently serves as the Chair of the Council on Research (CoR) within the Association of Public and Land-grant Universities (APLU).

His research interests are in the areas of human-centered multimedia computing; haptic user interfaces; ubiquitous computing technologies; and machine learning for multimedia applications, medical image processing, and media processor designs.