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The American West conjures up images of pastoral tranquility and wide open spaces, but by 1970 the Far West was the most urbanized section of the country. Exploring four intriguing cityscapes—Disneyland, Stanford Industrial Park, Sun City, and the 1962 Seattle World's Fair—John Findlay shows how each created a sense of cohesion and sustained people's belief in their superior urban environment. This first book-length study of the urban West after 1940 argues that Westerners deliberately tried to build cities that differed radically from their eastern counterparts. In 1954, Walt Disney began building the world's first theme park, using Hollywood's movie-making techniques. The creators of Stanford Industrial Park were more hesitant in their approach to a conceptually organized environment, but by the mid-1960s the Park was the nation's prototypical "research park" and the intellectual downtown for the high-technology region that became Silicon Valley. In 1960, on the outskirts of Phoenix, Del E. Webb built Sun City, the largest, most influential retirement community in the United States. Another innovative cityscape arose from the 1962 Seattle World's Fair and provided a futuristic, somewhat fanciful vision of modern life. These four became "magic lands" that provided an antidote to the apparent chaos of their respective urban milieus. Exemplars of a new lifestyle, they are landmarks on the changing cultural landscape of postwar America.
Urban Remote Sensing is designed for upper level undergraduates, graduates, researchers and practitioners, and has a clear focus on the development of remote sensing technology for monitoring, synthesis and modeling in the urban environment. It covers four major areas: the use of high-resolution satellite imagery or alternative sources of image date (such as high-resolution SAR and LIDAR) for urban feature extraction; the development of improved image processing algorithms and techniques for deriving accurate and consistent information on urban attributes from remote sensor data; the development of analytical techniques and methods for deriving indicators of socioeconomic and environmental conditions that prevail within urban landscape; and the development of remote sensing and spatial analytical techniques for urban growth simulation and predictive modeling.