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From an engineer and futurist, an impassioned account of technological stagnation since the 1970s and an imaginative blueprint for a richer, more abundant future. The science fiction of the 1960s promised us a future remade by technological innovation. We’d vacation in geodesic domes on Mars, have meaningful conversations with computers, and drop our children off at school in flying cars. Fast-forward 60 years, and we’re still stuck in traffic in gas-guzzling sedans and boarding the same types of planes we flew in over half a century ago. What happened to the future we were promised? In Where Is My Flying Car?, J. Storrs Hall sets out to answer this deceptively simple question. What star...
With a 30-year career in artificial intelligence (AI) and computer science, Hall reviews the history of AI, predicting the probable achievements in the near future and provides an intriguing glimpse into the astonishing possibilities and dilemmas on the horizon.
Will the new scientific revolution of nanotechnology be for better or worse? Readers will find out the likely reality from an expert, Dr. J. Storrs Hall, in this absorbing insider's guide to the near future.
The first authoritative and comprehensive survey of the origins and current state of transhumanist thinking The rapid pace of emerging technologies is playing an increasingly important role in overcoming fundamental human limitations. Featuring core writings by seminal thinkers in the speculative possibilities of the posthuman condition, essays address key philosophical arguments for and against human enhancement, explore the inevitability of life extension, and consider possible solutions to the growing issues of social and ethical implications and concerns. Edited by the internationally acclaimed founders of the philosophy and social movement of transhumanism, The Transhumanist Reader is an indispensable guide to our current state of knowledge of the quest to expand the frontiers of human nature.
"As this fast-paced nanothriller unfolds, readers are taken on a tour de force of nanotechnology's promises and perils - until the fate of the earth itself hangs in the balance."--BOOK JACKET.
This bold re-examination of the history of U.S. economic growth is built around a novel claim, that productive capacity grew dramatically across the Depression years (1929-1941) and that this advance provided the foundation for the economic and military success of the United States during the Second World War as well as for the golden age (1948-1973) that followed.Alexander J. Field takes a fresh look at growth data and concludes that, behind a backdrop of double-digit unemployment, the 1930s actually experienced very high rates of technological and organizational innovation, fueled by the maturing of a privately funded research and development system and the government-funded build-out of the country's surface road infrastructure. This significant new volume in the Yale Series in Economic and Financial History invites new discussion of the causes and consequences of productivity growth over the last century and a half and on our current prospects.
Tyler Cowen’s controversial New York Times bestseller—the book heard round the world that ignited a firestorm of debate and redefined the nature of America’s economic malaise. America has been through the biggest financial crisis since the great Depression, unemployment numbers are frightening, media wages have been flat since the 1970s, and it is common to expect that things will get worse before they get better. Certainly, the multidecade stagnation is not yet over. How will we get out of this mess? One political party tries to increase government spending even when we have no good plan for paying for ballooning programs like Medicare and Social Security. The other party seems to thi...
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This book offers a general review of the voluminous theoretical and experimental literature pertaining to physical self-replicating systems. The principal focus here is on self-replicating machine systems. Most importantly, we are concerned with kinematic self-replicating machines: systems in which actual physical objects, not mere patterns of information, undertake their own replication. Following a brief burst of activity in the 1950s and 1980s, the field of kinematic replicating systems design received new interest in the 1990s with the emerging recognition of the feasibility of molecular nanotechnology. The field has experienced a renaissance of research activity since 1999 as researchers have come to recognize that replicating systems are simple enough to permit experimental laboratory demonstrations of working devices.