JBIS


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Deep Space Propulsion


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The technology of the next few decades could possibly allow us to explore with robotic probes the closest stars outside our Solar System, and maybe even observe some of the recently discovered planets circling these stars. This book looks at the reasons for exploring our stellar neighbors and at the technologies we are developing to build space probes that can traverse the enormous distances between the stars. In order to reach the nearest stars, we must first develop a propulsion technology that would take our robotic probes there in a reasonable time. Such propulsion technology has radically different requirements from conventional chemical rockets, because of the enormous distances that must be crossed. Surprisingly, many propulsion schemes for interstellar travel have been suggested and await only practical engineering solutions and the political will to make them a reality. This is a result of the tremendous advances in astrophysics that have been made in recent decades and the perseverance and imagination of tenacious theoretical physicists. This book explores these different propulsion schemes – all based on current physics – and the challenges they present to physicists, engineers, and space exploration entrepreneurs. This book will be helpful to anyone who really wants to understand the principles behind and likely future course of interstellar travel and who wants to recognizes the distinctions between pure fantasy (such as Star Trek’s ‘warp drive’) and methods that are grounded in real physics and offer practical technological solutions for exploring the stars in the decades to come.




Handbook on Advanced Design and Manufacturing Technologies for Biomedical Devices


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​The last decades have seen remarkable advances in computer‐aided design, engineering and manufacturing technologies, multi‐variable simulation tools, medical imaging, biomimetic design, rapid prototyping, micro and nanomanufacturing methods and information management resources, all of which provide new horizons for the Biomedical Engineering fields and the Medical Device Industry. Advanced Design and Manufacturing Technologies for Biomedical Devices covers such topics in depth, with an applied perspective and providing several case studies that help to analyze and understand the key factors of the different stages linked to the development of a novel biomedical device, from the conceptual and design steps, to the prototyping and industrialization phases. Main research challenges and future potentials are also discussed, taking into account relevant social demands and a growing market already exceeding billions of dollars. In time, advanced biomedical devices will decisively change methods and results in the medical world, dramatically improving diagnoses and therapies for all kinds of pathologies. But if these biodevices are to fulfill present expectations, today’s engineers need a thorough grounding in related simulation, design and manufacturing technologies, and collaboration between experts of different areas has to be promoted, as is also analyzed within this handbook.







Future space programs 1975


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The Starflight Handbook


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"The Starflight Handbook is an compendium of the many and varied methods for traversing the vast interstellar gulf."--Publisher.




Rockets Into Space


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Since ancient times, men and women have dreamed of soaring among the stars, but only in this century has that dream been realized. In Rockets into Space, Frank Winter tells the fascinating story of the modern launch vehicle, from the mythological musings of the Babylonians and Greeks to the present-day reality of manned and unmanned space flight. In concise yet comprehensive chapters dense with anecdotal detail, Winter tracks the theoretical formulations and technological breakthroughs that have charted the evolution of rocket propulsion and vehicle design. He pays particular attention to the remarkable contributions of pioneers Konstantin Tsiolkovsky, Robert Goddard, Hermann Oberth, Eugen Sänger, and Sergei Korolev, whose genius and vision paved the way for later innovation. He describes the clandestine development of the V-2 rocket in Germany, under the technical leadership of Wernher von Braun, and its dramatic impact on postwar rocket research and satellite development in the United States and the Soviet Union. He also chronicles the complex events of the last three decades, which have produced ever more sophisticated rockets capable of launching larger payloads, from weapons to weather and communications satellites. Finally, he surveys exotic propulsion systems--nuclear, electric, solar, photon, laser--that lie on the frontiers of science today but that will shape the spaceflight and space policy decisions of tomorrow. Rockets into Space is an authoritative, entertaining guidebook for all who are interested in the history of space travel.