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Philip K Dick's visionary forerunner to the novel 'Do Androids Dream of Electric Sheep?' that became the film Bladerunner, tells the story of Louis Rosen and his love for the daughter of his business partner and the truth about where his life-like androids might end up! Making an animatronic replica of Abraham Lincoln has never been easier. Finding someone to buy it is the hard part. Louis Rosen's firm, the Frauenzimmer Piano Company, builds electronic organs and upright pianos. Deciding to expand the business the firm get ambitious, building exact reconstructions of famous personalities. Sam K. Barrows, a lunar real estate tycoon wants to repopulate the moon with their creations, and he's the only one rich enough to buy them. As the Lincoln model develops a fault and Rosen begins to fall for the daughter of his business partner, things go from bad to worse and his mental health rapidly begins to deteriorate. 'We Can Build You' bears striking similarities in Dick's later novel 'Do Androids Dream of Electric Sheep?' which was later transformed into Ridley Scott's extraordinary science fiction film classic 'Bladerunner'.
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Humanoid robots are highly sophisticated machines equipped with human-like sensory and motor capabilities. Today we are on the verge of a new era of rapid transformations in both science and engineering-one that brings together technological advancements in a way that will accelerate both neuroscience and robotics. Humanoid Robotics and Neuroscience: Science, Engineering and Society presents the contributions of prominent scientists who explore key aspects of the further potential of these systems.Topics include:Neuroscientific research findings on dexterous robotic hand controlHumanoid vision
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Humanoid Robotics: A Reference provides a comprehensive compilation of developments in the conceptualization, design and development of humanoid robots and related technologies. Human beings have built the environment they occupy (living spaces, instruments and vehicles) to suit two-legged systems. Building systems, especially in robotics, that are compatible with the well established, human-based surroundings and which could naturally interact with humans is an ultimate goal for all researches and engineers. Humanoid Robots are systems (i.e. robots) which mimic human behaviour. Humanoids provide a platform to study the construction of systems that behave and interact like humans. A broad range of applications ranging from daily housework to complex medical surgery, deep ocean exploration, and other potentially dangerous tasks are possible using humanoids. In addition, the study of humanoid robotics provides a platform to understand the mechanisms and offers a physical visual of how humans interact, think, and react with the surroundings and how such behaviours could be reassembled and reconstructed. Currently, the most challenging issue with bipedal humanoids is to make them balance on two legs, The purportedly simple act of finding the best balance that enables easy walking, jumping and running requires some of the most sophisticated development of robotic systems- those that will ultimately mimic fully the diversity and dexterity of human beings. Other typical human-like interactions such as complex thought and conversations on the other hand, also pose barriers for the development of humanoids because we are yet to understand fully the way in which we humans interact with our environment and consequently to replicate this in humanoids.
Robotics. --- Androids. --- Artificial intelligence. --- Mechanical engineering.
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For many years, the human being has been trying, in all ways, to recreate the complex mechanisms that form the human body. Such task is extremely complicated and the results are not totally satisfactory. However, with increasing technological advances based on theoretical and experimental researches, man gets, in a way, to copy or to imitate some systems of the human body. These researches not only intended to create humanoid robots, great part of them constituting autonomous systems, but also, in some way, to offer a higher knowledge of the systems that form the human body, objectifying possible applications in the technology of rehabilitation of human beings, gathering in a whole studies related not only to Robotics, but also to Biomechanics, Biomimmetics, Cybernetics, among other areas. This book presents a series of researches inspired by this ideal, carried through by various researchers worldwide, looking for to analyze and to discuss diverse subjects related to humanoid robots. The presented contributions explore aspects about robotic hands, learning, language, vision and locomotion.
Androids. --- Humanoid robots --- Humanoids (Androids) --- Robots --- Virtual humans (Artificial intelligence) --- Automatic control engineering
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Biped robots represent a very interesting research subject, with several particularities and scope topics, such as: mechanical design, gait simulation, patterns generation, kinematics, dynamics, equilibrium, stability, kinds of control, adaptability, biomechanics, cybernetics, and rehabilitation technologies. We have diverse problems related to these topics, making the study of biped robots a very complex subject, and many times the results of researches are not totally satisfactory. However, with scientific and technological advances, based on theoretical and experimental works, many researchers have collaborated in the evolution of the biped robots design, looking for to develop autonomous systems, as well as to help in rehabilitation technologies of human beings. Thus, this book intends to present some works related to the study of biped robots, developed by researchers worldwide.
Androids. --- Humanoid robots --- Humanoids (Androids) --- Robots --- Virtual humans (Artificial intelligence) --- Automatic control engineering
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Robotics --- Androids --- Humanoid robots --- Humanoids (Androids) --- Robots --- Virtual humans (Artificial intelligence)
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Information technology --- Androids --- Humanoid robots --- Humanoids (Androids) --- Robots --- Virtual humans (Artificial intelligence)
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