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1

Ovtov, Vladimir. Machine parts. Course design. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1171976.

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The textbook discusses the methodology of course design of general-purpose drives with a single-stage gearbox (cylindrical, conical and worm) and a V-belt or chain transmission. The procedure for calculating gears and constructing assembly drawings of gearboxes is shown, the development of specifications using the COMPASS-3D computer-aided design system is described. Examples of the design of drawings of the general type of the drive, assembly drawings of gearboxes and working drawings of parts of various types of gearboxes are given. Meets the requirements of the federal state educational standards of higher education of the latest generation. It is intended for independent work of students of engineering specialties studying in the bachelor's degree and specialty.
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2

Strebkov, Sergey y Andrey Sahnov. Machine repair technology. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1184662.

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The tutorial discusses the technological processes of remontamashin, contains elements of the design of technological processes for the restoration of parts and assembly units, describes ways to restore the main defects of machine parts. Meets the requirements of the federal state educational standards of higher education of the latest generation. It is intended for students in the direction of training 35.03.06 "Agroengineering".
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3

Ivanov, Anatoliy. Flexible modular assembly lines on a single structural basis. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1196558.

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The textbook discusses topical issues of automating the assembly of an extensive range of machine and instrument-making products based on highly efficient robotic reconfigurable systems of a new generation built on a single structural basis. The possibility of fast organization of automated assembly of new types of products, which is provided by the presence of a flexible basic set as part of the complex (line), is shown. A complete set of original technical means for basic and service operations of assembly and control of products is described. Analytical conditions of automatic assembly are given, and recommendations on optimization of design solutions and modeling of projected assembly systems are given. It is intended for students studying under the bachelor's degree programs, certified specialists and masters, teachers of technical universities, as well as designers, technologists and scientists dealing with the problem of complex assembly automation.
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4

Yurenkova, Lyubov', Viktor Burlay, Vladimir Fedorenko y Aleksey Andreev. Engineering graphics: Atlas of assembly units with different types of connections of parts. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/953403.

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The tutorial contains drawings of assembly units with a description of their design. Special attention is paid to the analysis of the connections of the parts. Examples of assembly units containing a small number of parts are used to describe the most common types of connections in the designs of machines and devices out of several dozen currently known. The atlas will allow you to introduce students to various modern types of connections of parts in a short time during classes. Meets the requirements of the federal state educational standards of higher education of the latest generation. For students of higher educational institutions studying in an enlarged group of training areas 15.00.00 "Mechanical Engineering".
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5

Moses, Matthew S. y Gregory S. Chirikjian. Reproduction. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199674923.003.0007.

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Computing pioneer and polymath John von Neumann introduced the concept of a Universal Constructor as part of his effort to develop a mathematical theory describing living organisms. A Universal Constructor is a kinematic machine able to manipulate and assemble primitive building blocks. Von Neumann showed how this hypothetical constructor, being itself composed of the same primitive blocks, could self-reproduce and evolve. Remarkably, although this model system pre-dates the discovery of the genetic code, it applies to cell molecular biology as well as man-made machines. This chapter describes some key laboratory demonstrations related to universal construction and machine self-reproduction, and discusses parallels between reproduction processes in machines and biological cells.
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6

International, IPC. IPC-HERMES-9852, Version 1.5 the Global Standard for Machine-To-Machine Communication in SMT Assembly. IPC International, 2022.

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7

Prescott, Tony J., Nathan Lepora y Paul F. M. J. Verschure, eds. Living machines. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199674923.001.0001.

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Biomimetics is the development of novel technologies through the distillation of ideas from the study of biological systems. Biohybrids are formed through the combination of at least one biological component—an existing living system—and at least one artificial, newly engineered component. These two fields are united under the theme of Living Machines—the idea that we can construct artifacts that not only mimic life but also build on the same fundamental principles. The research described in this volume seeks to understand and emulate life’s ability to self-organize, metabolize, grow, and reproduce; to match the functions of living tissues and organs such as muscles, skin, eyes, ears, and neural circuits; to replicate cognitive and physical capacities such as perception, attention, locomotion, grasp, emotion, and consciousness; and to assemble all of these elements into integrated systems that can hold a technological mirror to life or that have the capacity to merge with it. We conclude with contributions from philosophers, ethicists, and futurists on the potential impacts of this remarkable research on society and on how we see ourselves.
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8

Fukuda, Toshio, Masahiro Nakajima, Masaru Takeuchi y Yasuhisa Hasegawa. Micro- and nanotechnology for living machines. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199674923.003.0052.

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The chapter Micro- and nanotechnology for living machines describes research on new biohybrid technologies, engineered at the micro- and nano-scales, that combine some of the benefits of mechanical and electronic systems with those of biological systems. The chapter begins by reviewing some of the challenges of building devices at very small physical scales and discusses how new fabrication methodologies could impact on different classes of industrial, daily life, and biomedical products. We next explain how progress is being achieved through advances in micro- and nanomechatronics, particularly in the field of nanorobotic manipulation. Finally, we summarize recent progress towards building biohybrid living machines that combine nanomaterials with biological cells and outline the design of a micro- and nanorobotic manipulation system for cell assembly called the nanolaboratory.
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9

Anderson, James A. Software. Oxford University Press, 2018. http://dx.doi.org/10.1093/acprof:oso/9780199357789.003.0004.

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Digital computers are “protean” in that they can become almost anything through software. Their basic design elements came from a 19th-century British tradition in logic, exemplified by Boole and Babbage. It seemed natural to have logic realized in hardware. This tradition culminated in the work of Alan Turing who proposed a universal computing machine, now called a Turing machine, based on logic. Although hardware that computes logic functions lies at the core of digital hardware, low-level practical machine operations are grouped together in “words.” Programs are based on hardware operations controlling computation at the word level. This chapter presents a detailed example of what a computer does when it actually “computes.” Because human cognition finds it hard to use such an alien device, there is a brief discussion of how programming became “humanized” with the invention of software tools like assembly language and FORTRAN.
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10

Little, Max A. Machine Learning for Signal Processing. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780198714934.001.0001.

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Digital signal processing (DSP) is one of the ‘foundational’ engineering topics of the modern world, without which technologies such the mobile phone, television, CD and MP3 players, WiFi and radar, would not be possible. A relative newcomer by comparison, statistical machine learning is the theoretical backbone of exciting technologies such as automatic techniques for car registration plate recognition, speech recognition, stock market prediction, defect detection on assembly lines, robot guidance and autonomous car navigation. Statistical machine learning exploits the analogy between intelligent information processing in biological brains and sophisticated statistical modelling and inference. DSP and statistical machine learning are of such wide importance to the knowledge economy that both have undergone rapid changes and seen radical improvements in scope and applicability. Both make use of key topics in applied mathematics such as probability and statistics, algebra, calculus, graphs and networks. Intimate formal links between the two subjects exist and because of this many overlaps exist between the two subjects that can be exploited to produce new DSP tools of surprising utility, highly suited to the contemporary world of pervasive digital sensors and high-powered and yet cheap, computing hardware. This book gives a solid mathematical foundation to, and details the key concepts and algorithms in, this important topic.
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11

Anderson, Raymond A. Credit Intelligence & Modelling. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780192844194.001.0001.

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This book, “Forest Paths” for short, started as a detailed guide for the construction of predictive models for credit and other risk assessment, for use in big-bank retail lending. It became a textbook covering credit processes (from marketing through to fraud), bureau and rating agencies, and various tools. Included are detailed histories (economics, statistics, social science}, which much referencing. It is unique in the field, with chatpers’-end questions. The primary target market is corporate and academic, but much would be of interest to a broader audience. There are eight modules: 1) an introduction to credit risk assessment and predictive modelling; 2) micro-histories of credit, credit intelligence, credit scoring, plus industrial revolutions, economic ups and downs, and both personal registration and identification; 4) mathematical and statistical tools used to develop and assess predictive models; 5) project management and data assembly; 6) data preparation from sampling to reject inference; 7) model training through to implementation; and 8) appendices, including an extensive glossary, bibliography, and index. Although the focus is credit risk, especially in the retail consumer and small-business segments, many concepts are common across disciplines as diverse as psychology, biology, engineering, and computer science, whether academic research or practical use. It also covers issues relating to the use of machine learning for credit risk assessment. Most of the focus is on traditional modelling techniques, but the increasing use of machine learning is recognised, as are its limitations. It is hoped that the contents will inform both camps.
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12

Anderson, Greg. The Cares of a Corporate Self. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780190886646.003.0015.

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Here, finally, the book turns to consider what is more conventionally called Athenian “government,” namely the activities of Demos, the council of 500, and the sundry poliadic “officials.” As the chapter stresses, Demos, the ultimate rule-making agency in Attica, was fundamentally different from a modern “state” in at least three ways. The first of these differences concerns their respective quiddities as social objects. Whereas a modern state is conventionally seen as a machine-like material assemblage of practices and individual persons, Demos was a kind of deathless corporate person in its own right, one that both pre-existed and outlived the particular individuals who happened to embody it at any given time. Second, by comparison with the conspicuously activist, highly interventionist states of modernity, Demos was a peculiarly inert kind of agency. In its primary incarnations in assembly meetings and law courts, its function was to serve as a purely deliberative rule-making body, in that it materialized to produce binding resolutions to issues raised by “civilians,” whether they were its assembly “advisors” or the prosecutors in court cases. Third, given that Athenian households were assumed to be largely responsible for governing themselves, both individually and collectively, the competence of Demos was necessarily limited. Essentially, it was responsible for producing binding decisions only on those matters which households could not already manage for themselves, like polis-wide cults, diplomacy, and warfare. In short, to summarize chapters 12-14, demokratia in Attica was not a modern-style “state-centered” form of rule. It was an ongoing exercise in self-management by the unitary social body of Demos, whether acting as its constituent parts or as the totality of the whole.
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13

Susskind, Richard. Online Courts and the Future of Justice. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780198838364.001.0001.

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In Online Courts and the Future of Justice, Richard Susskind, the world’s most cited author on the future of legal services, shows how litigation will be transformed by technology and proposes a solution to the global access-to-justice problem. In most advanced legal systems, the resolution of civil disputes takes too long, costs too much, and the process is not just antiquated; it is unintelligible to ordinary mortals. The courts of some jurisdictions are labouring under staggering backlogs - 100 million cases in Brazil, 30 million in India. More people in the world now have internet access than access to justice. Drawing on almost 40 years in the fields of legal technology and jurisprudence, Susskind shows how we can use the remarkable reach of the internet (more than half of humanity is now online) to help people understand and enforce their legal rights. Online courts provide 'online judging' - the determination of cases by human judges but not in physical courtrooms. Instead, evidence and arguments are submitted through online platforms through which judges also deliver their decisions. Online courts also use technology to enable courts to deliver more than judicial decisions. These 'extended courts' provide tools to help users understand relevant law and available options, and to formulate arguments and assemble evidence. They offer non-judicial settlements such as negotiation and early neutral evaluation, not as an alternative to the public court system but as part of it. A pioneer of online courts, Susskind maintains that they will displace much conventional litigation. He rigorously assesses the benefits and drawbacks, and looks ahead, predicting how AI, machine learning, and virtual reality will likely come to dominate court service.
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14

Fink, Robert, Melinda Latour y Zachary Wallmark, eds. The Relentless Pursuit of Tone. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199985227.001.0001.

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The Relentless Pursuit of Tone: Timbre in Popular Music assembles a wide spectrum of contemporary perspectives on how sound functions in an equally wide array of popular music. With subjects ranging from the twang of country banjos and the sheen of hip-hop strings to the crunch of amplified guitars and the thump of subwoofers on the dance floor, this volume attempts to bridge the gap between timbre, the purely acoustic characteristics of sound waves, and tone, an emergent musical construct that straddles the borderline between the perceptual and the political. The book’s chapters engage with the entire history of popular music as recorded sound, from the 1930s to the present day, under four large categories. The chapters in Part I, “Genre,” ask how sonic signatures define musical identities and publics; Part II, “Voice,” considers the most naturalized musical instrument, the human voice, as racial and gendered signifier, as property or likeness, and as raw material for algorithmic perfection through software; Part III, “Instrument,” tells stories of the way some iconic pop music machines—guitars, strings, synthesizers—got (or lost) their distinctive sounds; and Part IV, “Production,” puts it all together, asking structural questions about what happens in a recording studio, what is produced (sonic cartoons, rockist authenticity, empty space?), and what it all might mean. The book includes a general theoretical introduction by the editors and an afterword by noted popular music scholar Simon Frith.
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15

Van Dyk, Jacob. The Modern Technology of Radiation Oncology, Vol 4. Medical Physics Publishing, 2020. http://dx.doi.org/10.54947/9781951134020.

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High praise continues to come in for the 4th volume of Jake Van Dyk's The Modern Technology of Radiation Oncology. From Peter Metcalfe in Physical and Engineering Sciences in Medicine… "Thank goodness medical physics has Jacob Van Dyk. Like Tiger Woods and Phil Mickelson in golf, his textbooks continue to make major comebacks. He has managed to assemble the most talented among us to sustain the up-to-date knowledge that is essential to our profession. Reference knowledge from this textbook will help ensure the medical physics profession is at the cutting edge of cancer research and clinical treatment. This textbook has taken pride of place on my bookshelf, right next to my most treasured Porsche magazines. I could not give it a higher accolade than that." From Rajesh A. Kinhikar in Journal of Medical Physics…"This resourceful book has aimed to serve as a comprehensive textbook for the practicing radiotherapy professionals. I would like to congratulate the authors and the Editor for such a high?quality scientific feast and strongly recommend the fourth volume of The Modern Technology of Radiation Oncologyto the clinical medical physicists and radiation oncology professionals involved with the rapidly evolving radiotherapy." New topics addressed in volume 4 include surface-guided radiation therapy (RT), PET/MRI, real-time MRI guidance, robust optimization, automated treatment planning, artificial intelligence, adaptive RT, machine learning, big data, radiomics, particle therapy RBE, nanoparticle applications, economic considerations, global medical physics activities, global access to RT, and FLASH RT. The volumes in this series have not only been valued by medical physicists and radiation oncologists in clinical practice around the world, but have also provided an important learning resource for residency programs, radiation technologists, dosimetrists, research students, biomedical engineers, and ancillary professionals related with radiotherapy. Administrators and scientists affiliated with the practice of radiation therapy will also find this book a useful resource.
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