Results for 'nanotechnologies'

54 found
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  1. Nanotechnologically Enhanced Combat Systems: The Downside of Invulnerability.Robert Mark Simpson & Robert Sparrow - 2014 - In Bert Gordijn & Anthony Mark Cutter (eds.), In Pursuit of Nanoethics. Dordrecht: Springer. pp. 89-103.
    In this paper we examine the ethical implications of emerging Nanotechnologically Enhanced Combat Systems (or 'NECS'). Through a combination of materials innovation and biotechnology, NECS are aimed at making combatants much less vulnerable to munitions that pose a lethal threat to soldiers protected by conventional armor. We argue that increasing technological disparities between forces armed with NECS and those without will exacerbate the ethical problems of asymmetric warfare. This will place pressure on the just war principles of jus in bello, (...)
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  2. Nanotechnology and Nature: On Two Criteria for Understanding Their Relationship.Gregor Schiemann - 2005 - Hyle 11 (1):77 - 96.
    Two criteria are proposed for characterizing the diverse and not yet perspicuous relations between nanotechnology and nature. They assume a concept of nature as that which is not made by human action. One of the criteria endorses a distinction between natural and artificial objects in nanotechnology; the other allows for a discussion of the potential nanotechnological modification of nature. Insofar as current trends may be taken as indicative of future development, nanotechnology might increasingly use the model of nature as a (...)
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  3.  49
    Convergence of Nanotechnology and Artificial Intelligence: Revolutionizing Healthcare and Beyond.Randa Elqassas, Hazem A. S. Alrakhawi, Mohammed M. Elsobeihi, Basel Habil, Bassem S. Abu-Nasser & Samy S. Abu-Naser - 2024 - International Journal of Academic Engineering Research (IJAER) 8 (10):25-30.
    Abstract: The convergence of nanotechnology and artificial intelligence (AI) represents a transformative frontier in modern science, with the potential to revolutionize multiple industries, particularly healthcare. Nanotechnology enables the manipulation of matter at the atomic and molecular scale, while AI offers sophisticated data analysis, pattern recognition, and decision-making capabilities. This paper explores the synergies between these two fields, focusing on their impact on medical diagnostics, targeted drug delivery, and personalized treatments. By leveraging AI's predictive power and nanotechnology's precision, healthcare can achieve (...)
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  4. Understanding Public Debate on Nanotechnologies.Rene von Schomberg (ed.) - 2010 - Publications Office of the European Union.
    This book features the contribution of major European research projects on the governance and ethics of Nanotechnology. They focus on the responsible development of nanotechnology and on the understanding of public debate.
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  5. Steps to Designing AI-Empowered Nanotechnology: A Value Sensitive Design Approach.Steven Umbrello - 2019 - Delphi - Interdisciplinary Review of Emerging Technologies 2 (2):79-83.
    Advanced nanotechnology promises to be one of the fundamental transformational emerging technologies alongside others such as artificial intelligence, biotechnology, and other informational and cognitive technologies. Although scholarship on nanotechnology, particularly advanced nanotechnology such as molecular manufacturing has nearly ceased in the last decade, normal nanotechnology that is building the foundations for more advanced versions has permeated many industries and commercial products and has become a billion dollar industry. This paper acknowledges the socialtechnicity of advanced nanotechnology and proposes how its convergence (...)
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  6. Buying Time – Using Nanotechnologies and Other Emerging Technologies For A Sustainable Future.Thomas Vogt - 2010 - In U. Fiedeler (ed.), Understanding Nanotechnology. IOS Press. pp. 43-60.
    Abstract: Science and emerging technologies should not be predominantly tasked with furnishing us with more sustainable societies. Continuous short-term technological bail outs without taking into account the longer socio-cultural incubation times required to transition to ‘weakly sustainable’ economies squander valuable resources and time. Emerging technologies need to be deployed strategically to buy time in order to have extended political, social and ethical discussions about the root-causes of unsustainable economies and minimize social disruptions on the path towards global sustainability. Keywords: Nanoscience; (...)
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  7. Innovation and Nanotechnology: Converging Technologies and the End of Intellectual Property.David Koepsell - 2011 - London, UK: Bloomsbury Academic.
    This book defines 'nanowares' as the ideas and products arising out of nanotechnology. Koepsell argues that these rapidly developing new technologies demand a new approach to scientific discovery and innovation in our society. He takes established ideas from social philosophy and applies them to the nanoparticle world. In doing so he breaks down the subject into its elemental form and from there we are better able to understand how these elements fit into the construction of a more complex system of (...)
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  8. Changing the Criminal Character: Nanotechnology and Criminal Punishment.Katrina Sifferd - 2012 - In Daniel Seltzer (ed.), The Social Scale: The Weight of Justice. MIT Press.
    This chapter examines how advances in nanotechnology might impact criminal sentencing. While many scholars have considered the ethical implications of emerging technologies, such as nanotechnology, few have considered their potential impact on crucial institutions such as our criminal justice system. Specifically, I will discuss the implications of two types of technological advances for criminal sentencing: advanced tracking devices enabled by nanotechnology, and nano-neuroscience, including neural implants. The key justifications for criminal punishment- including incapacitation, deterrence, rehabilitation, and retribution – apply very (...)
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  9. Evaluating Future Nanotechnology: The Net Societal Impacts of Atomically Precise Manufacturing.Steven Umbrello & Seth D. Baum - 2018 - Futures 100:63-73.
    Atomically precise manufacturing (APM) is the assembly of materials with atomic precision. APM does not currently exist, and may not be feasible, but if it is feasible, then the societal impacts could be dramatic. This paper assesses the net societal impacts of APM across the full range of important APM sectors: general material wealth, environmental issues, military affairs, surveillance, artificial intelligence, and space travel. Positive effects were found for material wealth, the environment, military affairs (specifically nuclear disarmament), and space travel. (...)
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  10. Talkin' 'bout a (nanotechnological) revolution.Robert Sparrow - 2008 - IEEE Technology and Society 27 (2):37-43.
    It is often claimed that the development of nanotechnology will constitute a “technological revolution” with profound social, economic, and political consequences. The full implications of this claim can best be understood by imagining a scenario in which a political revolutionary made all the same claims that are commonly made by enthusiasts for nanotechnology. I argue that most people would be outraged to learn that the members of an unelected group were planning to radically reshape society in this fashion. I survey (...)
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  11. Dissolution of the Nature-Technology Dichotomy? Perspectives on Nanotechnology From the Viewpoint of an Everyday Understanding of Nature.Gregor Schiemann - 2004 - In Baird D. (ed.), Discovering the Nanoscale. IOS.
    The topic of this contribution is the tension between the everyday dichotomy of nature and technology and the nanotechnological understanding of the world. It is essential to nanotechnology that nature and technology not be categorically opposed as the manmade and the non-manmade, but rather regarded as parts of a structurally identical whole. After the introduction, I will address three points: In a brief first section I will formulate a few questions and a thesis about the nanotechnological developments that can be (...)
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  12. Calibrating the balance: The ethics of regulating the production and use of nanotechnology applications.Michael Vlerick - 2021 - In G. Jeswani & M. Van de Voorde (eds.), Handbook of Nanoethics. De Gruyter.
    Nanotechnology (henceforth NT) is a rapidly advancing field with the potential of revolutionizing diverse areas such as electronics, healthcare, transport and energy production. NT products and applications come with (potential) benefits and (potential) harms. The presence of potential harms calls for regulation. Both under- and overregulation – I argue – are morally undesirable. In the case of underregulation, stakeholders fall victim to the harmful effects of the technology. In the case of overregulation, stakeholders are deprived of the benefits of the (...)
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  13.  33
    Investigating the Nanotechnology of Electromagnetic Irrigation in the Nano-Agricultural System.Afshin Rashid - 2024 - Elsevier Bv , Engrn Electrical Engineering Ejournal 271.
    Magnetic water is generally water that passes through a magnetic field created based on specific calculations, and therefore the water changes, improving its physical and chemical properties. Magnetic system can treat water salinity.
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  14. Beyond Human Nature: Human-Racism in the Debate Over Genetic and Nanotechnological Enhancement.James J. Hughes - 2007 - In Nanoscale. New York, NY, USA: pp. 61-70.
    The alleged threats to human nature are at the root of many concerns about the use of nanotechnology to extend human health and capabilities. Bu the concept of human nature is illusory, selectively deployed, and does not impose any ethical constraint on human enhancement. Human nature is not only a meaningless concept, a product of our imperfect human cognition and a relic of the idea of a "soul," but, as it is deployed today against human enhancement technologies, it is also (...)
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  15. The Naturalness of the Naturalistic Fallacy and the Ethics of Nanotechnology.Mauro Dorato - 2015 - In Sven Ove Hansson (ed.), The Role of Technology in Science: Philosophical Perspectives. Dordrecht: Springer Verlag.
    In the first part of this paper, I try to clear the ground from frequent misconceptions about the relationship between fact and value by examining some uses of the adjective “natural” in ethical controversies. Such uses bear evidence to our “natural” tendency to regard nature (considered in a descriptive sense, as the complex of physical and biological regularities) as the source of ethical norms. I then try to account for the origin of this tendency by offering three related explanations, the (...)
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  16. C. C. M. Mody, Instrumental Community: Probe Microscopy and the Path to Nanotechnology. [REVIEW]Sean F. Johnston - 2013 - Technology and Culture 54:221-223.
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  17. Atomically Precise Manufacturing and Responsible Innovation: A Value Sensitive Design Approach to Explorative Nanophilosophy.Steven Umbrello - 2019 - International Journal of Technoethics 10 (2):1-21.
    Although continued investments in nanotechnology are made, atomically precise manufacturing (APM) to date is still regarded as speculative technology. APM, also known as molecular manufacturing, is a token example of a converging technology, has great potential to impact and be affected by other emerging technologies, such as artificial intelligence, biotechnology, and ICT. The development of APM thus can have drastic global impacts depending on how it is designed and used. This paper argues that the ethical issues that arise from APM (...)
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  18. Nothing New Under the Sun: Policy & Clinical Implications of Nanomedicine.Chris MacDonald & Bryn Williams-Jones - 2012 - BioéthiqueOnline 1:11.
    Nanotechnology research is beginning to see widespread coverage in the media and popular science literatures, but discussions of hopes and fears about nanotechnology have already become polarised into utopian and dystopian visions. More moderate discussions focus on the near-term applications of nanotechnologies, and on potential benefits and harms. However, in exploring the social and ethical implications of nanotechnology, important lessons should be learned from experiences in other fields. In particular, studies of the ethical, legal, and social issues of genetics (...)
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  19. Designing a Nano-Safe Future.Steven Umbrello - 2018 - Solutions Journal 9 (4):1-3.
    A short position paper on how we can preemptively anticipate and design nanotechnology-safe futures.
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  20. The Cybernetic Revolution and Historical Process.Leonid Grinin & Anton Grinin - 2015 - Social Evolution and History 14 (1):125-184.
    The article analyzes the technological shifts which took place in the second half of the twentieth and early twenty-first centuries and predict the main shifts in the next half a century. On the basis of the analysis of the latest achievements in medicine, bio- and nanotechnologies, robotics, ICT and other technological directions and also on the basis of the opportunities provided by the theory of production revolutions the authors present a detailed analysis of the latest production revolution which is (...)
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  21. Chemical Action: What is it and Why Does it Really Matter?W. John Koolage & W. John Koolage & Ralph Hall - 2011 - Journal of Nanoparticle Research 13 (13):1401-1427.
    Nanotechnology, as with many technologies before it, places a strain on existing legislation and poses a challenge to all administrative agencies tasked with regulating technology-based products. It is easy to see how statutory schemes become outdated, as our ability to understand and affect the world progresses. In this article, we address the regulatory problems that nanotechnology posses for the Food and Drug Administration’s (FDA) classification structure for ‘‘drugs’’ and ‘‘devices.’’ The last major modification to these terms was in 1976, with (...)
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  22. Explorative Nanophilosophy as Tecnoscienza: An Italian Perspective on the Role of Speculation in Nanoindustry.Steven Umbrello - 2019 - TECNOSCIENZA: Italian Journal of Science and Technology Studies 10 (1):71-88.
    There are two primary camps in which nanotechnology today can be categorized normal nanotechnology and speculative nanotechnology. The birth of nanotechnology proper was conceived through discourses of speculative nanotechnology. However, current nanotech-nology research has detracted from its speculative promises in favour of more attainable material products. Nonetheless, normal nanotechnology has leveraged the popular support and consequential funding it needs to conduct research and development (R&D) as a result of popular conceptions of speculative nanotechnology and its promises. Similarly, the scholarly literature (...)
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  23. Kein Weg vorbei an der Natur: Natur als Gegenpart und Voraussetzung der Nanotechnologie.Gregor Schiemann - 2006 - In A. Nordmann & J. Schummer (eds.), Nanotechnologie im Kontext: Philosophische, ethische und gesellschaftliche Perspektiven. Akademische Verlagsgesellschaft.
    Two criteria are proposed for characterizing the diverse and not yet perspicous relations between nanotechnology und nature. They assume a concept or nature as that which is not made by human action. One of the criteria endorses a distinction between natural and artificial objects in nanotechnology: the other allows for a discussion of the potential nanotechnological modification of nature. Insofar as current trends may be taken as indicative of future development, nanotechnology might increasingly use the model of nature as a (...)
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  24. HARMONIZING LAW AND INNOVATIONS IN NANOMEDICINE, ARTIFICIAL INTELLIGENCE (AI) AND BIOMEDICAL ROBOTICS: A CENTRAL ASIAN PERSPECTIVE.Ammar Younas & Tegizbekova Zhyldyz Chynarbekovna - manuscript
    The recent progression in AI, nanomedicine and robotics have increased concerns about ethics, policy and law. The increasing complexity and hybrid nature of AI and nanotechnologies impact the functionality of “law in action” which can lead to legal uncertainty and ultimately to a public distrust. There is an immediate need of collaboration between Central Asian biomedical scientists, AI engineers and academic lawyers for the harmonization of AI, nanomedicines and robotics in Central Asian legal system.
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  25. Cybernetic Revolution and Forthcoming Technological Transformations (The Development of the Leading Technologies in the Light of the Theory of Production Revolutions).Leonid Grinin & Anton Grinin - 2015 - In Leonid Grinin & Andrey Korotayev (eds.), Evolution: From Big Bang to Nanorobots. Uchitel Publishing House. pp. 251-330.
    The article analyzes the technological shifts which took place in the second half of the 20th and early 21st centuries and forecasts the main shifts in the next half a century. On the basis of the analysis of the latest achievements in inno-vative technological directions and also on the basis of the opportunities pro-vided by the theory of production revolutions the authors present a detailed analysis of the latest production revolution which is denoted as ‘Сybernetic’. The authors give some forecasts (...)
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  26. On the Notions of Rulegenerating & Anticipatory Systems.Niels Ole Finnemann - 1997 - Online Publication on Conference Site - Which Does Not Exist Any More.
    Until the late 19th century scientists almost always assumed that the world could be described as a rule-based and hence deterministic system or as a set of such systems. The assumption is maintained in many 20th century theories although it has also been doubted because of the breakthrough of statistical theories in thermodynamics (Boltzmann and Gibbs) and other fields, unsolved questions in quantum mechanics as well as several theories forwarded within the social sciences. Until recently it has furthermore been assumed (...)
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  27. Organising collective responsibility: On Precaution, Codes of Conduct and Understanding Public Debate. von Schomberg - 2010 - In U. Fiedeler (ed.), Understanding Nanotechnology. IOS Press. pp. 61-70.
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  28. Introduction to the International Handbook on Responsible Innovation.Rene Von Schomberg - 2019 - In René von Schomberg & Jonathan Hankins (eds.), International Handbook on Responsible Innovation. A global resource. Cheltenham, Royaume-Uni: Edward Elgar Publishing. pp. 1-11.
    he Handbook constitutes a global resource for the fast growing interdisciplinary research and policy communities addressing the challenge of driving innovation towards socially desirable outcomes. This book brings together well-known authors from the US, Europe, Asia and South-Africa who develop conceptual, ethical and regional perspectives on responsible innovation as well as exploring the prospects for further implementation of responsible innovation in emerging technological practices ranging from agriculture and medicine, to nanotechnology and robotics. The emphasis is on the socio-economic and normative (...)
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  29. Improve Alignment of Research Policy and Societal Values.Peter Novitzky, Michael J. Bernstein, Vincent Blok, Robert Braun, Tung Tung Chan, Wout Lamers, Anne Loeber, Ingeborg Meijer, Ralf Lindner & Erich Griessler - 2020 - Science 369 (6499):39-41.
    Historically, scientific and engineering expertise has been key in shaping research and innovation policies, with benefits presumed to accrue to society more broadly over time. But there is persistent and growing concern about whether and how ethical and societal values are integrated into R&I policies and governance, as we confront public disbelief in science and political suspicion toward evidence-based policy-making. Erosion of such a social contract with science limits the ability of democratic societies to deal with challenges presented by new, (...)
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  30. Modifying the Environment or Human Nature? What is the Right Choice for Space Travel and Mars Colonisation?Maurizio Balistreri & Steven Umbrello - 2023 - NanoEthics 17 (1):1-13.
    As space travel and intentions to colonise other planets are becoming the norm in public debate and scholarship, we must also confront the technical and survival challenges that emerge from these hostile environments. This paper aims to evaluate the various arguments proposed to meet the challenges of human space travel and extraterrestrial planetary colonisation. In particular, two primary solutions have been present in the literature as the most straightforward solutions to the rigours of extraterrestrial survival and flourishing: (1) geoengineering, where (...)
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  31. Definition of conceptual basics of nanoeconomics as inclusive society environment.Tetiana Ostapenko, Igor Britchenko & Valentyna Marchenko - 2021 - Eastern-European Journal of Enterprise Technologies 5 (13 (113) 2021):34-43.
    The definition of nanoeconomics can relate to different levels and areas of economic life. First of all, this is the nanolevel of the economic system. As a human economy, nanoeconomics provides for the allocation of an individual factor within the framework of a socio-economic phenomenon. The nanoeconomic aspect is central to the definition of inclusion. So, the inclusion of a person, as the main subject of nanoeconomics, to the formation and stabilization of economic systems is the initial one in the (...)
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  32.  77
    Nano-plasmonic and nanoelectronic pattern is one of the miniaturization techniqu.Afshin Rashid - 2024 - Authorea 12.
    nanological gates, in order to design nano-scale computers with dual-scale capabilities. All living biological systems function due to the molecular interactions of different subsystems. Molecular components (proteins and nucleic acids, lipids and carbohydrates, DNA and RNA) can be used as an inspirational strategy on how to design high-performance NEMS and MEMS that have the required features and characteristics. Considered. In addition, analytical and numerical methods are available for dynamic analysis and three-dimensional geometry, bonding and other properties of atoms and molecules. (...)
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  33. There’s Plenty of Boole at the Bottom: A Reversible CA Against Information Entropy.Francesco Berto, Jacopo Tagliabue & Gabriele Rossi - 2016 - Minds and Machines 26 (4):341-357.
    “There’s Plenty of Room at the Bottom”, said the title of Richard Feynman’s 1959 seminal conference at the California Institute of Technology. Fifty years on, nanotechnologies have led computer scientists to pay close attention to the links between physical reality and information processing. Not all the physical requirements of optimal computation are captured by traditional models—one still largely missing is reversibility. The dynamic laws of physics are reversible at microphysical level, distinct initial states of a system leading to distinct (...)
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  34. The precautionary principle: Its use within hard and soft law.Rene Von Schomberg - 2012 - European Journal of Risk Regulation 2 (3):147-156.
    The precautionary principle in public decision making concerns situations where following an assessment of the available scientific information, there are reasonable grounds for concern for the possibility of adverse effects on the environment or human health, but scientific uncertainty persists. In such cases provisional risk management measures may be adopted, without having to wait until the reality and seriousness of those adverse effects become fully apparent. This is the definition of the precautionary principle as operationalized under EU law. The precautionary (...)
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  35. Global technology regulation and potentially apocalyptic technological threats.James J. Hughes - 2007 - In Fritz Allhoff, Patrick Lin, James Moor, John Weckert & Mihail C. Roco (eds.), Nanoethics: The Ethical and Social Implications of Nanotechnology. Wiley. pp. 201-214.
    In 2000 Bill Joy proposed that the best way to prevent technological apocalypse was to "relinquish" emerging bio-, info- and nanotechnologies. His essay introduced many watchdog groups to the dangers that futurists had been warning of for decades. One such group, ETC, has called for a moratorium on all nanotechnological research until all safety issues can be investigated and social impacts ameliorated. In this essay I discuss the differences and similarities of regulating bio- and nanotechnological innovation to the efforts (...)
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  36. New Technology: Risks and Gains.Magdalena Klimczuk-Kochańska & Andrzej Klimczuk - 2015 - In Mehmet Odekon (ed.), The Sage Encyclopedia of World Poverty, 2nd Edition. Sage Publications. pp. 1144--1147.
    New technologies are often radical innovations that change current activities across different areas of social and economic life. At the beginning of the 21st century, some of these technologies are information and communications technology, nanotechnology, biotechnology, robotics, and artificial intelligence. These innovations stimulate new opportunities for the production, distribution, and consumption of goods and services, and thus can help solve social problems. But they also cause new social risks and inequalities.
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  37. Our Tactile Brain Computed World and Platonic Brain Web Wikipedia.Jahan N. Schad (ed.) - 2016 - Charleston, USA: CreateSpace.
    It is not likely that we will ever convincingly know how and why we came to be on this planet; of course, this has never prevented inquisitive minds from pushing the frontiers of understanding and discovery further. Our origin is the subject of scientific theories and continuous inquiries with no end in sight, as the shells of related complexities are getting much harder to crack. Paraphrasing philosopher and historian Will Durant, a very few people are getting to know more and (...)
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  38. Correction to: Does Facebook Violate Its Users’ Basic Human Rights?Alexander Sieber - 2022 - NanoEthics 16 (13):1-1.
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  39. Global Catastrophic and Existential Risks Communication Scale.Alexey Turchin & Denkeberger David - 2018 - Futures:not defiend yet.
    Existential risks threaten the future of humanity, but they are difficult to measure. However, to communicate, prioritize and mitigate such risks it is important to estimate their relative significance. Risk probabilities are typically used, but for existential risks they are problematic due to ambiguity, and because quantitative probabilities do not represent some aspects of these risks. Thus, a standardized and easily comprehensible instrument is called for, to communicate dangers from various global catastrophic and existential risks. In this article, inspired by (...)
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  40. The Future of Nuclear War.Alexey Turchin - manuscript
    In this article, I present a view on the future of nuclear war which takes into account the expected technological progress as well as global political changes. There are three main directions in which technological progress in nuclear weapons may happen: a) Many gigaton scale weapons. b) Cheaper nuclear bombs which are based on the use of the reactor-grade plutonium, laser isotope separation or are hypothetical pure fusion weapons. Also, advanced nanotechnology will provide the ability to quickly build large nuclear (...)
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  41. From Buzz to Burst—Critical Remarks on the Term ‘Life’ and Its Ethical Implications in Synthetic Biology.Michael Funk, Johannes Steizinger, Daniel Falkner & Tobias Eichinger - 2019 - NanoEthics 13 (3):173-198.
    In this paper, we examine the use of the term ‘life’ in the debates within and about synthetic biology. We review different positions within these debates, focusing on the historical background, the constructive epistemology of laboratory research and the pros and cons of metaphorical speech. We argue that ‘life’ is used as buzzword, as folk concept, and as theoretical concept in inhomogeneous ways. Extending beyond the review of the significant literature, we also argue that ‘life’ can be understood as aBurstwordin (...)
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  42. Saint Thomas d'Aquin contre les robots. Pistes pour une approche philosophique de l'Intelligence Artificielle.Matthieu Raffray - 2019 - Angelicum 4 (96):553-572.
    In light of the pervasive developments of new technologies, such as NBIC (Nanotechnology, biotechnology, information technology, and cognitive science), it is imperative to produce a coherent and deep reflexion on the human nature, on human intelligence and on the limit of both of them, in order to successfully respond to some technical argumentations that strive to depict humanity as a purely mechanical system. For this purpose, it is interesting to refer to the epistemology and metaphysics of Thomas Aquinas as a (...)
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  43. Genomes, gender and the psychodynamics of a scientific crisis: A psychoanalytic reading of Michael Crichton’s genomics novels.Hub Zwart - 2015 - New Genetics and Society 34 (1):1-24.
    Michael Crichton (1942–2008) was a prolific writer of “science novels”, portraying the psychodynamics and sociodynamics of genomics and other NBIC (Nanotechnology, Biotechnology, Information technology and Cognitive science) fields, fostering critical reflection on their societal dimensions. Science novels may serve as “literary experiments”, as windows into the (future) impacts of current research. Although on the surface level Crichton’s books may be seen as entertaining bestsellers, an in-depth reading allows them to emerge as exploratory exercises, usable as course material for science students. (...)
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  44. Artificial Intelligence in Life Extension: from Deep Learning to Superintelligence.Alexey Turchin, Denkenberger David, Zhila Alice, Markov Sergey & Batin Mikhail - 2017 - Informatica 41:401.
    In this paper, we focus on the most efficacious AI applications for life extension and anti-aging at three expected stages of AI development: narrow AI, AGI and superintelligence. First, we overview the existing research and commercial work performed by a select number of startups and academic projects. We find that at the current stage of “narrow” AI, the most promising areas for life extension are geroprotector-combination discovery, detection of aging biomarkers, and personalized anti-aging therapy. These advances could help currently living (...)
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  45. Artificial in its own right.Keith Elkin - manuscript
    Artificial Cells, , Artificial Ecologies, Artificial Intelligence, Bio-Inspired Hardware Systems, Computational Autopoiesis, Computational Biology, Computational Embryology, Computational Evolution, Morphogenesis, Cyborgization, Digital Evolution, Evolvable Hardware, Cyborgs, Mathematical Biology, Nanotechnology, Posthuman, Transhuman.
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  46. Global Technological Perspectives in the Light of Cybernetic Revolution and Theory of Long Cycles.Leonid Grinin & Anton Grinin - 2015 - Journal of Globalization Studies 6 (2):119-142.
    In the present paper, on the basis of the theory of production principles and production revolutions, we reveal the interrelation between K-waves and major technological breakthroughs in history and make some predictions about features of the sixth Kondratieff wave in the light of the Cybernetic Revolution which, we think, started in the 1950s. We assume that the sixth K-wave in the 2030s and 2040s will merge with the final phase of the Cybernetic Revolution (which we call the phase of self-regulating (...)
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  47.  88
    Life Beyond Life: Philosophical Reflections on Biobots and the Boundaries of Existence.Shubham K. Dominic - manuscript
    “In death, life persists, transforms, and renews—what are the limits of our existence?” -/- What does it mean to be alive? From the moment we are born, our existence seems predicated on a simple dichotomy: life or death. And yet, recent developments in science, such as the creation of biobots from the cells of dead organisms, challenge this very binary. These discoveries force us to ask profound questions about the nature of existence, the essence of life, and what it truly (...)
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  48. Humanities’ metaphysical underpinnings of late frontier scientific research.Alcibiades Malapi-Nelson - 2014 - Humanities 214 (3):740-765.
    The behavior/structure methodological dichotomy as locus of scientific inquiry is closely related to the issue of modeling and theory change in scientific explanation. Given that the traditional tension between structure and behavior in scientific modeling is likely here to stay, considering the relevant precedents in the history of ideas could help us better understand this theoretical struggle. This better understanding might open up unforeseen possibilities and new instantiations, particularly in what concerns the proposed technological modification of the human condition. The (...)
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  49. On Identifying Plausibility and Deliberative Public Policy.René Schomberg - 2011 - Science and Engineering Ethics 17 (4):739-742.
    The identification of plausible epistemic approaches in science as well as the social problem definitions with which scientists implicitly work is essential for the quality of a deliberative public policy. While responding to the Nanofutures project, I will reflect on the essential elements of such a policy.
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  50. 类人猿或安卓会毁灭地球吗?*雷·库兹韦尔(2012年)关于如何创造心灵的评论 (Will Hominoids or Androids Destroy the Earth? —A Review of How to Create a Mind by Ray Kurzweil (2012)) (2019年修订版).Michael Richard Starks - 2020 - In 欢迎来到地球上的地狱 婴儿,气候变化,比特币,卡特尔,中国,民主,多样性,养成基因,平等,黑客,人权,伊斯兰教,自由主义,繁荣,网络,混乱。饥饿,疾病,暴力,人工智能,战争. Las Vegas, NV USA: Reality Press. pp. 146-158.
    几年前,我通常可以从书名中分辨出什么,或者至少从章节标题中看出,会犯什么样的哲学错误,以及错误的频率。就名义上的科学著作而言,这些可能在很大程度上局限于某些章节,这些章节具有哲学意义或试图得出关于该作 品的意义或长期意义的一般性结论。然而,通常情况下,事实的科学问题慷慨地与哲学的胡言乱语,这些事实意味着什么。维特根斯坦在大约80年前描述的科学问题与各种语言游戏所描述的明确区别很少被考虑,因此人们交替 地被科学所震惊,并因它的不连贯而感到沮丧。分析。因此,这是与这个卷。 如果一个人要创造一个或多或少像我们一样的头脑,一个人需要有一个理性的逻辑结构,并理解两种思想体系(双过程理论)。如果一个人要对此进行哲学思考,就需要理解科学事实问题与语言如何在问题语境中工作,以及如何 避免还原主义和科学主义的陷阱的哲学问题之间的区别,但Kurzweil,如最学生的行为,基本上都是无知的。他被模型、理论和概念所陶醉,以及解释的冲动,而维特根斯坦向我们表明,我们只需要描述,理论、概念等 只是使用语言(语言游戏)的方式,只有它们有明确的价值测试(清晰的真理制造者,或约翰西尔(AI最著名的批评家)喜欢说,明确的满意条件(COS))。我试图在我最近的著作中对此作一个开端。 那些希望从现代两个系统的观点来看为人类行为建立一个全面的最新框架的人,可以查阅我的书《路德维希的哲学、心理学、Mind 和语言的逻辑结构》维特根斯坦和约翰·西尔的《第二部》(2019年)。那些对我更多的作品感兴趣的人可能会看到《会说话的猴子——一个末日星球上的哲学、心理学、科学、宗教和政治——文章和评论2006-201 9年第3次(2019年)和自杀乌托邦幻想21篇世纪4日 (2019) .
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