Results for 'nanoelectronics, nanoscience and nanoelectronics, nano electronic technology sensors, nano bio electronic'

982 found
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  1. Nano-time intervals in bio-systems - Their relevance to nano-bio-science and nano-bio-technology.Varanasi Ramabrahmam - 2013 - In Proceedings of 2nd National seminar on New Materials Research and Nanotechnology (NSNMRN2013) held at Department of Physics, Government Arts College, Stone House Hill, OOty-643 002, the Nilagiris District, Tamilnadu, India, between 25-27, September, 201. pp. 172-178.
    The nature and structure of time and time-intervals in physical, chemical and biological systems will be elucidated. The relation and dependence among time, energy and taking place of natural processes will be critically analyzed. The bio-processes taking place in nano-time intervals will be identified. Their relevance to nano-bio-science and nano-bio-technology will be developed and nano-time interval-aspect of nano-sciences and nano-technology will be advanced. -/- .
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  2. Streaching the notion of moral responsibility in nanoelectronics by appying AI.Robert Albin & Amos Bardea - 2021 - In Robert Albin & Amos Bardea (eds.), Ethics in Nanotechnology Social Sciences and Philosophical Aspects, Vol. 2. Berlin: De Gruyter. pp. 75-87.
    The development of machine learning and deep learning (DL) in the field of AI (artificial intelligence) is the direct result of the advancement of nano-electronics. Machine learning is a function that provides the system with the capacity to learn from data without being programmed explicitly. It is basically a mathematical and probabilistic model. DL is part of machine learning methods based on artificial neural networks, simply called neural networks (NNs), as they are inspired by the biological NNs that constitute (...)
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  3.  26
    Nanotechnology and Synthetic Biology: The Ambiguity of the Nano-Bio Convergence.Louis Ujéda - 2019 - Philosophia Scientiae 23:57-72.
    Cet article étudie l’étendue de la convergence réelle entre les nanotechnologies et la biologie de synthèse, symbole des technosciences biologiques. Pour traiter la question de la dichotomie entre le niveau des objets auquel on observe un processus de pluralisation plutôt qu’une convergence, et le niveau des discours, où le scénario de la convergence semble rester l’explication dominante, nous développons une analyse des disciplines comme dispositifs au sens de Foucault. Cela permet de décrire précisément les différentes strates composant les dispositifs et (...)
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  4. Nano-ethics as NEST-ethics: Patterns of moral argumentation about new and emerging science and technology[REVIEW]Tsjalling Swierstra & Arie Rip - 2007 - NanoEthics 1 (1):3-20.
    There might not be a specific nano-ethics, but there definitely is an ethics of new & emerging science and technology (NEST), with characteristic tropes and patterns of moral argumentation. Ethical discussion in and around nanoscience and technology reflects such NEST-ethics. We offer an inventory of the arguments, and show patterns in their evolution, in arenas full of proponents and opponents. We also show that there are some nano-specific issues: in how size matters, and when agency (...)
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  5.  20
    Data-Driven Technology in Event-Based Vision.Ruolin Sun, Dianxi Shi, Yongjun Zhang, Ruihao Li & Ruoxiang Li - 2021 - Complexity 2021:1-19.
    Event cameras which transmit per-pixel intensity changes have emerged as a promising candidate in applications such as consumer electronics, industrial automation, and autonomous vehicles, owing to their efficiency and robustness. To maintain these inherent advantages, the trade-off between efficiency and accuracy stands as a priority in event-based algorithms. Thanks to the preponderance of deep learning techniques and the compatibility between bio-inspired spiking neural networks and event-based sensors, data-driven approaches have become a hot spot, which along with the dedicated hardware and (...)
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  6.  47
    Responsible Development of Nanoscience and Nanotechnology: Contextualizing Socio-Technical Integration into the Nanofabrication Laboratories in the USA. [REVIEW]Debasmita Patra - 2011 - NanoEthics 5 (2):143-157.
    There have been several conscious efforts made by different stakeholders in the area of nanoscience and nanotechnology to increase the awareness of social and ethical issues (SEI) among its practitioners. But so far, little has been done at the laboratory level to integrate a SEI component into the laboratory orientation schedule of practitioners. Since the laboratory serves as the locus of activities of the scientific community, it is important to introduce SEI there to stimulate thinking and discussion of SEI (...)
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  7.  10
    Nanosciences et technologies convergentes : quelle économie politique?Françoise D. Roureoure - 2017 - Archives de Philosophie du Droit 59 (1):75-84.
    L’article procède à un cheminement en quatre étapes : la première traite de la question de la mesure économique des productions nanométriques, dans une dynamique de filière et de convergence multidisciplinaire, champ d’étude de la méso-économie ; la seconde fait référence aux origines de l’approche mercantiliste de l’économie et à ses conséquences sur l’économie politique des matériaux avancés, procédés et services du domaine des nanotechnologies et matériaux avancés manufacturés ; la troisième étape recherchera les points d’appui sur lesquels l’économie politique (...)
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  8.  85
    Nano-technology and privacy: On continuous surveillance outside the panopticon.Jeroen Van Den Hoven & Pieter E. Vermaas - 2007 - Journal of Medicine and Philosophy 32 (3):283 – 297.
    We argue that nano-technology in the form of invisible tags, sensors, and Radio Frequency Identity Chips (RFIDs) will give rise to privacy issues that are in two ways different from the traditional privacy issues of the last decades. One, they will not exclusively revolve around the idea of centralization of surveillance and concentration of power, as the metaphor of the Panopticon suggests, but will be about constant observation at decentralized levels. Two, privacy concerns may not exclusively be about (...)
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  9.  49
    Nano-Technology and Privacy: On Continuous Surveillance Outside the Panopticon.Jeroen Den Hovevann & Pieter E. Vermaas - 2007 - Journal of Medicine and Philosophy 32 (3):283-297.
    We argue that nano-technology in the form of invisible tags, sensors, and Radio Frequency Identity Chips (RFIDs) will give rise to privacy issues that are in two ways different from the traditional privacy issues of the last decades. One, they will not exclusively revolve around the idea of centralization of surveillance and concentration of power, as the metaphor of the Panopticon suggests, but will be about constant observation at decentralized levels. Two, privacy concerns may not exclusively be about (...)
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  10.  46
    Specificity and Engagement: Increasing ELSI’s Relevance to Nano–Scientists.Barry L. Shumpert, Amy K. Wolfe, David J. Bjornstad, Stephanie Wang & Maria Fernanda Campa - 2014 - NanoEthics 8 (2):193-200.
    Scholars studying the ethical, legal, and social issues associated with emerging technologies maintain the importance of considering these issues throughout the research and development cycle, even during the earliest stages of basic research. Embedding these considerations within the scientific process requires communication between ELSI scholars and the community of physical scientists who are conducting that basic research. We posit that this communication can be effective on a broad scale only if it links societal issues directly to characteristics of the emerging (...)
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  11. Nano and bio : how are they alike? How are they different?Paul B. Thompson - 2008 - In Kenneth H. David & Paul B. Thompson (eds.), What Can Nanotechnology Learn From Biotechnology?: Social and Ethical Lessons for Nanoscience From the Debate Over Agrifood Biotechnology and Gmos. Elsevier/Academic Press.
  12.  19
    Content Analysis of Nano-news Published Between 2011 and 2018 in Turkish Newspapers.Şeyma Çalık, Ayşe Koç, Tuba Şenel Zor, Erhan Zor & Oktay Aslan - 2021 - NanoEthics 15 (2):117-132.
    The aim of this study is to examine the distribution of news related to nanoscience and nanotechnology published in Turkish newspapers between 2011 and 2018. Nine Turkish newspapers selected using criterion sampling were investigated and the document analysis method was used to analyze them. The electronic archives of the newspapers were used to collect data and the word “nano” was used as a keyword. The obtained data were analyzed with the content analysis technique. While analyzing the news (...)
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  13.  54
    From Nano-Convergence to NBIC-Convergence: “The best way to predict the future is to create it”.Joachim Schummer - unknown
    This chapter combines rhetorical with conceptual analysis to argue that the concept of convergence of technologies is a teleological concept that does not describe or predict any recent past, present, or future development. Instead it always expresses or attributes political goals of how future technology should be developed. The concept was already fully developed as a flexible rhetorical tool by US science administrators to create nanotechnology (as nano-convergence), before it was broadened to invent the convergence of nano-, (...)
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  14. From bio to nano : learning the lessons, interrogating the comparisons.Philip Macnaghten - 2008 - In Kenneth H. David & Paul B. Thompson (eds.), What Can Nanotechnology Learn From Biotechnology?: Social and Ethical Lessons for Nanoscience From the Debate Over Agrifood Biotechnology and Gmos. Elsevier/Academic Press.
     
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  15. Ethical, legal and social aspects of brain-implants using nano-scale materials and techniques.Francois Berger, Sjef Gevers, Ludwig Siep & Klaus-Michael Weltring - 2008 - NanoEthics 2 (3):241-249.
    Nanotechnology is an important platform technology which will add new features like improved biocompatibility, smaller size, and more sophisticated electronics to neuro-implants improving their therapeutic potential. Especially in view of possible advantages for patients, research and development of nanotechnologically improved neuro implants is a moral obligation. However, the development of brain implants by itself touches many ethical, social and legal issues, which also apply in a specific way to devices enabled or improved by nanotechnology. For researchers developing nanotechnology such (...)
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  16.  48
    Brave BioArt 2: shedding the bio, amassing the nano, and cultivating posthuman life.Natasha Vita-More - 2007 - Technoetic Arts 5 (3):171-186.
    This article will address an overview of BioArt, biomedia and its practitioners, developed through a series of semi-structured, qualitative interviews and openended discussions with more than fifteen experts in the field. BioArt is approached from the perspective of scientific exploration, visual design in interactivity and installation, and social commentary and political activism. Of consequence is the fact that BioArt is relatively new, its nomenclature is without a codified definition, and bioartists have varied views on the parameters of its biomedia. Regardless, (...)
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  17.  46
    Simulation at the nano-scale.Eric Winsberg - manuscript
    All of the pundits, prognosticators, and policymakers are in agreement: research into the science and technology of the nano-scale is going to be one of the hot scientific topics of the 21st Century. According to the web page of the National Nanotechnology Initiative, moreover, this should make nanotechnology and nano-science “of great interest to philosophers.” Admittedly, the kind of philosophers being imagined by the authors of the initiative web page are most likely something like the nano-technological (...)
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  18.  38
    Deliberating responsibility: a collective contribution by the C’Nano IdF Nanoscience & Society Office.Stéphanie Lacour, Sacha Loeve, Brice Laurent, Virginie Albe, Aurélie Delemarle, Bernard Bartenlian & Sophie Lanone - 2015 - Foundations of Chemistry 17 (3):225-245.
    The very existence of explicit techno-scientific controversies in the “nano” arena is often denied on behalf of a conception of science, risks, public engagement and responsibility which borders on a disembodied idealism and merits at least serious discussion. The recurrence of this view prompted us to clarify our position regarding our common field of research, in order to avoid being trapped in the seemingly clear divide between the universal and neutral pursuit of pure science, on the one hand, and (...)
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  19.  18
    Technology and Metaphysics.Jean-Pierre Dupuy - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Malden, MA: Wiley-Blackwell. pp. 214–217.
  20.  17
    Representations of (Nano)technology in Comics from the ‘NanoKOMIK’ Project.Sergio Urueña - 2024 - NanoEthics 18 (2):1-30.
    Representations of science and technology, embodied as imaginaries, visions, and expectations, have become a growing focus of analysis. These representations are of interest to normative approaches to science and technology, such as Hermeneutic Technology Assessment and Responsible Innovation, because of their ability to modulate understandings of science and technology and to influence scientific and technological development. This article analyses the culture of participation underlying the NanoKOMIK project and the representations and meanings of (nano)science and ( (...))technology communicated in the two nano-fiction comic books created as part of the project: _Dayanne and Murillo. The power of nanoscience_ (2016) and _NanoKOMIK #2_ (2017). The article argues that despite NanoKOMIK’s efforts to engage the public with (nano)science and (nano)technology, it reproduces non-binding modes of public participation and transmits socio-technical meanings that are instrumental in the social legitimisation of (nano)technology. More specifically, the analysis shows that NanoKOMIK’s comic books, in addition to not problematising the risks and conveying an eminently positive view of nanotechnology, also communicate certain ‘myth-conceptions’ of scientific activity and its products. For example, they convey an individualistic and linear vision of research and innovation and an instrumentalist and neutral (or ‘value-free’) view of technology. These findings highlight the importance of critically analysing the ‘cultures of participation’ that characterise and reproduce ‘participatory’ or ‘collaborative’ projects and the representations of (nano)science and (nano)technology that they perpetuate. (shrink)
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  21.  94
    Has technology introduced new ethical problems?Kimball P. Marshall - 1999 - Journal of Business Ethics 19 (1):81 - 90.
    Drawing on William F. Ogburn's cultural lag thesis, an inherent conflict is proposed between the rapid speed of modern technological advances and the slower speed by which ethical guidelines for utilization of new technologies are developed. Ogburn's cultural lag thesis proposes that material culture advances more rapidly than non-material culture. Technology is viewed as part of material culture and ethical guidelines for technology utilization are viewed as an adaptive aspect of non-material culture. Cultural lag is seen as a (...)
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  22.  60
    Sunscreens with Titanium Dioxide (TiO 2 ) Nano-Particles: A Societal Experiment. [REVIEW]Patricia Osseweijer - 2010 - NanoEthics 4 (2):103-113.
    The risks of novel technologies, such as nano(bio)technology cannot be fully assessed due to the existing uncertainties surrounding their introduction into society. Consequently, the introduction of innovative technologies can be conceptualised as a societal experiment, which is a helpful approach to evaluate moral acceptability. This approach is illustrated with the marketing of sunscreens containing nano-sized titanium dioxide (TiO2) particles. We argue that the marketing of this TiO2 nanomaterial in UV protective cosmetics is ethically undesirable, since it violates (...)
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  23.  30
    Nanotechnology and Bioartificial Liver Engineering. Two Rival Paths for “Converging Technology”.Xavier Guchet & Cécile Legallais - 2019 - Philosophia Scientiae 23:121-135.
    La conception américaine de la convergence technologique, promue par le programme NBIC (Nano-Bio-Info-Cogno), est orientée vers la recherche d’une intégration de tous les domaines du réel (la nature, la vie, l’esprit, la société) dans la représentation unitaire d’un monde constitué de systèmes hiérarchiques complexes et couplés entre eux. Il s’agit par conséquent d’une vision totalisante, témoignant d’un idéal de contrôle et de maîtrise que rien ne paraît devoir limiter. Les Grecs avaient un...
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  24.  27
    Orchestrations of consciousness in the universe: Consciousness and electronic music applied to Xenolinguistics and Adnyamathanha aboriginal songs.Willard G. Van De Bogart - 2018 - Technoetic Arts 16 (1):113-131.
    This article deals with the reframing of the concept of universal mediated communication on a global scale. Subjects include the following: the universe has a conscious force field at all its scales, requiring continuous inter-scale communication of information; the field exhibits distinct electromagnetic frequencies associated with the building blocks of life; and advances in the technology of sound production with electronic synthesizers can be applied to study mechanisms of such universal communication. The question being addressed is how (...) synthesizers can be used to create sonic xenolinguistic expressions when composing with sonified frequencies obtained from bio-organisms, human protein structures, phonemes and various types of interstellar frequencies that include, but are not limited to, gamma bursts, pulsars and neutron stars. The objective is to construct sonic xenolingusitic expressions that can act like feedback loops within the field of consciousness. These sonic expressions can include anomalous cognitive, emotive or spiritual experiences that may be emerging out of the universal field of consciousness in real time. Xenolinguistics is a hypothetical language used to communicate with other sentient beings in the universe. The rationale for composing sonic xenolingustic expressions is the belief that the universe is considered conscious and that there is a field of consciousness existing throughout the universe that in principle is also instrumental in how communication can evolve with extraterrestrials. Outlines of other attempts at extraterrestrial communication by other researchers will be offered based on current literature. The probability that other life forms have established some mode of information exchange that is detectable and that, in return, may be able to create a form of communication to respond will be covered. It is postulated that various energy fields existing before and after the creation of our universe interacted with one another becoming abiotic, and then over time, formed even more complex structures. It is these complex structures that were then able to communicate essential information for maintaining their stability and survivability by using specific signalling frequencies. It is hypothesized that first life in the universe emerged within an already existing field of information and that our consciousness is thereby able to establish communication with other forms of consciousness in the universe. It is on this basis that a novel scientific and philosophical paradigm is considered in which the universe is conceived of as an active information matrix that can entertain potential extraterrestrial communication. In this framework, the present article will offer a new approach to orchestrated electronic sounds as a means to such communication. By integrating quantum physical properties into that sonic framework, a new study emerged on how sonic xenolinguistic elements can be incorporated into electronic composition techniques. This new framework may produce new algorithms for musical expression that not only represent an innovative future of electronic music but may also be crucial in the formulation and induction of new states of consciousness that will enable humankind to directly participate in the further becoming of the universe as a result of the evolution of this universal field of consciousness. (shrink)
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  25.  24
    Art, technology and the Internet of Living Things.Vibeke Sørensen & J. Stephen Lansing - 2023 - AI and Society 38 (6):2401-2417.
    Intelligence augmentation was one of the original goals of computing. Artificial Intelligence (AI) inherits this project and is at the leading edge of computing today. Computing can be considered an extension of brain and body, with mathematical prowess and logic fundamental to the infrastructure of computing. Multimedia computing—sensing, analyzing, and translating data to and from visual images, animation, sound and music, touch and haptics, as well as smell—is based on our human senses and is now commonplace. We use data visualization (...)
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  26.  38
    DuPont and Environmental Defense Fund Co-Constructing a Risk Framework for Nanoscale Materials: an Occasion to Reflect on Interaction Processes in a Joint Inquiry. [REVIEW]Lotte Krabbenborg - 2013 - NanoEthics 7 (1):45-54.
    There is interest in more and better interaction between civil society and actors developing nanotechnologies, nano-materials and nano-enabled products: government agencies but also branch organizations in the chemical sector position civil society organizations (CSOs) as ‘voices of civil society’, and invite CSOs to participate in multistakeholder events. In such events, CSOs are expected to articulate societal needs, issues and values so that these can be taken up by actors with institutional roles and mandates to develop and embed newly (...)
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  27.  59
    Do we need a specific kind of technoscience assessment? Taking the convergence of science and technology seriously.Karen Kastenhofer - 2010 - Poiesis and Praxis 7 (1-2):37-54.
    The presented paper addresses the concept of technoscience and its possible implications for technology assessment. Drawing on the discourse about converging technologies, it formulates the assumption that a general shift within science from epistemic cultures to techno-epistemic cultures lies at the heart of the propagated convergence between nano-, bio-, info- and cogno-sciences and technologies. This shift is adequately captured—so the main thesis—by the technoscience label. The paper elaborates on the shared characteristics of the new technosciences, especially their hybrid (...)
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  28. 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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  29.  17
    Bio-digital architecture.David Maulén de los Reyes - 2022 - AI and Society 37 (3):1191-1206.
    The concept of “Bio-Digital Architecture” is not new and it is within an area of great speculation and few well-demarcated definitions. A key factor in the definition and practice of technology is the difference between its production and use. If we assume that forms of use are also technical, this distinction is intrinsic to countries based on economies without added value and their histories focused on reverting this situation. This article proposes the revision of a paradigm shift in South (...)
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  30. If and then: A critique of speculative nanoethics. [REVIEW]Alfred Nordmann - 2007 - NanoEthics 1 (1):31-46.
    Most known technology serves to ingeniously adapt the world to the physical and mental limitations of human beings. Humankind has acquired awesome power with its rather limited means. Nanotechnological capabilities further this power. On some accounts, however, nanotechnological research will contribute to a rather different kind of technological development, namely one that changes human beings so as to remove or reduce their physical and mental limitations. The prospect of this technological development has inspired a fair amount of ethical debate. (...)
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  31. Imaginative Value Sensitive Design: Using Moral Imagination Theory to Inform Responsible Technology Design.Steven Umbrello - 2020 - Science and Engineering Ethics 26 (2):575-595.
    Safe-by-Design (SBD) frameworks for the development of emerging technologies have become an ever more popular means by which scholars argue that transformative emerging technologies can safely incorporate human values. One such popular SBD methodology is called Value Sensitive Design (VSD). A central tenet of this design methodology is to investigate stakeholder values and design those values into technologies during early stage research and development (R&D). To accomplish this, the VSD framework mandates that designers consult the philosophical and ethical literature to (...)
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  32.  14
    New Technology, Big Data and the Law.Marcelo Corrales Compagnucci, Mark Fenwick & Nikolaus Forgó (eds.) - 2017 - Singapore: Imprint: Springer.
    This edited collection brings together a series of interdisciplinary contributions in the field of Information Technology Law. The topics addressed in this book cover a wide range of theoretical and practical legal issues that have been created by cutting-edge Internet technologies, primarily Big Data, the Internet of Things, and Cloud computing. Consideration is also given to more recent technological breakthroughs that are now used to assist, and - at times - substitute for, human work, such as automation, robots, sensors, (...)
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  33. The MANBRIC-technologies in the forthcoming technological revolution.Leonid Grinin, Anton Grinin & Andrey Korotayev - 2017 - Industry 4.0 - Entrepreneurship and Structural Change in the New Digital Landscape: What is Coming on Along with the Fourth Industrial Revolution:243-261.
    In this chapter, we analyze the relationship between Kondratieff waves and major technological revolutions on the basis of the theory of production principles and production revolutions, and offer some forecasts about the features of the Sixth Kondratieff Wave/the Fourth Industrial Revolution. We show that the technological breakthrough of the Sixth Kondratieff Wave may be interpreted as both the Fourth Industrial Revolution and as the final phase of the Cybernetic Revolution. We assume that the sixth K-wave in the 2030s and 2040s (...)
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  34.  18
    “Manufacturing Life” in Real Work Processes? New Manufacturing Environments with Micro- and Nanorobotics.António Brandão Moniz & Bettina-Johanna Krings - 2022 - NanoEthics 16 (1):115-131.
    The convergence of nano-, bio-, information, and cognitive sciences and technologies (NBIC) is advancing continuously in many societal spheres. This also applies to the manufacturing sector, where technological transformations in robotics push the boundaries of human–machine interaction (HMI). Here, current technological advances in micro- and nanomanufacturing are accompanied by new socio-economic concepts for different sectors of the process industry. Although these developments are still ongoing, the blurring of the boundaries of HMI in processes at the micro- and nano- (...)
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  35.  18
    Bio-electronic aggregates on Neon-Paleolitikos strata.André Sier - 2019 - Technoetic Arts 17 (3):215-228.
    Electronic machinic phenomena yield fascinating links with biological processes. Either in the macro-micro-structure of binary encoded information ‐ bytes on media ‐ to the processual flow programs execute on hardware while operating it. Observing micro-electronic worlds akin to living entities: electronic voltages running throughout electronic architectures pipelining data to memory registers; operating systems executing programs on electronic substrates; data flows taking place in machines and in communications protocols within networks. Static art-sci constructs explore and visualize (...)
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  36.  25
    Postdigital-biodigital: An emerging configuration.Michael A. Peters, Petar Jandrić & Sarah Hayes - 2023 - Educational Philosophy and Theory 55 (1):1-14.
    This dialogue (trilogue) is an attempt to critically discuss the technoscientific convergence that is taking place with biodigital technologies in the postdigital condition. In this discussion, Sarah Hayes, Petar Jandrić and Michael A. Peters examine the nature of the convergences, their applications for bioeconomic sustainability and associated ecopedagogies. The dialogue paper raises issues of definition and places the technological convergence (‘nano-bio-info-cogno’) – of new systems biology and digital technologies at the nano level – in an evolutionary context to (...)
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  37.  16
    Nanoscience and Nanotechnology: Assessing the Nature of Innovation in These Fields.Michael D. Mehta - 2002 - Bulletin of Science, Technology and Society 22 (4):269-273.
    Sociologists of science and others have long been interested in how advances in science come about, and their potential social and economic impacts. Developments in nanoscience and nanotechnology will provide social scientists with a unique opportunity to explore how scientific activities form de novo. Additionally, scientists will have the opportunity to examine the factors that drive science and technology in certain directions by considering how different models of innovation may explain how the topography of the knowledge-based economy is (...)
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  38. The infrasonics and electronics of bionics.Varanasi Ramabrahmam - 2009 - In Proceedings of Presentations at International Conference on Photonics, Nano-Technology and Computer Applications (ICOPNAC- 2009), 25-28 February 2009 Held at Center for Research and Development, PRIST UNIVERSITY,. pp. 20-39.
    The concepts developed using Upanishadic insight regarding human consciousness, mind and mental processes and their applications in information acquisition and transmission by, through and in human body will be used to model human cognitive processes. A sequential reversible process by the stepwise transformation of (i) infrasonic form of energy and transformation of information already stored in (ii) biochemical form within as memory, and retrieved as inner mental world into (iii) electrochemical and then into (iv) mechanical form while communicating and the (...)
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  39. Ecomodernism and the Libidinal Economy: Towards a Critical Conception of Technology in the Bio-Based Economy.Roel Veraart, Vincent Blok & Pieter Lemmens - 2023 - Philosophy and Technology 36 (2):1-23.
    In this paper, we carry out a critical analysis of the concept of technology in the current design of the bio-based economy (BBE). Looking at the current status of the BBE, we observe a dominant focus on technological innovation as the principal solution to climatic instability. We take a critical stance towards this “ecomodernist” worldview, addressing its fundamental assumptions, and offer an underarticulated explanation as to why a successful transition toward a sustainable BBE—i.e. one that fully operates within the (...)
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  40.  51
    Nanotechnology: from the ancient time to nowadays.Delphine Schaming & Hynd Remita - 2015 - Foundations of Chemistry 17 (3):187-205.
    While nanosciences and nanotechnologies appear as new concepts developed at the end of the twentieth century, we show that metallic nanoparticles have already been used since ancient times, in particular as colorant in the glass and ceramic industries. Moreover, a lot of natural nanomaterials are also present in the mineral, vegetal and animal worlds. Nevertheless, the breakthrough of nanotechnology has been permitted in the past few decades by the advent of apparatus allowing the manipulation and observation of the nanoworld. Indeed, (...)
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  41.  50
    Technoscientia est Potentia?Karen Kastenhofer & Jan C. Schmidt - 2011 - Poiesis and Praxis 8 (2-3):125-149.
    Within the realm of nano-, bio-, info- and cogno- (or NBIC) technosciences, the ‘power to change the world’ is often invoked. One could dismiss such formulations as ‘purely rhetorical’, interpret them as rhetorical and self-fulfilling or view them as an adequate depiction of one of the fundamental characteristics of technoscience. In the latter case, a very specific nexus between science and technology, or, the epistemic and the constructionist realm is envisioned. The following paper focuses on this nexus drawing (...)
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  42.  45
    Teaching ethics and technology with Agora, an electronic tool.Simone Burg & Ibo Poel - 2005 - Science and Engineering Ethics 11 (2):277-297.
    Courses on ethics and technology have become compulsory for many students at the three Dutch technical universities during the past few years. During this time, teachers have faced a number of didactic problems, which are partly due to a growing number of students. In order to deal with these challenges, teachers in ethics at the three technical universities in the Netherlands — in Delft, Eindhoven and Twente — have developed a web-based computer program called Agora (see www.ethicsandtechnology.com). This program (...)
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  43.  38
    A map of technopolitics: Deep convergence, platform ontologies, and cognitive efficiency.Michael A. Peters - 2020 - Thesis Eleven 158 (1):117-140.
    This paper, based on an invited Thesis Eleven presentation, provides a ‘map of technopolitics’ that springs from an investigation of the theoretical notion of technological convergence adopted by the US National Science Foundation, signaling a new paradigm of ‘nano-bio-info-cogno’ technologies. This integration at the nano-level is expected to drive the next wave of scientific research, technology and knowledge economy. The paper explores the concept of ‘technopolitics’ by investigating the links between Wittgenstein’s anti-scientism and Lyotard’s ‘technoscience’, reviewing the (...)
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  44.  33
    The Experts Role in Nanoscience and Technology.Edward Munn Sanchez - 2004 - In Baird D. (ed.), Discovering the Nanoscale. IOS.
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  45. Nanotechnology and Privacy.Jeroen van den Hoven - 2006 - International Journal of Applied Philosophy 20 (2):215-228.
    The development of ever smaller integrated circuits at the sub-micron and nanoscale—in accordance with Moore’s Law—drives the production of very small tags, smart cards, smart labels and sensors. Nanoelectronics and submicron technology supports surveillance technology which is practically invisible. I argue that one of the most urgent and immediate concerns associated with nanotechnology is privacy. Computing in the twenty-first century will not only be pervasive and ubiquitous, but also inconspicuous. If these features are not counteracted in design, they (...)
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  46.  21
    The Promises and Perils of Nanoscience and Nanotechnology: Exploring Emerging Social and Ethical Issues.Pallavoor Vaidyanathan, Sudipta Seal & Aldrin E. Sweeney - 2003 - Bulletin of Science, Technology and Society 23 (4):236-245.
    Rapid advances in nanoscience and nanotechnology are profoundly influencing the ways in which we conceptualize the world of the future, and human ability to manipulate matter at the atomic and molecular levels offers previously unimagined possibilities for scientific discovery and technological applications. The convergence of nanotechnology with biotechnology, information technology, cognitive science, and engineering may hold promise for the improvement of human performance at a number of levels. Based on a National Science Foundation-funded Research Experiences for Undergraduates Program (...)
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  47. Forthcoming Kondratieff wave, Cybernetic Revolution, and global ageing.Leonid Grinin, Anton Grinin & Andrey Korotayev - 2017 - Technological Forecasting and Social Change 115:52-68.
    In the present article we analyze the relationships between K-waves and major technological breakthroughs in history and offer forecasts about features of the sixth Kondratieff wave. We use for our analysis the basic ideas of long cycles' theory and related theories (theories of the leading sector, technological styles etc.) as well as the ideas of our own theory of production principles and production revolutions. The latest of production revolution is the Cybernetic Revolution that, from our point of view, started in (...)
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  48.  61
    Research and Design of Snow Hydrology Sensors and Instrumentation: Selected Research Papers.Raman K. Attri - 2018 - Singapore: Speed To Proficiency Research: S2Pro©.
    This book is a collection of eight in-depth and detailed research papers authored by Dr. Raman K Attri between 1996 to 2005. The book presents early-career scientific work by the author as a scientist at a research organization. The book provides the conceptual background and key electronics and mechanical design principles used in designing sensors and instrumentation systems to measure snow hydrological parameters. The systems discussed in this book can be used to measure snow depth, layer temperature, temperature distribution profile, (...)
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  49.  47
    The Imagination in Charge.Mark Hunyadi - 2010 - NanoEthics 4 (3):199-204.
    According to Marc Peschansky, one of the leaders in biotechnological research in France, «with stem-cells, the imagination is in charge». This paper explores the new role of imagination in the converging technologies (NBIC report) in their relationship to practice. For the great German philosopher Hans Jonas, it is knowledge (positive: what we know, or negative: what we don’t know) that must guide our action. With converging technologies (nano-, bio-, info- and cogno-), knowledge and technique are relegated to the rank (...)
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  50. Responsible, Inclusive Innovation and the Nano-Divide.Doris Schroeder, Sally Dalton-Brown, Benjamin Schrempf & David Kaplan - 2016 - NanoEthics 10 (2):177-188.
    Policy makers from around the world are trying to emulate successful innovation systems in order to support economic growth. At the same time, innovation governance systems are being put in place to ensure a better integration of stakeholder views into the research and development process. In Europe, one of the most prominent and newly emerging governance frameworks is called Responsible Research and Innovation. This article aims to substantiate the following points: The concept of RRI and the concept of justice can (...)
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