Results for 'Nano-divide'

991 found
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  1.  65
    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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  2.  29
    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, (...)
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  3. The Mystery of Romans: The Jewish Context of Paul's Letter.Mark D. Nanos - 1996
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  4. The Irony of Galatians: Paul's Letter in First-Century Context.Mark D. Nanos - 2002
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  5.  5
    Study Comparison on Knowledge by Presence in the Views of Ibn Sīnā, Suhrawardī, and Mullā Ṣadrā.Nano Warno - 2023 - Kanz Philosophia : A Journal for Islamic Philosophy and Mysticism 9 (2):333-352.
    This article wants to describe the science of ḥuḍūrī according to three great philosophers from Ibn Sīnā, Suhrawardī, to Mullā Ṣadrā. Even though they both adopt ḥuḍūrī science, the three of them are different in terms of paradigm and also their implementation. This research uses general hermeneutic methods on the main books of Suhrawardī, Ibn Sīnā, and Mullā Ṣadrā as well as experts in the field. Ibn Sīnā accepted the science of ḥuḍūrī only as a science of the self because (...)
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  6.  35
    Delegation of access rights in multi-domain service compositions.Laurent Bussard, Anna Nano & Ulrich Pinsdorf - 2009 - Identity in the Information Society 2 (2):137-154.
    Today, it becomes more and more common to combine services from different providers into one application. Service composition is however difficult and cumbersome when there is no common trust anchor. Hence, delegation of access rights across trust domains will become essential in service composition scenarios. This article specifies abstract delegation, discusses theoretical aspects of the concept, and provides technical details of a validation implementation supporting a variety of access controls and associated delegation mechanisms. Abstract delegation allows to harmonize the management (...)
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  7. Do new Ethical Issues Arise at Each Stage of Nanotechnological Development?Céline Kermisch - 2012 - NanoEthics 6 (1):29-37.
    The literature concerning ethical issues associated with nanotechnologies has become prolific. However, it has been claimed that ethical problems are only at stake with rather sophisticated nanotechnologies such as active nanostructures, integrated nanosystems and heterogeneous molecular nanosystems, whereas more basic nanotechnologies such as passive nanostructures mainly pose technical difficulties. In this paper I argue that fundamental ethical issues are already at stake with this more basic kind of nanotechnologies and that ethics impacts every kind of nanotechnologies, already from the simplest (...)
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  8. Special Issue: Altruism Guest Editors: Cillian McBride and Jonathan Seglow.Public-Private Divide - 2003 - Res Publica 9:321-322.
  9.  32
    Southern roles in global nanotechnology innovation: Perspectives from thailand and australia. [REVIEW]Donald C. Maclurcan - 2009 - NanoEthics 3 (2):137-156.
    The term ‘nano-divide’ has become a catch-phrase for describing various kinds of global nanotechnology inequities. However, there has been little in-depth exploration as to what the global nano-divide really means, and limited commentary on its early nature. Furthermore, the literature often presents countries from the Global South as ‘passive’ agents in global nanotechnology innovation—without the ability to develop endogenous nanotechnology capabilities. Yet others point to nanotechnology providing opportunities for the South to play new roles in the (...)
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  10.  24
    Transnational Models for Regulation of Nanotechnology.Gary E. Marchant & Douglas J. Sylvester - 2006 - Journal of Law, Medicine and Ethics 34 (4):714-725.
    Like all technologies, nanotechnology will inevitably present risks, whether they result from unintentional effects of otherwise beneficial applications, or from the malevolent misuse of technology. Increasingly, risks from new and emerging technologies are being regulated at the international level, although governments and private experts are only beginning to consider the appropriate international responses to nanotechnology. In this paper, we explore both the potential risks posed by nanotechnology and potential regulatory frameworks that law may impose. In so doing, we also explore (...)
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  11.  30
    On the Mössbauer Effect and the Rigid Recoil Question.Mark Davidson - 2017 - Foundations of Physics 47 (3):327-354.
    The rigid recoil of a crystal is the accepted mechanism for the Mössbauer effect. It’s at odds with the special theory of relativity which does not allow perfectly rigid bodies. The standard model of particle physics which includes QED should not allow any signals to be transmitted faster than the speed of light. If perturbation theory can be used, then the X-ray emitted in a Mössbauer decay must come from a single nuclear decay vertex at which the 4-momentum is exactly (...)
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  12.  12
    No nature on Spaceship Earth.Benjamin Pothier - 2014 - Technoetic Arts 12 (2):429-437.
    As the post-digital organic landscape evolves through the rapid hybridization of ­practices, from genetic engineering to the creative use of nano technologies and syncretic approaches that are made easier by an always growing number of ­planetary connected telematic networks, and as we face, as a species, increasing environmental problems that more and more people and organizations plan to fix through geoengineering and terraforming solutions, the divide between the engineered and the organic tends to blur… At the same time (...)
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  13.  53
    Mobile-centric ambient intelligence in health- and homecare—anticipating ethical and legal challenges.Eleni Kosta, Olli Pitkänen, Marketta Niemelä & Eija Kaasinen - 2010 - Science and Engineering Ethics 16 (2):303-323.
    Ambient Intelligence provides the potential for vast and varied applications, bringing with it both promise and peril. The development of Ambient Intelligence applications poses a number of ethical and legal concerns. Mobile devices are increasingly evolving into tools to orientate in and interact with the environment, thus introducing a user-centric approach to Ambient Intelligence. The MINAmI (Micro-Nano integrated platform for transverse Ambient Intelligence applications) FP6 research project aims at creating core technologies for mobile device based Ambient Intelligence services. In (...)
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  14. Hydrogeny.Evelina Domnitch & Dmitry Gelfand - 2011 - Continent 1 (3):156-157.
    Nature's simplest atom and mother of all matter, hydrogen feeds the stars as well as interlaces the molecules of their biological descendants – to whom it ultimately whispers the secrets of quantum reality. Hydrogen’s most prevalent earthly guise lies within the composition of water. A slight electrical disturbance can split water into hydrogen and oxygen gas, resulting in diaphanous bubble clouds slowly rising towards the liquid’s surface. Though the founding fathers of electrochemistry posited that the mass of liberated bubbles is (...)
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  15. Nano-intentionality: a defense of intrinsic intentionality.W. Tecumseh Fitch - 2008 - Biology and Philosophy 23 (2):157-177.
    I suggest that most discussions of intentional systems have overlooked an important aspect of living organisms: the intrinsic goal-directedness inherent in the behaviour of living eukaryotic cells. This goal directedness is nicely displayed by a normal cell’s ability to rearrange its own local material structure in response to damage, nutrient distribution or other aspects of its individual experience. While at a vastly simpler level than intentionality at the human cognitive level, I propose that this basic capacity of living things provides (...)
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  16.  64
    Nano-Technology, Ethics, and Risks.Wade L. Robison - 2011 - NanoEthics 5 (1):1-13.
    Nanotechnology is developing far faster than our understanding of its effects. This lapping of our understanding by speedy development is typical of new technologies, and in the United States we let development occur, introducing new artifacts into the world, without any serious attempt to understand beforehand their effects, long-term or short-term. We have been willing to pay the price of pushing the technological envelope, but pushing the nanotechnological envelope has some special risks, requiring more caution.
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  17.  34
    Nano-ethics.Wade L. Robison - 2004 - In Baird D. (ed.), Discovering the Nanoscale. Ios. pp. 285--299.
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  18. 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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  19.  36
    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 constraining (...)
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  20.  67
    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 constraining (...)
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  21. 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 is delegated to (...)
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  22.  4
    Making Nano Matter: An Inquiry into the Discourses of Governable Science.Elena Simakova - 2012 - Science, Technology, and Human Values 37 (6):604-626.
    The article examines science-policy conversations mediated by social science in attempts to govern, or set up terms for, scientific research. The production of social science research accounts about science faces challenges in the domains of emerging technosciences, such as nano. Constructing notions of success and failure, participants in science actively engage in the interpretation of policy notions, such as the societal relevance of their research. Industrial engagement is one of the prominent themes both in policy renditions of governable science, (...)
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  23.  39
    Defining Nano, Nanotechnology and Nanomedicine: Why Should It Matter?Priya Satalkar, Bernice Simone Elger & David M. Shaw - 2016 - Science and Engineering Ethics 22 (5):1255-1276.
    Nanotechnology, which involves manipulation of matter on a ‘nano’ scale, is considered to be a key enabling technology. Medical applications of nanotechnology are expected to significantly improve disease diagnostic and therapeutic modalities and subsequently reduce health care costs. However, there is no consensus on the definition of nanotechnology or nanomedicine, and this stems from the underlying debate on defining ‘nano’. This paper aims to present the diversity in the definition of nanomedicine and its impact on the translation of (...)
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  24.  50
    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-, bio-, (...)
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  25.  6
    From Nano Backlash to Public Indifference: Some Reflections on French Public Dialogues on Nanotechnology.Bernadette Bensaude-Vincent - 2021 - NanoEthics 15 (2):191-201.
    The hype surrounding the emergence of nanotechnology proved extremely effective to raise public attention and controversies in the early 2000s. A proactive attitude prevailed resulting in the integration of social scientists upstream at the research level, research programs on Ethical, Legal and Societal Impacts, and various public engagement initiatives such as nanojury and citizen conferences. Twenty years later, what happened to the promises of SHS integration and public engagement in nanotechnology? Was it part of the hype, one of the many (...)
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  26.  32
    Nano-hydroxyapatite Before the Science Court.Frederick C. Klaessig - 2023 - NanoEthics 17 (2):1-28.
    In October 2015, the European Union’s Scientific Committee on Consumer Safety issued a Preliminary Opinion on Hydroxyapatite (nano). Past industrial experience with this material and participation in ISO/TC-229, Nanotechnologies, led me to submit comments on the Committee’s interpretations of physico-chemical properties, especially solubility, that in retrospect were also probing of the Committee’s collective understanding of nanomaterials. The Committee’s responses are examined against a background of other Opinions issued in the same time period. The expert’s role and responsibility, whether as (...)
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  27.  11
    Disciplining Nano.Ana Viseu - 2008 - Spontaneous Generations 2 (1):122.
    Monsters, argues Haraway, are sites of confusion and hybridity, entities that defy easy categorization and, as a consequence, hold promise, pleasure, and peril. Haraway adds that monsters are also not accidental or innocent: their creation requires sustained work, their existence has effects. Thus, to understand how Frankenstein came to be in Lilliput, the theme of this special edition, it is crucial to examine how monsters are constructed and how they do things in the world.In this article I propose to start, (...)
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  28.  7
    Nano-mechanical testing in materials research and development.Nigel M. Jennett, Mathias Göken & Karsten Durst - 2011 - Philosophical Magazine 91 (7-9):1035-1036.
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  29.  21
    Nano Meets Macro.Joel DSilva - 2011 - NanoEthics 5 (2):245-247.
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  30.  54
    Toward an epistemology of nano-technosciences.Jan C. Schmidt - 2011 - Poiesis and Praxis 8 (2-3):103-124.
    This paper aims to contribute to the attempts to clarify and classify the vague notion of “technosciences” from a historical perspective. A key question that is raised is as follows: Does Francis Bacon, one of the founding fathers of the modern age, provide a hitherto largely undiscovered programmatic position, which might facilitate a more profound understanding of technosciences ? The paper argues that nearly everything we need today for an ontologically well-informed epistemology of technoscience can be found in the works (...)
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  31. 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.
  32.  45
    Nano-enabled AI.J. Storrs Hall - 2006 - International Journal of Applied Philosophy 20 (2):247-261.
    Improvements in computational hardware enabled by nanotechnology promise a dual revolution in coming decades: machines which are both more intelligent and more numerous than human beings. This possibility raises substantial concern over the moral nature of such intelligent machines. An analysis of the prospects involves at least two key philosophical issues. The first, intentionality in formal systems, turns on whether a “mere machine” can be a mind whose thoughts have true meaning and understanding. Second, what is the moral nature of (...)
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  33.  60
    Nano-enabled AI.J. Storrs Hall - 2006 - International Journal of Applied Philosophy 20 (2):247-261.
    Improvements in computational hardware enabled by nanotechnology promise a dual revolution in coming decades: machines which are both more intelligent and more numerous than human beings. This possibility raises substantial concern over the moral nature of such intelligent machines. An analysis of the prospects involves at least two key philosophical issues. The first, intentionality in formal systems, turns on whether a “mere machine” can be a mind whose thoughts have true meaning and understanding. Second, what is the moral nature of (...)
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  34.  10
    Realistic nano-polycrystalline microstructures: beyond the classical Voronoi tessellation.Alberto Leonardi, Paolo Scardi & Matteo Leoni - 2012 - Philosophical Magazine 92 (8):986-1005.
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  35.  50
    Reading nano: The public interest in nanotechnology as reflected in purchase patterns of books.Joachim Schummer - manuscript
    There is a rapidly growing public interest in nanotechnology such that people increasingly buy various books to inform themselves about nanotechnology. This paper tries to measure the public interest focus on nanotechnology and its relation to the public interest in other fields of knowledge by applying a new method. I combine formal network analysis of co-purchase book data with traditional content analysis. The method is successful in identifying the books that the public reads to be informed about nanotechnology, in distinguishing (...)
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  36. Nano-Communications: A New Field? An Exploration into a Carbon Nanotube Communication Network.Stephen F. Bush & Yun Li - 2006 - Technical Information Series.
     
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  37.  2
    Nano-Partikel und Dieselruß: Umwelt- und Wirtschaftsverwaltungsrecht vor neuen Herausforderungen durch die Nanotechnologie.Joachim H. Wendorff & Arno Scherzberg - 2008 - In Joachim H. Wendorff & Arno Scherzberg (eds.), Nanotechnologienanotechnology: Grundlagen, Anwendungen, Risiken, Regulierung. De Gruyter Recht.
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  38.  92
    Psychological Contracts: A Nano-Level Perspective on Social Contract Theory.Jeffery A. Thompson & David W. Hart - 2006 - Journal of Business Ethics 68 (3):229-241.
    Social contract theory has been criticized as a “theory in search of application.” We argue that incorporating the nano, or individual, level of analysis into social contract inquiry will yield more descriptive theory. We draw upon the psychological contract perspective to address two critiques of social contract theory: its rigid macro-orientation and inattention to the process of contract formation. We demonstrate how a psychological contract approach offers practical insight into the impact of social contracting on day-to-day human interaction. We (...)
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  39.  19
    Mondo Nano: Fun and Games in the World of Digital Matter.Stephanie E. Vasko - 2016 - NanoEthics 10 (1):117-120.
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  40.  37
    The novelty of nano and the regulatory challenge of newness.Christopher J. Preston, Maxim Y. Sheinin, Denyse J. Sproat & Vimal P. Swarup - 2010 - NanoEthics 4 (1):13-26.
    A great deal has been made of the question of whether nano-materials provide a unique set of ethical challenges. Equally important is the question of whether they provide a unique set of regulatory challenges. In the last 18 months, the US Environmental Protection Agency has begun the process of trying to meet the regulatory challenge of nano using the Toxic Substances Control Act (1976)(TSCA). In this central piece of legislation, ‘newness’ is a critical concept. Current EPA policy, we (...)
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  41.  45
    The Novelty of Nano and the Regulatory Challenge of Newness.Christopher J. Preston, Maxim Y. Sheinin, Denyse J. Sproat & Vimal P. Swarup - 2010 - NanoEthics 4 (1):13-26.
    A great deal has been made of the question of whether nano-materials provide a unique set of ethical challenges. Equally important is the question of whether they provide a unique set of regulatory challenges. In the last 18 months, the US Environmental Protection Agency has begun the process of trying to meet the regulatory challenge of nano using the Toxic Substances Control Act (1976)(TSCA). In this central piece of legislation, ‘newness’ is a critical concept. Current EPA policy, we (...)
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  42.  30
    Centre and Periphery of Nano—A Norwegian Context.Kåre Nolde Nielsen, Trond Grønli Åm & Rune Nydal - 2011 - NanoEthics 5 (1):87-98.
    This work describes the nano field in Norway as currently emerging in the dynamics between two forms of nano research activities described along a centre-periphery axis. 1) There are strategic research initiatives committed to redeem the envisioned potential of the field by means of social and material reorganisation of existing research activities. This activity is seen as central as it is one of our premises that the standard circulating nano vision implies such a work of reorganisation. The (...)
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  43.  46
    How to Understand Nano Images.Roger Strand - 2009 - Techné: Research in Philosophy and Technology 13 (3):182-189.
    Nanoscale objects are presented by ever more sophisticated pictures (nano images). There is a need to reflect on the status of such nano images, because the “seeing” involved is of a highly indirect kind. The aim of this paper is to complement existing philosophical critique of nano images with a scientific practitioner's perspective. First, we show some reasons to consider seeing and imaging as complex endeavours not only on the micro and nano scale, but also on (...)
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  44.  93
    Divided Consciousness: Multiple Controls in Human Thought and Action.Ernest R. Hilgard - 1977 - Wiley.
    A seminal work on the unconscious and its mechanisms. Examines the interaction between voluntary (conscious) and involuntary (unconscious) human control mechanisms in terms of dissociation of divided consciousness. Delineates a neodissociation interpretation that recognizes historical roots without requiring commitment. Presents a wide range of data on possession states, fugues, multiple personalities, amnesia, dreams, hallucinations, automatic writing, and aggressions.
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  45. Eco-Centric Evaluation of Nano-Release.Angela Kallhoff & Elias Moser - 2019 - In Iris Eisenberger, Angela Kallhoff & Claudia Schwarz-Plaschg (eds.), Nanotechnology: Regulation and Public Discourse. London: Rowman & Littlefield. pp. 17-33.
    This chapter outlines different ethical approaches of relevance for a normative assessment of nano-release. We elaborate on traditional risk assessment and the well-known notion of a Precautionary Principle in order to demonstrate that these accounts need to be complemented to provide ethical guidance with regard to environmental influence of emerging technologies. We conclude that it is obligatory to engage in what they call an “eco-centric evaluation” of nano-release.
     
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  46.  9
    Divided Britain.Keith Robbins - 1991 - History of European Ideas 13 (4):470-471.
  47.  4
    Studying power: divided (DP) versus united (UP): on pluralism, wisdom, wise lies, German geniuses, Mexican scripts, Scotland, Great Britain, Dante, Tolstoy, Einstein, and Pinker.William A. Therivel - 2013 - Minneapolis, Minnesota: Kirk House Publishers.
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  48.  5
    Co-creating Nano-imaginaries: Report of a Delphi-Exercise.Lieve Goorden, Johan Evers, Michiel Van Oudheusden & Marian Deblonde - 2008 - Bulletin of Science, Technology and Society 28 (5):372-389.
    In the first phase of the research project Nanotechnologies for Tomorrow's Society (www.nanosoc.be), the research consortium explored a variety of futuristic visions or technoscientific imaginaries. This exploration took the form of a Policy Delphi, adapted to the particular objective of jointly constructing nano-imaginaries, taking participants' personal visions of possible future applications and societal issues as a starting point. The participants were nanoresearchers, as well as societal experts and primary involved citizens. In this article, the authors describe the theoretical frame (...)
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  49.  37
    Nanoessence: God, the first nano assembler.Paul Thomas - 2009 - Technoetic Arts 6 (3):217-231.
    The Nanoessence project aims to examine life at a sub-cellular level, re-examining space and scale within the human context. A single HaCat skin cell is analysed with an Atomic Force Microscope (AFM) to explore comparisons between, life and death at a nano level. The humanistic discourse concerning life is now being challenged by nanotechnological research that brings into question the concepts of what constitutes living. The Nanoessence project research is based on data gathered as part of a residency at (...)
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  50.  38
    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 analogues (...)
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