Results for 'Technological Change'

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  1. Digital literacy and subjective happiness of low-income groups: Evidence from rural China.Jie Wang, Chang Liu & Zhijian Cai - 2022 - Frontiers in Psychology 13:1045187.
    Improvements of the happiness of the rural population are an essential sign of the effectiveness of relative poverty governance. In the context of today’s digital economy, assessing the relationship between digital literacy and the subjective happiness of rural low-income groups is of great practicality. Based on data from China Family Panel Studies, the effect of digital literacy on the subjective well-being of rural low-income groups was empirically tested. A significant happiness effect of digital literacy on rural low-income groups was found. (...)
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  2. How Technology Changes Our Idea of the Good.Mark Sentesy - 2011 - In Laverdure Paul & Mbonimpa Melchior (eds.), Eth-ICTs: Ethics and the New Information and Communication Technologies. University of Sudbury. pp. 109-123.
    The ethical neutrality of technology has been widely questioned, for example, in the case of the creation and continued existence of weapons. At stake is whether technology changes the ethical character of our experience: compare the experience of seeing a beating to videotaping it. Interpreting and elaborating on the work of George Grant and Marshall McLuhan, this paper consists of three arguments: 1) the existence of technologies determines the structures of civilization that are imposed on the world, 2) technologies shape (...)
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  3. Technological Change and Human Obsolescence.John Danaher - 2022 - Techné: Research in Philosophy and Technology 26 (1):31-56.
    Can human life have value in a world in which humans are rendered obsolete by technological advances? This article answers this question by developing an extended analysis of the axiological impact of human obsolescence. In doing so, it makes four main arguments. First, it argues that human obsolescence is a complex phenomenon that can take on at least four distinct forms. Second, it argues that one of these forms of obsolescence is not a coherent concept and hence not a (...)
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  4. Beyond Competence: Preparing for Technological Change.William M. Goodman - 1990 - Peter Francis Publishers.
    In response to rapid technological changes in our society, there are calls by governments and industry for increased training of the workforce. But training alone is not sufficient to ensure success, even if talent, discipline and good fortune are all amply provided. When “training” goals require creativity, or decision making, or moral judgment, then adequate preparation must also include “education” in John Dewey’s sense—that is, imparting abilities to solve new problems and grasp novel meanings. Concluding this small monograph is (...)
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  5. Architecture and Identity: Responses to Cultural and Technological Change 3rd Edition.Chris Abel - 2017 - Abingdon: Routledge.
    Expanding his collected essays on architectural theory and criticism, Chris Abel pursues his explorations across disciplinary and regional boundaries in search of a deeper understanding of architecture in the evolution of human culture and identity formation. From his earliest writings predicting the computer-based revolution in customised architectural production, through his novel studies on 'tacit knowing' in design or hybridisation in regional and colonial architecture, to his radical theory of the 'extended self', Abel has been a consistently fresh and provocative thinker, (...)
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  6. The concerns of the shipping industry regarding the application of electronic bills of lading in practice amid technological change.Farhang Jafari - unknown
    In the sea trade, the traditional paper-based bill of lading has played an important role across the globe for centuries, but with the advent of advanced commercial modes of transportation and communication, the central position of this document is under threat. The importance of the bill of lading still prevails as does the need of the functions that this document served in the past, although in a changed format. In the recent past, the world has witnessed a lot of debate (...)
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  7. Humanity's Future: How Technology Will Change Us.Jay Friedenberg - 2014 - Humanity+ Press.
    This book is a collection of essays written on a variety of topics relevant to the future of humankind. The chapters are organized foundationally starting with how it is we can know and understand reality. This is followed by descriptions of future technologies and the new science that will drive them. Then we take a look at ourselves, how smart we are and how intelligent our machines may become. The final sections paint a larger picture, examining civilization with a focus (...)
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  8. Mind change: How digital technologies are leaving their mark on our brains (Susan Greenfield). [REVIEW]Todd Davies - 2016 - New Media and Society 18 (9):2139-2141.
    This is a review of Susan Greenfield's 2015 book 'Mind Change: How Digital Technologies Are Leaving Their Mark On Our Brains'. Greenfield is a neuroscientist and a member of the UK House of Lords, who argues that digital technologies are changing the human environment "in an unprecedented way," and that by adapting to this environment, "the brain may also be changing in an unprecedented way." The book and its author have created a surprising amount of controversy. I discuss both (...)
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    How tracking technology is transforming animal ecology: epistemic values, interdisciplinarity, and technology-driven scientific change.Rose Trappes - 2023 - Synthese 201 (4):1-24.
    Tracking technology has been heralded as transformative for animal ecology. In this paper I examine what changes are taking place, showing how current animal movement research is a field ripe for philosophical investigation. I focus first on how the devices alter the limitations and biases of traditional field observation, making observation of animal movement and behaviour possible in more detail, for more varied species, and under a broader variety of conditions, as well as restricting the influence of human presence and (...)
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  10. Engaging Engineering Teams Through Moral Imagination: A Bottom-Up Approach for Responsible Innovation and Ethical Culture Change in Technology Companies.Benjamin Lange, Geoff Keeling, Amanda McCroskery, Ben Zevenbergen, Sandra Blascovich, Kyle Pedersen, Alison Lentz & Blaise Aguera Y. Arcas - 2023 - AI and Ethics 1:1-16.
    We propose a ‘Moral Imagination’ methodology to facilitate a culture of responsible innovation for engineering and product teams in technology companies. Our approach has been operationalized over the past two years at Google, where we have conducted over 50 workshops with teams from across the organization. We argue that our approach is a crucial complement to existing formal and informal initiatives for fostering a culture of ethical awareness, deliberation, and decision-making in technology design such as company principles, ethics and privacy (...)
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  11. 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 (...)
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  12. Questioning Technological Determinism through Empirical Research.Mark David Webster - 2017 - Symposion: Theoretical and Applied Inquiries in Philosophy and Social Sciences 4 (1):107-125.
    Mark David Webster ABSTRACT: Using qualitative methods, the author sought to better understand how philosophical assumptions about technology affect the thinking, and influence the decision making, of educational technology leaders in their professional practice. One of the research questions focused on examining whether assumptions of technological determinism were present in thinking and influenced the decisions that leaders make. The core category that emerged from data analysis, Keep up with technology (or be left behind), was interpreted to be a manifestation (...)
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  13. Theology Meets AI: Examining Perspectives, Tasks, and Theses on the Intersection of Technology and Religion.Anna Puzio - 2023 - In Anna Puzio, Nicole Kunkel & Hendrik Klinge (eds.), Alexa, wie hast du's mit der Religion? Theologische Zugänge zu Technik und Künstlicher Intelligenz. Darmstadt: Wbg.
    Artificial intelligence (AI), blockchain, virtual and augmented reality, (semi-)autonomous ve- hicles, autoregulatory weapon systems, enhancement, reproductive technologies and human- oid robotics – these technologies (and many others) are no longer speculative visions of the future; they have already found their way into our lives or are on the verge of a breakthrough. These rapid technological developments awaken a need for orientation: what distinguishes hu- man from machine and human intelligence from artificial intelligence, how far should the body be allowed (...)
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  14. Technological progress and responsibility.Nikil Mukerji - 2014 - In Fiorella Battaglia, Nikil Mukerji & Julian Nida-Rümelin (eds.), Rethinking Responsibility in Science and Technology. Pisa University Press. pp. 25-36.
    In this essay, I will examine how technological progress affects the responsibilities of human agents. To this end, I will distinguish between two interpretations of the concept of responsibility, viz. responsibility as attributability and substantive responsibility. On the former interpretation, responsibility has to do with the idea of authorship. When we say that a person is responsible for her actions we mean that she is to be seen as the author of these actions. They can be attributed to her, (...)
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  15. The art, poetics, and grammar of technological innovation as practice, process, and performance.Coeckelbergh Mark - 2018 - AI and Society 33 (4):501-510.
    Usually technological innovation and artistic work are seen as very distinctive practices, and innovation of technologies is understood in terms of design and human intention. Moreover, thinking about technological innovation is usually categorized as “technical” and disconnected from thinking about culture and the social. Drawing on work by Dewey, Heidegger, Latour, and Wittgenstein and responding to academic discourses about craft and design, ethics and responsible innovation, transdisciplinarity, and participation, this essay questions these assumptions and examines what kind of (...)
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  16. Agricultural technologies as living machines: toward a biomimetic conceptualization of technology.V. Blok & H. G. J. Gremmen - 2018 - Ethics, Policy and Environment 21 (2):246-263.
    Smart Farming Technologies raise ethical issues associated with the increased corporatization and industrialization of the agricultural sector. We explore the concept of biomimicry to conceptualize smart farming technologies as ecological innovations which are embedded in and in accordance with the natural environment. Such a biomimetic approach of smart farming technologies takes advantage of its potential to mitigate climate change, while at the same time avoiding the ethical issues related to the industrialization of the agricultural sector. We explore six principles (...)
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  17. Climate change and education.Ruth Irwin - 2019 - Educational Philosophy and Theory 52 (5):492-507.
    Understanding climate change is becoming an urgent requirement for those in education. The normative values of education have long been closely aligned with the global, modernised world. The industrial model has underpinned the hidden and overt curriculum. Increasingly though, a new eco-centric orientation to economics, technology, and social organisation is beginning to shape up the post-carbon world. Unless education is up to date with the issues of climate change, the estate of education will be unable to meet its (...)
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  18. Technological Dimensions of Globalization across Organizations: Inferences for Instruction and Research.Jupeth Pentang - 2021 - International Educational Scientific Research Journal 7 (7):28-32.
    Globalizations across organizations are impacted by economic, political, legal, security, social, cultural, ecological, and technological dimensions among others. This paper presents the readings from relevant articles and studies pertaining to the relationship between technology and its dimensions with globalization. Globalization and technological advancement are indeed interrelated where the success or failure of one is associated with the other. With this, Technology Education and Globalization, as intertwined disciplines, must be inculcated across curriculums and program offerings to address the demand (...)
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  19. Technology as enabler of the automation of work? Current societal challenges for a future perspective of work.António Moniz, Bettina-Johanna Krings & Philipp Frey - 2021 - Revista Brasileira de Sociologia 9:206-229.
    Due to the innovative possibilities of digital technologies, the issue of increasing automation is once again on the agenda – and not only in the industry, but also in other branches and sectors of contemporary societies. Although public and scientific discussions about automation seem to raise relevant questions of the “old” debate, such as the replacement of human labor by introducing new technologies, the authors focus here on the new contextual quality of these questions. The debate should rethink the relationship (...)
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  20. Climate Change Adaptation and the Back of the Invisible Hand.H. Clark Barrett & Josh Armstrong - forthcoming - Philosophical Transactions B.
    We make the case that scientifically accurate and politically feasible responses to the climate crisis require a complex understanding of human cultural practices of niche construction that moves beyond the adaptive significance of culture. We develop this thesis in two related ways. First, we argue that cumulative cultural practices of niche construction can generate stable equilibria and runaway selection processes that result in long-term existential risks within and across cultural groups. We dub this the back of the invisible hand. Second, (...)
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  21. Philosophy of Technology Assumptions in Educational Technology Leadership.Mark David Webster - 2017 - Journal of Educational Technology and Society 20 (1):25–36.
    A qualitative study using grounded theory methods was conducted to (a) examine what philosophy of technology assumptions are present in the thinking of K-12 technology leaders, (b) investigate how the assumptions may influence technology decision making, and (c) explore whether technological determinist assumptions are present. Subjects involved technology directors and instructional technology specialists from school districts, and data collection involved interviews and a written questionnaire. Three broad philosophy of technology views were widely held by participants, including an instrumental view (...)
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  22. The Ontology of Technology Beyond Anthropocentrism and Determinism: The Role of Technologies in the Constitution of the (post)Anthropocene World.Vincent Blok - 2022 - Foundations of Science 1:1-19.
    Because climate change can be seen as the blind spot of contemporary philosophy of technology, while the destructive side effects of technological progress are no longer deniable, this article reflects on the role of technologies in the constitution of the (post)Anthropocene world. Our first hypothesis is that humanity is not the primary agent involved in world-production, but concrete technologies. Our second hypothesis is that technological inventions at an ontic level have an ontological impact and constitutes world. As (...)
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  23. Climate Change, Cooperation, and Moral Bioenhancement.Toby Handfield, Pei-hua Huang & Robert Mark Simpson - 2016 - Journal of Medical Ethics 42 (2):742-747.
    The human faculty of moral judgment is not well suited to address problems, like climate change, that are global in scope and remote in time. Advocates of ‘moral bioenhancement’ have proposed that we should investigate the use of medical technologies to make human beings more trusting and altruistic, and hence more willing to cooperate in efforts to mitigate the impacts of climate change. We survey recent accounts of the proximate and ultimate causes of human cooperation in order to (...)
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  24. Digital and Technological Identities – In Whose Image? A philosophical-theological approach to identity construction in social media and technology.Anna Puzio - 2021 - Cursor.
    New technological developments have fundamentally transformed human life. Throughout this process, fundamental questions about human beings have once again been posed. The paper examines how technological change affects understandings of human beings and their bodies, thereby requiring new approaches to anthropology. First, Section 2 illustrates how the use of technology has changed the understanding of human beings and their bodies. A new connection between the human being or the body and technology has emerged. Section 3 then moves (...)
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  25. 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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  26. The Technological Future of Love.Sven Nyholm, John Danaher & Brian D. Earp - 2022 - In André Grahle, Natasha McKeever & Joe Saunders (eds.), Philosophy of Love in the Past, Present, and Future. Routledge. pp. 224-239.
    How might emerging and future technologies—sex robots, love drugs, anti-love drugs, or algorithms to track, quantify, and ‘gamify’ romantic relationships—change how we understand and value love? We canvass some of the main ethical worries posed by such technologies, while also considering whether there are reasons for “cautious optimism” about their implications for our lives. Along the way, we touch on some key ideas from the philosophies of love and technology.
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  27. Technology in everyday life: Conceptual queries.Bernward Joerges - 1988 - Journal for the Theory of Social Behaviour 18 (2):219–237.
    According to an editor of The Economist, the world produced, in the years since World War II, seven times more goods than throughout all history. This is well appreciated by lay people, but has hardly affected social scientists. They do not have the conceptual apparatus for understanding accelerated material-technical change and its meaning for people's personal lives, for their ways of relating to them-selves and to the outside world. Of course, a great deal of speculation about emerging life forms (...)
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  28. Educational Technology: From Educational Anarchism to Educational Totalitarianism.Mikhail Bukhtoyarov & Anna Bukhtoyarova - 2021 - In Igor Cvejić, Predrag Krstić, Nataša Lacković & Olga Nikolić (eds.), Liberating Education: What From, What For? Institute for Philosophy and Social Theory, University of Belgrade. pp. 185-204.
    In the paper, the authors explore the relations between educational technology and educational ideology through the lens of philosophical inquiry. The optics of critical analysis is applied to review the instructional tools, services and systems which compose the complex picture of contemporary educational technology. The authors claim that even when initially established in the ideological domain of educational anarchism most educational technologies when being applied systemically can end up on the more oppressive side of the ideological spectrum close to educational (...)
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  29. Examining Philosophy of Technology Using Grounded Theory Methods.Mark David Webster - 2016 - Forum: Qualitative Social Research 17 (2).
    A qualitative study was conducted to examine the philosophy of technology of K-12 technology leaders, and explore the influence of their thinking on technology decision making. The research design aligned with CORBIN and STRAUSS grounded theory methods, and I proceeded from a research paradigm of critical realism. The subjects were school technology directors and instructional technology specialists, and data collection consisted of interviews and a written questionnaire. Data analysis involved the use of grounded theory methods including memo writing, open and (...)
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  30. Technological Innovation and Natural Law.Philip Woodward - 2020 - Philosophia Reformata 85 (2):138-156.
    I discuss three tiers of technological innovation: mild innovation, or the acceleration by technology of a human activity aimed at a good; moderate innovation, or the obviation by technology of an activity aimed at a good; and radical innovation, or the altering by technology of the human condition so as to change what counts as a good. I argue that it is impossible to morally assess proposed innovations within any of these three tiers unless we rehabilitate a natural-law (...)
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  31. Review Of Joseph C. Pitt, Heraclitus Redux: Technological Infrastructures and Scientific Change[REVIEW]Andrew Aberdein - 2020 - Social Epistemology Review and Reply Collective 9 (7):18–22.
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  32. Broken Technologies.Fernando Flores Morador (ed.) - 2011-2015 - Lund: Lund University.
    There are many possible definitions of “technology” and I will discuss some of these in this book. However, in this introduction let me use a definition of Svante Lindqvist who defines technology very intuitively as “those activities, directed towards the satisfaction of human wants, which produce change in the material world.” He says also “the distinction between human “wants” and more limited human “needs” is crucial, for we do not use technology only to satisfy our essential material requirements.” Consequently, (...)
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  33. Technology and Narratives of Continuity in Transgender Experiences.Amy Billingsley - 2015 - Feminist Philosophy Quarterly 1 (1):2015.
    This essay examines narratives of fundamental change, which portray a break in the continuity between a pre-transition and post-transition transgender subject, in accounts of transgender transitions. Narratives of fundamental change highlight the various changes that occur during transition and its disruptive effects upon a trans subject’s continuous identity. First, this essay considers the historical appearance of fundamental change narratives in the social sciences, the media, and their use by families of trans people, partners of trans people, and (...)
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  34. Changes.Ronald A. Rensink - 2002 - Progress in Brain Research 140:199-209.
    This past decade has seen a great resurgence of interest in the perception of change. Change has, of course, long been recognized as a phenomenon worthy of study, and vision scientists have given their attention to it at various times in the past (for a review, see Rensink, 2002a). But things seem different this time around. This time, there is an emerging belief that instead of being just another visual ability, the perception of change may be something (...)
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  35. Blockchain technology into the logistics supply chain implementation effectiveness.Igor Britchenko, Tetiana Cherniavska & Bogdan Cherniavskyi - 2018 - In Igor Britchenko & Ye Polishchuk (eds.), Development of small and medium enterprises: the EU and East-partnership countries experience: monograph. Wydawnictwo Państwowej Wyższej Szkoły Zawodowej im. prof. Stanisława Tarnowskiego w Tarnobrzegu. pp. 307 - 318.
    Technologies currently have a tremendous impact on all spheres of economy, business and a state. They integrally change people’s conception of trade, property, and market entities interaction. Artificial intelligence, additive, informationommunication, green technologies, biotechnologies, and blockchain technologies development and implementation confirm their leadership importance and inevitability in relation to the activities traditional approaches. In the modern world only the companies with flexible vision, equipment and technologies able to instantly reform, adapt to new conditions and challenges, will benefit. The point (...)
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  36. Philosophy of Technology Assumptions in Educational Technology Leadership: Questioning Technological Determinism.Mark David Webster - 2013 - Dissertation, Northcentral University
    Scholars have emphasized that decisions about technology can be influenced by philosophy of technology assumptions, and have argued for research that critically questions technological determinist assumptions. Empirical studies of technology management in fields other than K-12 education provided evidence that philosophy of technology assumptions, including technological determinism, can influence the practice of technology leadership. A qualitative study was conducted to a) examine what philosophy of technology assumptions are present in the thinking of K-12 technology leaders, b) investigate how (...)
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  37. Macroevolution of Technology.Leonid Grinin & Anton Grinin - 2013 - Evolution: Development Within Different Paradigms 6 (11):143-178.
    What determines the transition of a society from one level of development to another? One of the most fundamental causes is the global technological transformations. Among all major technological breakthroughs in history the most important are the three production revolutions: 1) the Agrarian Revolution; 2) the Industrial Revolution and 3) the Scientific-Information Revolution which will transform into the Cybernetic one. The article introduces the Theory of Production Revolutions. This is a new explanatory paradigm which is of value when (...)
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  38. Persuasive Technologies and the Right to Mental Liberty: The ‘Smart’ Rehabilitation of Criminal Offenders.Sjors Ligthart, Gerben Meynen & Thomas Douglas - forthcoming - In Marcello Ienca, O. Pollicino, L. Liguori, R. Andorno & E. Stefanini (eds.), Cambridge Handbook of Information Technology, Life Sciences and Human Rights. Cambridge, UK: Cambridge University Press.
    Every day, millions of people use mobile phones, play video games and surf the Internet. It is thus important to determine how technologies like these change what people think and how they behave. This is a central issue in the study of persuasive technologies. ‘Persuasive technologies’—henceforth ‘PTs’—are digital technologies, such as mobile apps, video games and virtual reality systems, that are deployed for the explicit purpose of changing attitudes and/or behaviours, without using coercion, deception or extreme forms of psychological (...)
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  39. Future value change: identifying realistic possibilities and risks.Jeroen Hopster - forthcoming - Prometheus.
    The co-shaping of technology and values is a topic of increasing interest among philosophers of technology. Part of this interest pertains to anticipating future value change, or what Danaher (2021) calls the investigation of “axiological futurism”. However, this investigation faces a challenge: “axiological possibility space” is vast, and we currently lack a clear account of how this space should be demarcated. It stands to reason that speculations about how values might change over time should exclude farfetched possibilities and (...)
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  40. Moral Uncertainty in Technomoral Change: Bridging the Explanatory Gap.Philip J. Nickel, Olya Kudina & Ibo van de Poel - manuscript
    This paper explores the role of moral uncertainty in explaining the morally disruptive character of new technologies. We argue that existing accounts of technomoral change do not fully explain its disruptiveness. This explanatory gap can be bridged by examining the epistemic dimensions of technomoral change, focusing on moral uncertainty and inquiry. To develop this account, we examine three historical cases: the introduction of the early pregnancy test, the contraception pill, and brain death. The resulting account highlights what we (...)
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  41. Philosophy of Technology in the Digital Age: The datafication of the World, the homo virtualis, and the capacity of technological innovations to set the World free.Blok Vincent - 2023 - Wageningen: Wageningen University.
    I will start my inaugural address by outlining the main argument of my lecture. First, I will identify the phenomenon that philosophers of technology research. This subject matter, in my view, consists not only of ethical issues that disruptive technologies raise but also of the disruption of the world in which we live and act by these technologies. I will illustrate this disruption by reflecting on the convergence of the physical and the virtual in the digital world, which is expected (...)
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  42. Value-oriented and ethical technology engineering in Industry 5.0: a human-centric perspective for the design of the Factory of the Future.Francesco Longo, Antonio Padovano & Steven Umbrello - 2020 - Applied Sciences 10 (12):4182.
    Manufacturing and industry practices are undergoing an unprecedented revolution as a consequence of the convergence of emerging technologies such as artificial intelligence, robotics, cloud computing, virtual and augmented reality, among others. This fourth industrial revolution is similarly changing the practices and capabilities of operators in their industrial environments. This paper introduces and explores the notion of the Operator 4.0 as well as how this novel way of conceptualizing the human operator necessarily implicates human values in the technologies that constitute it. (...)
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  43.  60
    Climate change and territory.Mancilla Alejandra & Baard Patrik - 2023 - WIREs Climate Change 1 (Early View).
    he territorial impacts of climate change will affect millions. This will happen not only as a direct consequence of climate change, but also because of policies for mitigating it—for example, through the installation of large wind and solar farms, the conservation of land in its role as carbon sink, and the extraction of materials needed for renewable energy technologies. In this article, we offer an overview of the justice-related issues that these impacts create. The literature on climate justice (...)
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  44. Mechanisms of Techno-Moral Change: A Taxonomy and Overview.John Danaher & Henrik Skaug Sætra - 2023 - Ethical Theory and Moral Practice 26 (5):763-784.
    The idea that technologies can change moral beliefs and practices is an old one. But how, exactly, does this happen? This paper builds on an emerging field of inquiry by developing a synoptic taxonomy of the mechanisms of techno-moral change. It argues that technology affects moral beliefs and practices in three main domains: decisional (how we make morally loaded decisions), relational (how we relate to others) and perceptual (how we perceive situations). It argues that across these three domains (...)
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  45. The Role of Digital Technologies in Modern Trade: a Study of Global Trends and Prospects for Ukraine.Valeriia V. Vorobiova, Oleksandr P. Krupskyi & Yuliya Stasiuk - 2023 - Economic Journal Odessa Polytechnic University 2 (24):44-55.
    Digital technologies are becoming an essential tool in modern trade, contributing to its development and change. This article examines global trends in using digital technologies in trade and their potential impact on the Ukrainian market. The research shows that e-commerce, mobile shopping experience, smart technologies, and data analytics are key areas that affect consumers and business processes. The authors of the article analyze the impact of digital technologies on consumers, pointing to the growth of e-commerce and the convenience of (...)
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  46. Changing the Rules: Architecture and the New Millennium.David Kirsh - 2001 - Convergence 7 (2):113-125.
    Architecture is about to enter its first magical phase: a time when buildings actively co-operate with their inhabitants; when objects know what they are, where they are, what is near them; when social and physical space lose their type coupling; when wall and partitions change with mood and task. As engineers and scientists explore how to digitse the world around us, the classical constraints of design, ruled so long by the physics of space, time, and materials, are starting to (...)
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  47. Prometheus' Legacy: Responsibility and Technology.Michael Klenk & Martin Sand - 2020 - In Birgit Recki (ed.), Welche Technik? Dresden: Text & Dialog. pp. 23-40.
    A prominent view in contemporary philosophy of technology suggests that more technology implies more possibilities and, therefore, more responsibilities. Consequently, the question ‘What technology?’ is discussed primarily on the backdrop of assessing, assigning, and avoiding technology-borne culpability. The view is reminiscent of the Olympian gods’ vengeful and harsh reaction to Prometheus’ play with fire. However, the Olympian view leaves unexplained how technologies increase possibilities. Also, if Olympians are right, endorsing their view will at some point demand putting a halt to (...)
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  48. Technologies of artificial sensations.Alexey S. Bakhirev - manuscript
    Technologies based on emergence will allow to reproduce sensations on non-biological carriers by making devices feel. These technologies will change fundamentally not only the approach to the creation of artificial intelligence, but also create artificial worlds of a totally different level. Which, unlike virtual models, will really exist for themselves. This approach differs completely from the methods currently used in digital technologies. Possibly the principles described herein will give a rise to many new trends.
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  49. Is Climate Change Morally Good from Non-Anthropocentric Perspectives?Toby Svoboda & Jacob Haqq-Misra - 2018 - Ethics, Policy and Environment 21 (2):215-228.
    Anthropogenic climate change poses some difficult ethical quandaries for non-anthropocentrists. While it is hard to deny that climate change is a substantial moral ill, many types of non-human organisms stand to benefit from climate change. Modelling studies provide evidence that net primary productivity (NPP) could be substantially boosted, both regionally and globally, as a result of warming from increased concentrations of greenhouse gases. The same holds for deployment of certain types of climate engineering, or large-scale, technological (...)
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  50.  91
    Climate Change and Social Conflicts.Richard Sťahel - 2016 - Perspectives on Global Development and Technology 15:480-496.
    This article outlines the role of globalized mass media in the perception of environmental and social threats and its reciprocal conditionality in the globalized society. It examines the reasons why the global environmental crisis will not lead to a world-wide environmental movement for change of the basic imperatives of the world economicpolitical system. Coherency between globalized mass media and wide-spreading of consumer lifestyle exists despite the fact that it deepens the devastation of environment and social conflicts. Globalized mass media (...)
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