Results for 'Technology Research.'

988 found
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  1.  92
    Guidelines for Research Ethics in Science and Technology.National Committee For Research Ethics In Science And Technology - 2009 - Jahrbuch für Wissenschaft Und Ethik 14 (1):255-266.
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  2.  22
    Information Technology Research Ethics.Dag Elgesem - 2008 - In M. J. van den Joven & J. Weckert (eds.), Information Technology and Moral Philosophy. Cambridge University Press. pp. 354.
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  3.  10
    Social implications of scientific-technological research in Senior Citizens' Neurosurgery.Liset María Frías Hernández, Anai Guerra Labrada & IIÁngela María Guillén Verano - 2018 - Humanidades Médicas 18 (1):137-153.
    Se realizó una revisión bibliográfica con el objetivo de valorar las implicaciones sociales de la investigación científico-tecnológica en Neurosicología del Adulto Mayor, mediante la caracterización del estado actual del proceso, los condicionantes que favorecen o impiden su desarrollo y los impactos sociales que genera. La investigación científico-tecnológica en esta área está condicionada por necesidades sociales propias del contexto actual. Se han identificado políticas, legislaciones e infraestructuras que la favorecen, aunque, existen algunas limitaciones. La producción tecnológica dirigida a la rehabilitación y (...)
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  4.  24
    Christian Action Research and Education (CARE): declaration on human genetics and other new technologies in medicine.Action Research Christian - 2003 - Human Reproduction and Genetic Ethics 9 (1):6.
  5.  24
    Statement on the formulation of a code of conduct for research integrity for projects funded by the European Commission.European Group on Ethics in Science and New Technologies - 2016 - Jahrbuch für Wissenschaft Und Ethik 20 (1):237-240.
    Name der Zeitschrift: Jahrbuch für Wissenschaft und Ethik Jahrgang: 20 Heft: 1 Seiten: 237-240.
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  6. Industrial and Technological Research Institutes and.Jk Nigam - 1993 - In Syed Zahoor Qasim (ed.), Science and quality of life. New Delhi, India: Offsetters. pp. 445.
     
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  7.  49
    Smart homes, private homes? An empirical study of technology researchers’ perceptions of ethical issues in developing smart-home health technologies.Giles Birchley, Richard Huxtable, Madeleine Murtagh, Ruud ter Meulen, Peter Flach & Rachael Gooberman-Hill - 2017 - BMC Medical Ethics 18 (1):23.
    Smart-home technologies, comprising environmental sensors, wearables and video are attracting interest in home healthcare delivery. Development of such technology is usually justified on the basis of the technology’s potential to increase the autonomy of people living with long-term conditions. Studies of the ethics of smart-homes raise concerns about privacy, consent, social isolation and equity of access. Few studies have investigated the ethical perspectives of smart-home engineers themselves. By exploring the views of engineering researchers in a large smart-home project, (...)
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  8.  9
    Combining development, capacity building and responsible innovation in GCRF‐funded medical technology research.Louise Bezuidenhout, Julian Stirling, Valerian L. Sanga, Paul T. Nyakyi, Grace A. Mwakajinga & Richard Bowman - 2022 - Developing World Bioethics 22 (4):276-287.
    Development-oriented funding schemes such as the UK Global Challenges Research Fund (GCRF) have opened up opportunities for collaborations between low-middle income countries (LMICs) and high-income country (HIC) researchers. In particular, funding for medical technology research has seen a rise in previously under-represented disciplines such as physics and engineering. These collaborations have considerable potential to advance healthcare in LMICs, yet can pose challenges experienced to researchers undertaking these collaborations. Key challenges include a lack of tradition of HIC/LMIC collaborations within participating (...)
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  9.  10
    Combining development, capacity building and responsible innovation in GCRF‐funded medical technology research.Louise Bezuidenhout, Julian Stirling, Valerian L. Sanga, Paul T. Nyakyi, Grace A. Mwakajinga & Richard Bowman - 2022 - Developing World Bioethics 22 (4):276-287.
    Development-oriented funding schemes such as the UK Global Challenges Research Fund (GCRF) have opened up opportunities for collaborations between low-middle income countries (LMICs) and high-income country (HIC) researchers. In particular, funding for medical technology research has seen a rise in previously under-represented disciplines such as physics and engineering. These collaborations have considerable potential to advance healthcare in LMICs, yet can pose challenges experienced to researchers undertaking these collaborations. Key challenges include a lack of tradition of HIC/LMIC collaborations within participating (...)
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  10.  14
    Combining development, capacity building and responsible innovation in GCRF‐funded medical technology research.Louise Bezuidenhout, Julian Stirling, Valerian L. Sanga, Paul T. Nyakyi, Grace A. Mwakajinga & Richard Bowman - 2022 - Developing World Bioethics 22 (4):276-287.
    Development-oriented funding schemes such as the UK Global Challenges Research Fund (GCRF) have opened up opportunities for collaborations between low-middle income countries (LMICs) and high-income country (HIC) researchers. In particular, funding for medical technology research has seen a rise in previously under-represented disciplines such as physics and engineering. These collaborations have considerable potential to advance healthcare in LMICs, yet can pose challenges experienced to researchers undertaking these collaborations. Key challenges include a lack of tradition of HIC/LMIC collaborations within participating (...)
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  11.  51
    The Scientific Field During Argentina’s Latest Military Dictatorship : Contraction of Public Universities and Expansion of the National Council for Scientific and Technological Research. [REVIEW]Fabiana Bekerman - 2013 - Minerva 51 (2):253-269.
    This study looks at some of the traits that characterized Argentina’s scientific and university policies under the military regime that spanned from 1976 through 1983. To this end, it delves into a rarely explored empirical observation: financial resource transfers from national universities to the National Scientific and Technological Research Council (CONICET, for its Spanish acronym) during that period. The intention is to show how, by reallocating funds geared to Science and Technology, CONICET was made to expand and decentralize to (...)
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  12.  6
    Research Objects in Their Technological Setting.Alfred Nordmann & Bernadette Bensaude Vincent (eds.) - 2017 - New York: Routledge.
    What kind of stuff is the world made of? What is the nature or substance of things? These are ontological questions, and they are usually answered with respect to the objects of science. The objects of technoscience tell a different story that concerns the power, promise and potential of things - not what they are but what they can be. Seventeen scholars from history and philosophy of science, epistemology, social anthropology, cultural studies and ethics each explore a research object in (...)
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  13.  12
    The Potential and Challenges of Digital Well-Being Interventions: Positive Technology Research and Design in Light of the Bitter-Sweet Ambivalence of Change.Sarah Diefenbach - 2018 - Frontiers in Psychology 9:304789.
    Along with the dissemination of technical assistance in nearly every part of life, there has been growing interest in the potential of technology to support well-being and human flourishing. “Positive technology” thereby takes the responsible role of a “digital coach,” supporting people in achieving personal goals and behavior change. The design of such technology requires knowledge of different disciplines such as psychology, design and human-computer interaction. However, possible synergies are not yet used to full effect, and it (...)
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  14. Philosophies of the Environment and Technology (Research in Philosophy and Technology).Marina Paola Banchetti-Robino, D. E. Marietta & L. Embree (eds.) - 1999 - JAI Press.
  15.  56
    Responsible research and innovation (RRI) in quantum technology.Christopher Coenen & Armin Grunwald - 2017 - Ethics and Information Technology 19 (4):277-294.
    We are currently witnessing the emergence of a discourse on responsible research and innovation in the field of quantum technology. Working on the assumption that the initial stage of discourse is of particular importance with regard to the ascription of meaning to an emerging field, our point of departure is a small corpus of prominent policy-oriented reports on quantum technology recently published in Europe. With a view to these publications, the article analyses various approaches to RRI and discusses (...)
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  16.  30
    Design Bioethics: A Theoretical Framework and Argument for Innovation in Bioethics Research.Gabriela Pavarini, Robyn McMillan, Abigail Robinson & Ilina Singh - 2021 - American Journal of Bioethics 21 (6):37-50.
    Empirical research in bioethics has developed rapidly over the past decade, but has largely eschewed the use of technology-driven methodologies. We propose “design bioethics” as an area of conjoined theoretical and methodological innovation in the field, working across bioethics, health sciences and human-centred technological design. We demonstrate the potential of digital tools, particularly purpose-built digital games, to align with theoretical frameworks in bioethics for empirical research, integrating context, narrative and embodiment in moral decision-making. Purpose-built digital tools can engender situated (...)
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  17. Philosophy of Technology after the Empirical Turn.Philip Brey - 2010 - Techné: Research in Philosophy and Technology 14 (1):36-48.
    What are the strengths and weaknesses of contemporary philosophy of technology, and how may the field be developed and improved in the future? That is the question I will address in this paper. I will argue that in the past twenty-five years, philosophy of technology has entered a new era. This era has arrived with new and distinct issues and approaches that differ from those that came before it. Many of the new developments have been for the good. (...)
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  18.  24
    Scientific research, technological innovation and the agenda of social justice, democratic participation and sustainability.Hugh Lacey - 2014 - Scientiae Studia 12 (SPE):37-55.
    Modern science, whose methodologies give special privilege to using decontextualizing strategies and downplay the role of context-sensitive strategies, have been extraordinarily successful in producing knowledge whose applications have transformed the shape of the lifeworld. Nevertheless, I argue that how the mainstream of the modern scientific tradition interprets the nature and objectives of science is incoherent; and that today there are two competing interpretations of scientific activities that are coherent and that maintain continuity with the success of the tradition: "commercially-oriented technoscience" (...)
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  19. The new production of knowledge: the dynamics of science and research in contemporary societies.Michael Gibbons (ed.) - 1994 - Thousand Oaks, Calif.: SAGE Publications.
    As we approach the end of the twentieth century, the ways in which knowledge--scientific, social, and cultural--is produced are undergoing fundamental changes. In The New Production of Knowledge, a distinguished group of authors analyze these changes as marking the transition from established institutions, disciplines, practices, and policies to a new mode of knowledge production. Identifying such elements as reflexivity, transdisciplinarity, and heterogeneity within this new mode, the authors consider their impact and interplay with the role of knowledge in social relations. (...)
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  20.  26
    Devices of Responsibility: Over a Decade of Responsible Research and Innovation Initiatives for Nanotechnologies.Clare Shelley-Egan, Diana M. Bowman & Douglas K. R. Robinson - 2018 - Science and Engineering Ethics 24 (6):1719-1746.
    Responsible research and innovation has come to represent a change in the relationship between science, technology and society. With origins in the democratisation of science, and the inclusion of ethical and societal aspects in research and development activities, RRI offers a means of integrating society and the research and innovation communities. In this article, we frame RRI activities through the lens of layers of science and technology governance as a means of characterising the context in which the RRI (...)
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  21.  28
    Research article abstracts in applied linguistics and educational technology: a study of linguistic realizations of rhetorical structure and authorial stance.Phuong Dzung Pho - 2008 - Discourse Studies 10 (2):231-250.
    The abstract found at the beginning of most journal articles has increasingly become an essential part of the article. It tends to be the first part of the article to be read and, to some extent, it `sells' the article. Acquiring the skills of writing an abstract is therefore important to novice writers to enter the discourse community of their discipline. Based on 30 abstracts from three journals, the present study aims at exploring not only the rhetorical moves of abstracts (...)
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  22.  32
    Accompanying Technology.Peter-Paul Verbeek - 2010 - Techné: Research in Philosophy and Technology 14 (1):49-54.
  23.  6
    Ethical Issues Associated with Scientific and Technological Research for the MilitaryCarl Mitcham Philip SiekevitzAtomic Energy for Military Purposes: The Official Report on the Development of the Atomic Bomb under the Auspices of the United States Government, 1940-1945Henry DeWolf SmythPreventing a Biological Arms RaceSusan Wright. [REVIEW]Barton C. Hacker - 1992 - Isis 83 (2):362-364.
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  24.  34
    The Instruction of Imagination: Language as a Social Communication Technology.Daniel Dor - 2015 - Oxford University Press USA.
    The book suggests a new perspective on the essence of human language. This enormous achievement of our species is best characterized as a communication technology - not unlike the social media on the Net today - that was collectively invented by ancient humans for a very particular communicative function: the instruction of imagination. All other systems of communication in the biological world target the interlocutors' senses; language allows speakers to systematically instruct their interlocutors in the process of imagining the (...)
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  25.  7
    Exploring Responsibility Rationales in Research and Development.Neelke Doorn - 2012 - Science, Technology, and Human Values 37 (3):180-209.
    The present article explores the rationales of scientists and engineers for distributing moral responsibilities related technology development. On the basis of a qualitative case study, it was investigated how the actors within a research network distribute responsibilities for these issues. Rawls’ Wide Reflective Equilibrium model was used as a descriptive framework. This study indicates that there is a correlation between the actors’ ethics position and their responsibility rationale. When discussing how to address ethical issues or how to distribute the (...)
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  26.  25
    Research, Governance, and Technologies of Openness.Naomi Hodgson - 2016 - Educational Theory 66 (4):535-549.
    Recent policy changes in the European Union have introduced the requirement for publicly funded research to be published in open access. This can be seen as part of a mode of democratic accountability that not only promotes transparency but also, Naomi Hodgson argues, is constituted by visibility and openness. By drawing attention to the way in which the researcher is asked to understand herself in this policy context, Hodgson illustrates how particular technologies of performance measurement and management, and of publication, (...)
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  27.  56
    Researching and teaching the ethics and social implications of emerging technologies in the laboratory.Joan McGregor & Jameson M. Wetmore - 2009 - NanoEthics 3 (1):17-30.
    Ethicists and others who study and teach the social implications of science and technology are faced with a formidable challenge when they seek to address “emerging technologies.” The topic is incredibly important, but difficult to grasp because not only are the precise issues often unclear, what the technology will ultimately look like can be difficult to discern. This paper argues that one particularly useful way to overcome these difficulties is to engage with their natural science and engineering colleagues (...)
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  28. 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 (...)
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  29.  20
    Recovering Ethics After ‘Technics’: developing critical text on technology.Patricia B. Marck - 2000 - Nursing Ethics 7 (1):5-14.
    Much modern science and ethics debate is on high-profile problems such as animal organ transplantation, genetic engineering and fetal tissue research, in discourse that assumes technical tones. Other work, such as narrative ethics, expresses the failed promise of technology in the vivid detail of human experience. However, the essential nature of contemporary technology remains largely opaque to our present ethical lens on health care and on society. The limited controversies of modern science and ethics perpetuate ‘technics’, a technical, (...)
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  30.  5
    Research in Philosophy & Technology: An Annual Compilation of Research.Paul T. Durbin & Carl Mitcham - 1978 - JAI Press(NY).
    Method descriptive frameworks, and a practical program for philosophy of technology; The University of Delaware Conference, 1975; Review and bibliography; European contributions; Conference Papers, 1976-1977; Historico-philosophical studies.
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  31.  20
    From technologization to totalization in education research: US graduate training, methodology, and critique.Lynda Stone - 2006 - Journal of Philosophy of Education 40 (4):527–545.
    Focusing on the context of graduate training in educational research in the United States today, this article is organized into two principal parts. The first overviews the state of research training in order to emphasize the preoccupation with, indeed dominance of, study of methodology. This has turned ‘how to do research’ into valuing method as technology for its own sake, and thus into technologization. The second part turns to three critiques of technology that together point to potential totalization (...)
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  32.  13
    Portfolios of Worth: Capitalizing on Basic and Clinical Problems in Biomedical Research Groups.Sarah de Rijcke, Thomas Franssen & Alexander Rushforth - 2019 - Science, Technology, and Human Values 44 (2):209-236.
    How are “interesting” research problems identified and made durable by academic researchers, particularly in situations defined by multiple evaluation principles? Building on two case studies of research groups working on rare diseases in academic biomedicine, we explore how group leaders arrange their groups to encompass research problems that latch onto distinct evaluation principles by dividing and combining work into “basic-oriented” and “clinical-oriented” spheres of inquiry. Following recent developments in the sociology of valuation comparing academics to capitalist entrepreneurs in pursuit of (...)
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  33.  27
    Ethics parallel research: an approach for (early) ethical guidance of biomedical innovation.Karin R. Jongsma & Annelien L. Bredenoord - 2020 - BMC Medical Ethics 21 (1):1-9.
    BackgroundOur human societies and certainly also (bio) medicine are more and more permeated with technology. There seems to be an increasing awareness among bioethicists that an effective and comprehensive approach to ethically guide these emerging biomedical innovations into society is needed. Such an approach has not been spelled out yet for bioethics, while there are frequent calls for ethical guidance of biomedical innovation, also by biomedical researchers themselves. New and emerging biotechnologies require anticipation of possible effects and implications, meaning (...)
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  34.  9
    Research ethics in practice: challenges of using digital technology to embed the voices of children and young people within programs for fathers who use domestic violence.Katie Lamb, Cathy Humphreys & Kelsey Hegarty - 2020 - Research Ethics 17 (2):176-192.
    There has been growing enthusiasm amongst those who undertake research with children, for the development of participatory and visual research methods. The greater availability and affordability of digital technology has meant that there has been greater scope for digital technology to support participatory research methods, or augment more traditional qualitative research methods. While digital technology provides new opportunities for qualitative researchers, they also come with a series of challenges – some of which have been grappled with by (...)
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  35. The Sources of Invention. A Study of the Causes and Consequences of Industrial Innovation through the Inventions of the Nineteenth and Twentieth Centuries by John Jewkes; David Sawers; Richard Stillerman; Victorian Technology and Its Preservation in Modern Britain by Norman A. F. Smith; Technology in Retrospect and Critical Events in Science. Volume I by Illinois Institute of Technology Research Institute. [REVIEW]John Heilbron - 1972 - Isis 63:115-115.
  36.  27
    The Emerging Technology and Application of Preimplantation Genetic Diagnosis.Richard J. Tasca & Michael E. McClure - 1998 - Journal of Law, Medicine and Ethics 26 (1):7-16.
    Efforts to improve the means to diagnose and treat human genetic diseases have a long history in biomedical research and medicine. Now, preimplantation genetic diagnosis provides a new way to prevent the transmission of certain types of human genetic diseases to the next generation. It is an alternative to elective termination of pregnancies.PGD is used to test for genetic diseases that are due to defective single genes or abnormal chromosomes within days of fertilization and prior to the establishment of pregnancy. (...)
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  37.  46
    To Describe, Transmit or Inquire: Ethics and technology in school.Viktor Gardelli - 2016 - Dissertation, Luleå University of Technology
    Ethics is of vital importance to the Swedish educational system, as in many other educational systems around the world.Yet, it is unclear how ethics should be dealt with in school, and prior research and evaluations have found serious problems regarding ethics in education.The field of moral education lacks clear and widely accepted definitions of key concepts, and these ambiguities negatively impact both research and educational practice. This thesis draws a distinction between three approaches to ethics in school – the descriptive (...)
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  38.  13
    Values in University–Industry Collaborations: The Case of Academics Working at Universities of Technology.Rafaela Hillerbrand & Claudia Werker - 2019 - Science and Engineering Ethics 25 (6):1633-1656.
    In the applied sciences and in engineering there is often a significant overlap between work at universities and in industry. For the individual scholar, this may lead to serious conflicts when working on joint university–industry projects. Differences in goals, such as the university’s aim to disseminate knowledge while industry aims to appropriate knowledge, might lead to complicated situations and conflicts of interest. The detailed cases of two electrical engineers and two architects working at two different universities of technology illustrate (...)
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  39. Language Teachers’ Pedagogical Orientations in Integrating Technology in the Online Classroom: Its Effect on Students’ Motivation and Engagement.Russell de Souza, Rehana Parveen, Supat Chupradit, Lovella G. Velasco, Myla M. Arcinas, Almighty Tabuena, Jupeth Pentang & Randy Joy M. Ventayen - 2021 - Turkish Journal of Computer and Mathematics Education 12 (10):5001-5014.
    The present study assessed the language teachers' pedagogical beliefs and orientations in integrating technology in the online classroom and its effect on students' motivation and engagement. It utilized a cross-sectional correlational research survey. The study respondents were the randomly sampled 205 language teachers (μ= 437, n= 205) and 317 language students (μ= 1800, n= 317) of select higher educational institutions in the Philippines. The study results revealed that respondents hold positive pedagogical beliefs and orientations using technology-based teaching in (...)
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  40.  19
    Toward a normative ethics for technology development.Stephen Rainey & Philippe Goujon - 2011 - Journal of Information, Communication and Ethics in Society 9 (3):157-179.
    PurposeThe purpose of this paper is to criticise ad hoc approaches to ethics in research and development in technology as descriptive and non‐ethical, and based upon a narrow conception of rationality.Design/methodology/approachThe approach deploys a theory of normativity that can incorporate values and a broad conception of rationality, in order to account for the relevance of issues for the addressees of normative injunctions.FindingsA normative approach is possible and required in order to implement ethics in research and development in technology.Originality/valueThe (...)
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  41.  33
    Stem Cell Research: A Target Article Collection Part I - Jordan's Banks, A View from the First Years of Human Embryonic Stem Cell Research.Laurie Zoloth - 2002 - American Journal of Bioethics 2 (1):3-11.
    This essay will address the ethical issues that have emerged in the first considerations of the newly emerging stem cell technology. Many of us in the field of bioethics were deliberating related issues as we first learned of the new science and confronted the ethical issues it raised. In this essay, I will draw on the work of colleagues who were asked to reflect on early stages of the research as the field debated the issues of consent, moral status, (...)
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  42.  32
    Values in University–Industry Collaborations: The Case of Academics Working at Universities of Technology.Rafaela Hillerbrand & Claudia Werker - 2019 - Science and Engineering Ethics 25 (6):1633-1656.
    In the applied sciences and in engineering there is often a significant overlap between work at universities and in industry. For the individual scholar, this may lead to serious conflicts when working on joint university–industry projects. Differences in goals, such as the university’s aim to disseminate knowledge while industry aims to appropriate knowledge, might lead to complicated situations and conflicts of interest. The detailed cases of two electrical engineers and two architects working at two different universities of technology illustrate (...)
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  43.  8
    Tourists’ Health Risk Threats Amid COVID-19 Era: Role of Technology Innovation, Transformation, and Recovery Implications for Sustainable Tourism.Zhenhuan Li, Dake Wang, Jaffar Abbas, Saad Hassan & Riaqa Mubeen - 2022 - Frontiers in Psychology 12.
    Technology innovation has changed the patterns with its advanced features for travel and tourism industry during the outbreak of COVID-19 pandemic, which massively hit tourism and travel worldwide. The profound adverse effects of the coronavirus disease resulted in a steep decline in the demand for travel and tourism activities worldwide. This study focused on the literature based on travel and tourism in the wake global crisis due to infectious virus. The study aims to review the emerging literature critically to (...)
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  44.  46
    The Why and How of Enabling the Integration of Social and Ethical Aspects in Research and Development.Steven M. Flipse, Maarten Ca van der Sanden & Patricia Osseweijer - 2013 - Science and Engineering Ethics 19 (3):703-725.
    New and Emerging Science and Technology (NEST) based innovations, e.g. in the field of Life Sciences or Nanotechnology, frequently raise societal and political concerns. To address these concerns NEST researchers are expected to deploy socially responsible R&D practices. This requires researchers to integrate social and ethical aspects (SEAs) in their daily work. Many methods can facilitate such integration. Still, why and how researchers should and could use SEAs remains largely unclear. In this paper we aim to relate motivations for (...)
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  45.  39
    Replacing humans with machines: a historical look at technology politics in California agriculture.Patrick Baur & Alastair Iles - forthcoming - Agriculture and Human Values:1-28.
    Media outlets, industry researchers, and policy-makers are today busily extolling new robotic advances that promise to transform agriculture, bringing us ever closer to self-farming farms. Yet such techno-optimist discourse ignores the cautionary lessons of past attempts to mechanize farms. Adapting the Social Construction of Technology framework, we trace the history of efforts to replace human labor with machine labor on fruit, nut, and vegetable farms in California between 1945 and 1980—a place and time during which a post-WWII culture of (...)
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  46.  5
    Backstage: The organizational gendered agenda in science, engineering and technology professions.Edeltraud Hanappi-Egger - 2013 - European Journal of Women's Studies 20 (3):279-294.
    Science, engineering and technology are still male-dominated fields, and thus all over Europe much effort is expended on activities which, it is hoped, will lead to a sustainable gender balance. Scholarly work has frequently focused on the topic of how to motivate women to enter SET fields or to choose a corresponding education. In contrast to this one-sided approach, recent scholarly contributions have begun to emphasize the vital role of gendered structures and indirect exclusion mechanisms of technological institutions and (...)
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  47. Research in philosophy and technology.Carl Mitcham - 1998 - JAI Press.
    An analysis of the relationship between technology, ethics and culture. It covers topics that include: environmental ethics and the recovery of culture; media, identity and politics; technological enlightenment as a continuation of modern thinking; and, the rhetoric of eugenics.
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  48.  36
    On the Poietic Character of Technology.Federica Russo - 2016 - Humana Mente 9 (30).
    Large part of contemporary science is in fact technoscience, in the sense that it crucially depends on several technologies for the generation, collection, and analysis of data. This prompts a re-examination of the relations between science and technologies. In this essay, I advance the view that we’d better move beyond the ‘subordination view’ and the ‘instrumental’ view. The first aims to establish the primacy of science over technology, and the second uses technology instrumentally to support a realist position (...)
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  49.  13
    Bridging Museum Mission to Visitors’ Experience: Activity, Meanings, Interactions, Technology.Annamaria Recupero, Alessandra Talamo, Stefano Triberti & Camilla Modesti - 2019 - Frontiers in Psychology 10:486454.
    In recent years, the contribution of various disciplines and professionals (i.e. from marketing, computer science, psychology and pedagogy) to museum management has encouraged the development of a new conception of museology. Specifically, psychology has affected the overall conception of museum and the visitors towards a more holistic vision of the museum experience as a complexity of memory, personal drives, group identity, meaning-making process, as well as leisure preferences. In this regard, psychological research contributes to advance the scientific knowledge about psychological (...)
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  50.  19
    The Double-Edged Helix: Social Implications of Genetics in a Diverse Society.Joseph S. Alper, Catherine Ard, Adrienne Asch, Peter Conrad, Jon Beckwith, American Cancer Society Research Professor of Microbiology and Molecular Genetics Jon Beckwith, Harry Coplan Professor of Social Sciences Peter Conrad & Lisa N. Geller - 2002
    The rapidly changing field of genetics affects society through advances in health-care and through implications of genetic research. This study addresses the impacts of new genetic discoveries and technologies on different segments of today's society. The book begins with a chapter on genetic complexity, and subsequent chapters discuss moral and ethical questions arising from today's genetics from the perspectives of health care professionals, the media, the general public, special interest groups and commercial interests.
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