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Real science: what it is, and what it means

New York: Cambridge University Press (2000)

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  1. We are not Witnesses to a New Scientific Revolution.Gregor Schiemann - 2011 - In Alfred Nordmann, Hans Radder & Gregor Schiemann (eds.), Science Transformed?: Debating Claims of an Epochal Break. University of Pittsburgh Press. pp. 31-42.
    Do the changes that have taken place in the structures and methods of the production of scientific knowledge and in our understanding of science over the past fifty years justify speaking of an epochal break in the development of science? Gregor Schiemann addresses this issues through the notion of a scientific revolution and claims that at present we are not witnessing a new scientific revolution. Instead, Schiemann argues that after the so-called Scientific Revolution in the sixteenth and seventeenth centuries, a (...)
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  • Strukturwandel der Wissenschaft.Gregor Schiemann, Alfred Nordmann & Hans Radder (eds.) - 2014
    Mit Robotik, Digitalisierung, softwaregesteuerten Präzisionsinstrumenten und hochkomplexen Simulationsverfahren wird heute Technik zur treibenden Kraft der wissenschaftlichen Forschungspraxis. Gleichzeitig sieht sich die universitäre Forschung wachsenden gesellschaftlichen Einflüssen ausgesetzt und nähert sich selbst immer mehr der Industrieforschung an, woraus sich neue Fragen nach den Werten und der Objektivität der Wissenschaft ergeben. Derartig weitreichende Veränderungen haben zahlreiche Spekulationen darüber provoziert, ob sich in der Wissenschaftsgeschichte gegenwärtig ein Epochenbruch vollzieht. Dieser Sammelband setzt sich aus philosophischen, historischen und kulturwissenschaftlichen Perspektiven mit den Epochenbruchthesen auseinander, bestätigt (...)
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  • Science Transformed?: Debating Claims of an Epochal Break.Alfred Nordmann, Hans Radder & Gregor Schiemann (eds.) - 2011 - University of Pittsburgh Press.
    Advancements in computing, instrumentation, robotics, digital imaging, and simulation modeling have changed science into a technology-driven institution. Government, industry, and society increasingly exert their influence over science, raising questions of values and objectivity. These and other profound changes have led many to speculate that we are in the midst of an epochal break in scientific history. -/- This edited volume presents an in-depth examination of these issues from philosophical, historical, social, and cultural perspectives. It offers arguments both for and against (...)
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  • New horizons on robotics: ethics challenges.António Moniz - 2019 - In Maria Céu do Patrão Neves (ed.), Ethics, Science and Society: Challenges for BioPolitics. pp. 57-67.
    In this chapter, the focus is on robotics development and its ethical implications, especially on some particular applications or interaction principles. In recent years, such developments have happened very quickly, based on the advances achieved in the last few decades in industrial robotics. The technological developments in manufacturing, with the implementation of Industry 4.0 strategies in most industrialized countries, and the dissemination of production strategies into services and health sectors, enabled robotics to develop in a variety of new directions. Policy (...)
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  • C. S. Peirce and Intersemiotic Translation.Joao Queiroz & Daniella Aguiar - 2015 - In Peter Pericles Trifonas (ed.), International Handbook of Semiotics. Dordrecht: Springer. pp. 201-215.
    Intersemiotic translation (IT) was defined by Roman Jakobson (The Translation Studies Reader, Routledge, London, p. 114, 2000) as “transmutation of signs”—“an interpretation of verbal signs by means of signs of nonverbal sign systems.” Despite its theoretical relevance, and in spite of the frequency in which it is practiced, the phenomenon remains virtually unexplored in terms of conceptual modeling, especially from a semiotic perspective. Our approach is based on two premises: (i) IT is fundamentally a semiotic operation process (semiosis) and (ii) (...)
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  • Rumos da Epistemologia v. 11.Luiz Dutra & Alexandre Meyer Luz (eds.) - 2011 - Núcleo de Epistemologia e Lógica.
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  • Maps and Models.Rasmus Grønfeldt Winther - forthcoming - In Routledge Handbook of Philosophy of Scientific Modeling. London, UK:
    Maps and mapping raise questions about models and modeling and in science. This chapter archives map discourse in the founding generation of philosophers of science (e.g., Rudolf Carnap, Nelson Goodman, Thomas Kuhn, and Stephen Toulmin) and in the subsequent generation (e.g., Philip Kitcher, Helen Longino, and Bas van Fraassen). In focusing on these two original framing generations of philosophy of science, I intend to remove us from the heat of contemporary discussions of abstraction, representation, and practice of science and thereby (...)
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  • Non-instrumental roles of science.John Ziman - 2003 - Science and Engineering Ethics 9 (1):17-27.
    Nowadays, science is treated an instrument of policy, serving the material interests of government and commerce. Traditionally, however, it also has important non-instrumental social functions, such as the creation of critical scenarios and world pictures, the stimulation of rational attitudes, and the production of enlightened practitioners and independent experts. The transition from academic to ‘post-academic’ science threatens the performance of these functions, which are inconsistent with strictly instrumental modes of knowledge production. In particular, expert objectivity is negated by entanglement with (...)
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  • Getting scientists to think about what they are doing.John Ziman - 2001 - Science and Engineering Ethics 7 (2):165-176.
    Research scientists are trained to produce specialised bricks of knowledge, but not to look at the whole building. Increasing public concern about the social role of science is forcing science students to think about what they are actually learning to do. What sort of knowledge will they be producing, and how will it be used? Science education now requires serious consideration of these philosophical and ethical questions. But the many different forms of knowledge produced by modern science cannot be covered (...)
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  • Are debatable scientific questions debatable?John Ziman - 2000 - Social Epistemology 14 (2 & 3):187 – 199.
    Scientists often find difficulty in engaging in formal public debate about transcientific social issues. Although science is a highly disputatious institution, public argumentation amongst scientists follows very different conventional practices from those that rule in political and legal arenas. Amongst other differentiating features, scientific disputes are typically conducted in writing rather than orally, they are not sharply polarised or formally adversarial, they are seldom addressed to a specific proposition, and they do not reach decisive closure. As a result, the rhetorical (...)
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  • The maladies of enlightenment science.Tim Wyatt - 2017 - Ethics in Science and Environmental Politics 17 (1):51-62.
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  • Rationalism and the “rational actor assumption” in realist international relations theory.Colin Wight & Brian C. Schmidt - 2023 - Journal of International Political Theory 19 (2):158-182.
    The commitment to the rational actor model of state behavior is said to be a core assumption of realist theory. This assumption is listed in most textbook accounts of realism. Yet is rationality a core supposition of realist theory, and if so, what kind of rationality is implied in these claims? Debate on the relationship between realism, and what is often labeled as rationality is replete with misunderstandings. Authors deploy terms such as rationality, rationalism, and rational actor in diverse and (...)
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  • Changing Governance and Authority Relations in the Public Sciences.Richard Whitley - 2011 - Minerva 49 (4):359-385.
    Major changes in the governance of higher education and the public sciences have taken place over the past 40 or so years in many OECD countries. These have affected the nature of authority relationships governing research priorities and the evaluation of results. In particular, the increasing exogeneity, formalisation and substantive nature of governance mechanisms, as well as the strength and extent of their enforcement, have altered the relative authority of different groups and organisations over research priorities and evaluations, as well (...)
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  • Relevant Features of Science: Values in Conservation Biology.Esther M. van Dijk - 2013 - Science & Education 22 (9):2141-2156.
  • Inequality and University Research Agendas in Latin America.Judith Sutz - 2003 - Science, Technology, and Human Values 28 (1):52-68.
    The aim of this article is to explore the merit, feasibility, and possible scope of equality-biased academic research agendas in Latin America. First, it discusses the merits of university research agendas as tools in the fight against inequality. Second, it analyzes the feasibility of defining such research agendas in Latin American public universities, taking into account their long tradition of institutionalized social commitment. Third, it comments on two Uruguayan examples of research programs that may make contributions to the reduction of (...)
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  • The Normative Orientations of Climate Scientists.Dennis Bray & Hans Storch - 2017 - Science and Engineering Ethics 23 (5):1351-1367.
    In 1942 Robert K. Merton tried to demonstrate the structure of the normative system of science by specifying the norms that characterized it. The norms were assigned the abbreviation CUDOs: Communism, Universalism, Disinterestedness, and Organized skepticism. Using the results of an on-line survey of climate scientists concerning the norms of science, this paper explores the climate scientists’ subscription to these norms. The data suggests that while Merton’s CUDOs remain the overall guiding moral principles, they are not fully endorsed or present (...)
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  • Reflections on ' real science: What it is, and what it means ' by John Ziman.Raymond Spier - 2002 - Science and Engineering Ethics 8 (2):235-252.
    In these reflections on the recent book by John Ziman entitled ‘Real Science: What it is and what it means’, I have sought to review his main points and carry on the discussion that Ziman seeks to provoke. His approach to this subject arises from what exists on the ground and the way practising scientists view this area. I have taken a wider more abstract view of what is entailed by science than Ziman and have examined the implications of that (...)
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  • On the Qualities of Science.R. E. Spier - 2004 - Global Bioethics 17 (1):51-59.
    We hear much of voodoo science or junk science or even scientific science, in this paper I seek to evaluate and understand how we might approach a description of the qualities of science. In this I base my reasoning on the equivalence of the words science and knowledge. I then note that the application of the scientific method determines how confident we may be in what we hold as knowledge or science (basically a tested guess or hypothesis). The different levels (...)
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  • Eco-Driven Chemical Research in the Boundary Between Academia and Industry.Jesper Sjöström - 2013 - Science & Education 22 (10):2427-2441.
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  • Global Climate Change: What has Science Education Got to Do with it?Ajay Sharma - 2012 - Science & Education 21 (1):33-53.
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  • The ethical implications of the new research paradigm.Peter Scott - 2003 - Science and Engineering Ethics 9 (1):73-84.
    Research is now an increasingly heterogeneous activity involving an expanded range of new actors and stake-holders and employing an eclectic range of epistemologies and methodologies. The emergence of these new research paradigms — and, in particular, of so-called ‘Mode 2’ knowledge production that is highly contextualised and socially distributed — raises new and challenging ethical issues and also important questions about the autonomy of science and the social responsibilities of scientists.
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  • The ethical implications of the new research paradigm.Professor Peter Scott - 2003 - Science and Engineering Ethics 9 (1):73-84.
    Research is now an increasingly heterogeneous activity involving an expanded range of new actors and stake-holders and employing an eclectic range of epistemologies and methodologies. The emergence of these new research paradigms — and, in particular, of so-called ‘Mode 2’ knowledge production that is highly contextualised and socially distributed — raises new and challenging ethical issues and also important questions about the autonomy of science and the social responsibilities of scientists.
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  • Social-cognitive barriers to ethical authorship.Jordan R. Schoenherr - 2015 - Frontiers in Psychology 6.
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  • The Journey from Discovery to Scientific Change: Scientific Communities, Shared Models, and Specialised Vocabulary.Sarah M. Roe - 2017 - International Studies in the Philosophy of Science 31 (1):47-67.
    Scientific communities as social groupings and the role that such communities play in scientific change and the production of scientific knowledge is currently under debate. I examine theory change as a complex social interaction among individual scientists and the scientific community, and argue that individuals will be motivated to adopt a more radical or innovative attitude when confronted with striking similarities between model systems and a more robust understanding of specialised vocabulary. Two case studies from the biological sciences, Barbara McClintock (...)
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  • Constitutive Pluralism of Chemistry: Thought Planning, Curriculum, Epistemological and Didactic Orientations.Marcos Antonio Pinto Ribeiro & Duarte Costa Pereira - 2013 - Science & Education 22 (7):1809-1837.
  • Examining the Social Benefits Principle in Research with Human Participants.David B. Resnik - 2018 - Health Care Analysis 26 (1):66-80.
    The idea that research with human participants should benefit society has become firmly entrenched in various regulations, policies, and guidelines, but there has been little in-depth analysis of this ethical principle in the bioethics literature. In this paper, I distinguish between strong and weak versions and the social benefits principle and examine six arguments for it. I argue that while it is always ethically desirable for research with human subjects to offer important benefits to society, the reasonable expectation of substantial (...)
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  • John Ziman and post-academic science: consensibility, consensus, and reliability.Verusca Moss Simões dos Reis & Antonio Augusto Passos Videira - 2013 - Scientiae Studia 11 (3):583-611.
    Este artigo tem como objetivo discutir algumas das teses centrais do físico teórico e epistemólogo John Michael Ziman relativas à dimensão social da ciência. Ziman sustenta que, para um melhor entendimento das mudanças ocorridas na prática científica contemporânea, sobretudo das consequências geradas nas últimas décadas pelo que ele denominou de "ciência pós-acadêmica", é necessária uma abordagem que inclua aspectos não somente filosóficos, mas também sociológicos e históricos. Segundo Ziman, a supervalorização, na ciência pós-acadêmica, de valores ligados a uma cultura gerencial (...)
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  • The Shift in Academic Quality Control.Søren Barlebo Rasmussen & Sven Hemlin - 2006 - Science, Technology, and Human Values 31 (2):173-198.
    Quality control is an important and integrated part of the scientific system. However, developments in science and society are changing quality control into quality monitoring. New, virtual, and fluid organizational forms are emerging. Common boundaries are seen as being broken down as, for example, in the “triple helix” and the “mode 2” concepts. The stakeholders in science are showing an interest in being more involved in science. They want their evaluation criteria to be used, and they want evaluations to be (...)
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  • Freedom, Democracy and Science.Dhruv Raina - 2023 - Paragrana: Internationale Zeitschrift für Historische Anthropologie 32 (1):153-167.
    The development of democracy and the development of science are not in a simple causal relationship. Rather, history shows that science can also develop in non-democratic and autocratic societies. Given the production conditions of scientific knowledge, the natural and technical sciences, for example, need well-equipped laboratories and technical equipment. Scientists in many disciplines can only do their work in institutions that provide them with access to the facilities necessary for their research. The freedom of scientific research and its protection from (...)
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  • Elias G. Carayannis and David F. J. Campbell, Mode 3 Knowledge Production in Quadruple Helix Innovation Systems: 21st-Century Democracy, Innovation, and Entrepreneurship for Development. [REVIEW]Barbara Prainsack - 2012 - Minerva 50 (1):139-142.
    Elias G. Carayannis and David F. J. Campbell, Mode 3 Knowledge Production in Quadruple Helix Innovation Systems: 21st-Century Democracy, Innovation, and Entrepreneurship for Development Content Type Journal Article Category Book Review Pages 139-142 DOI 10.1007/s11024-012-9194-6 Authors Barbara Prainsack, Department of Sociology and Communications, Brunel University, Kingston Lane, Uxbridge, Middlesex UB8 3PH, UK Journal Minerva Online ISSN 1573-1871 Print ISSN 0026-4695 Journal Volume Volume 50 Journal Issue Volume 50, Number 1.
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  • The Unbearable Shallow Understanding of Deep Learning.Alessio Plebe & Giorgio Grasso - 2019 - Minds and Machines 29 (4):515-553.
    This paper analyzes the rapid and unexpected rise of deep learning within Artificial Intelligence and its applications. It tackles the possible reasons for this remarkable success, providing candidate paths towards a satisfactory explanation of why it works so well, at least in some domains. A historical account is given for the ups and downs, which have characterized neural networks research and its evolution from “shallow” to “deep” learning architectures. A precise account of “success” is given, in order to sieve out (...)
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  • What Stimulates Researchers to Make Their Research Usable? Towards an ‘Openness’ Approach.Julia Olmos-Peñuela, Paul Benneworth & Elena Castro-Martínez - 2015 - Minerva 53 (4):381-410.
    Ambiguity surrounding the effect of external engagement on academic research has raised questions about what motivates researchers to collaborate with third parties. We argue that what matters for society is research that can be absorbed by users. We define ‘openness’ as a willingness by researchers to make research more usable by external partners by responding to external influences in their own research practices. We ask what kinds of characteristics define those researchers who are more ‘open’ to creating usable knowledge. Our (...)
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  • Formas de autonomia da ciência.Marcos Barbosa de Oliveira - 2011 - Scientiae Studia 9 (3):527-561.
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  • God nanoetikk – god nanoteknologiutvikling.Rune Nydal & Roger Strand - 2008 - Etikk I Praksis - Nordic Journal of Applied Ethics 2 (2):33-51.
    Trenger vi en nanoetikk? Spørsmålet undersøkes ofte gjennom analyser av hva som er spesifikt nytt med nanoteknologi som skulle rettferdiggjøre etableringen av et eget nanoetikkfelt. Artikkelen knytter ikke det nye til teknologiens produkter som sådan, men til det at nanoteknologien oppstår som et nytt og ekspansivt satsningsfelt i en tid med enighet om at etikkrefleksjonen må komme inn på et tidlig tidspunkt. Nanoetikken synliggjør generelle utfordringer for den profesjonaliserte anvendte etikk ettersom nanoetikken etterspørres forut for at feltet kan sies å (...)
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  • Why is integration so difficult? Shifting roles of ethics and three idioms for thinking about science, technology and society.Rune Nydal - 2015 - Etikk I Praksis - Nordic Journal of Applied Ethics 1 (1):21-36.
    Contemporary science and technology research are now expected to become more responsible through collaboration with social scientists and scholars from the humanities. This paper suggests a frame explaining why such current calls for ‘integration’ are seen as appropriate across sectors even though there are no shared understanding of how proper integration is to take place. The call for integration is understood as a response to shifting roles of ethics within research structures following shifts in modes of knowledge production. Integration is (...)
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  • Invisible origins of nanotechnology: Herbert gleiter, materials science, and questions of prestige.Alfred Nordmann - 2009 - Perspectives on Science 17 (2):pp. 123-143.
    Herbert Gleiter promoted the development of nanostructured materials on a variety of levels. In 1981 already, he formulated research visions and produced experimental as well as theoretical results. Still he is known only to a small community of materials scientists. That this is so is itself a telling feature of the imagined community of nanoscale research. After establishing the plausibility of the claim that Herbert Gleiter provided a major impetus, a second step will show just how deeply Gleiter shaped (and (...)
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  • 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 fact that nano (...)
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  • We have never been ELSI researchers – there is no need for a post-ELSI shift.Anne Ingeborg Myhr, Rune Nydal & Bjørn Kåre Myskja - 2014 - Life Sciences, Society and Policy 10 (1):1-17.
    This article criticizes recent suggestions that the current ELSI research field should accommodate a new direction towards a ‘post-ELSI’ agenda. Post-ELSI research seeks to avoid the modernist division of responsibility for technical and social issues said to characterize ELSI research. Collaboration and integration are consequently the key terms of post-ELSI strategies that are to distinguish it from ELSI strategies. We argue that this call for a new direction relies on an inadequate generalized analysis of ELSI research as modern that will (...)
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  • Going Public: Good Scientific Conduct.Gitte Meyer & Peter Sandøe - 2012 - Science and Engineering Ethics 18 (2):173-197.
    The paper addresses issues of scientific conduct regarding relations between science and the media, relations between scientists and journalists, and attitudes towards the public at large. In the large and increasing body of literature on scientific conduct and misconduct, these issues seem underexposed as ethical challenges. Consequently, individual scientists here tend to be left alone with problems and dilemmas, with no guidance for good conduct. Ideas are presented about how to make up for this omission. Using a practical, ethical approach, (...)
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  • Scientific Ethics: A New Approach.Marcello Menapace - 2019 - Science and Engineering Ethics 25 (4):1193-1216.
    Science is an activity of the human intellect and as such has ethical implications that should be reviewed and taken into account. Although science and ethics have conventionally been considered different, it is herewith proposed that they are essentially similar. The proposal set henceforth is to create a new ethics rooted in science: scientific ethics. Science has firm axiological foundations and searches for truth and knowledge. Hence, science cannot be value neutral. Looking at standard scientific principles, it is possible to (...)
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  • Methodological dilemmas and emotion in science.James W. McAllister - 2014 - Synthese 191 (13):3143-3158.
    Inconsistencies in science take several forms. Some occur at the level of substantive claims about the world. Others occur at the level of methodology, and take the form of dilemmas, or cases of conflicting epistemic or cognitive values. In this article, I discuss how methodological dilemmas arise. I then consider how scientists resolve them. There are strong grounds for thinking that emotional judgement plays an important role in resolving methodological dilemmas. Lastly, I discuss whether and under what conditions this reliance (...)
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  • On the status and role of instrumental images in contemporary science: some epistemological issues.Hermínio Martins - 2014 - Scientiae Studia 12 (SPE):11-36.
    The controversy over imageless thought versus picture thinking , with the recent reconsideration of model-based reasoning in the physical sciences is briefly examined. The main focus of the article is on the role of instrumentally elicited images in the sciences, especially in the physical sciences, with special reference to optics, experimental particle physics and observational astronomy, against the background of the civilization of digital images, though to some degree every scientific discipline is implicated. Imaging, today chiefly in the mode of (...)
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  • Get ready for technoscience: the constant burden of evaluation and domination.Pablo Rubén Mariconda - 2012 - Scientiae Studia 10 (SPE):151-162.
    Technoscientific research, a kind of scientific research conducted within the decontextualized approach (DA), uses advanced technology to produce instruments, experimental objects, and new objects and structures, that enable us to gain knowledge of states of affairs of novel domains, especially knowledge about new possibilities of what we can do and make, with the horizons of practical, industrial, medical or military innovation, and economic growth and competition, never far removed from view. The legitimacy of technoscientific innovations can be appraised only in (...)
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  • Does Post-truth Expand or Restrict Political Choice? Politics, Planning, and Expertise in a Post-truth Environment.William T. Lynch - 2022 - Analyse & Kritik 44 (1):137-159.
    Steve Fuller has replied to my critique of his endorsement of a post-truth epistemology. I trace the divergence in our approach to social epistemology by examining our distinct responses to the principle of symmetry in the sociology of scientific knowledge. Fuller has extended the concept of symmetry and challenged the field to embrace a post-truth condition that flattens the difference between experts and the public. By contrast, I have criticized the concept of symmetry for policing the field to rule ideology (...)
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  • The Public Understanding of Science—A Rhetorical Invention.Simon Locke - 2002 - Science, Technology, and Human Values 27 (1):87-111.
    This article contributes to the development of a rhetorical approach to the public understanding of science or science literacy. It is argued that rhetoric promises an alternative approach to deficit models that treat people as faulty scientists. Some tensions in the relevant rhetorical literature need resolution. These center on the application to science of an Aristotelian conception of rhetorical reasoning as enthymematic, without breaking from the Platonic/aristotelian division between technical and public spheres. The former opens science to the potential of (...)
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  • Unable to resist: Researchers’ responses to research assessment in the Czech Republic.Marcela Linkova - 2014 - Human Affairs 24 (1):78-88.
    Instituted in 2004, the Czech Republic research assessment has since changed on an annual basis. In this paper I examine how researchers in the Czech Republic negotiate research assessment. Using the concept of epistemic living spaces, I first set in context the Czech research assessment system and second explore the micro-politics of resistance in which researchers engage in their daily conduct. Empirically, I draw on individual and group interviews carried out with Czech researchers in the humanities, social sciences and natural (...)
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  • Citation counts for research evaluation: standards of good practice for analyzing bibliometric data and presenting and interpreting results.Lutz Bornmann, Rüdiger Mutz, Christoph Neuhaus & Hans-Dieter Daniel - 2008 - Ethics in Science and Environmental Politics 8 (1):93-102.
  • Science, Respect for Nature, and Human Well-Being: Democratic Values and the Responsibilities of Scientists Today.Hugh Lacey - 2016 - Foundations of Science 21 (1):51-67.
    The central question addressed is: How should scientific research be conducted so as to ensure that nature is respected and the well being of everyone everywhere enhanced? After pointing to the importance of methodological pluralism for an acceptable answer and to obstacles posed by characterizing scientific methodology too narrowly, which are reinforced by the ‘commercial-scientific ethos’, two additional questions are considered: How might research, conducted in this way, have impact on—and depend on—strengthening democratic values and practices? And: What is thereby (...)
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  • Deliberating responsibility: a collective contribution by the C’Nano IdF Nanoscience & Society Office.Stéphanie Lacour, Sacha Loeve, Brice Laurent, Virginie Albe, Aurélie Delemarle, Bernard Bartenlian & Sophie Lanone - 2015 - Foundations of Chemistry 17 (3):225-245.
    The very existence of explicit techno-scientific controversies in the “nano” arena is often denied on behalf of a conception of science, risks, public engagement and responsibility which borders on a disembodied idealism and merits at least serious discussion. The recurrence of this view prompted us to clarify our position regarding our common field of research, in order to avoid being trapped in the seemingly clear divide between the universal and neutral pursuit of pure science, on the one hand, and on (...)
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  • The Legitimation and Dissemination Processes of the Innovation System Approach: The Case of the Canadian and Québec Science and Technology Policy.Suzanne Laberge & Mathieu Albert - 2007 - Science, Technology, and Human Values 32 (2):221-249.
    A new approach in science policy making named the innovation system approach has been developed during the past three decades. Its primary goal is to better understand the processes through which scientific knowledge is produced and transferred to businesses to improve their competitiveness and develop national and/or regional economies. This approach has been adopted as an analytical framework and guideline for science policy making by numerous public sector organizations around the world. Using a case study of the Canadian and Québec (...)
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