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  1. The scope of hermeneutics in natural science.Patrick A. Heelan - 1998 - Studies in History and Philosophy of Science Part A 29 (2):273-298.
    Hermeneutics, or interpretation, is concerned with the generation, transmission, and acceptance of meaning within the lifeworld, and was the original method of the human sciences stemming, from F. Schleiermacher and W. Dilthey. The `hermeneutic philosophy' refers mostly to Heidegger. This paper addresses natural science from the perspective of Heidegger's analysis of meaning and interpretation. Its purpose is to incorporate into the philosophy of science those aspects of historicality, culture, and tradition that are absent from the traditional analysis of theory and (...)
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  • Forschung als innovatives System: Entwurf einer integrativen Sehweise, die Modelle erstellt zur Beschreibung und Kritik von Forschungsprozessen.Håkan Törnebohm & Gerard Radnitzky - 1971 - Zeitschrift Für Allgemeine Wissenschaftstheorie 2 (2):239-290.
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  • Prinzipielle Problemstellungen der Forschungspolitik.Gerard Radnitzky - 1976 - Zeitschrift Für Allgemeine Wissenschaftstheorie 7 (2):367-403.
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  • The genesis of 'scientific community'.Struan Jacobs - 2002 - Social Epistemology 16 (2):157-168.
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  • Putting Sociology First—Reconsidering the Role of the Social in ‘Nature of Science’ Education.Gábor Á Zemplén - 2009 - Science & Education 18 (5):525-559.
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  • Reflexing Complexity.Brian Wynne - 2005 - Theory, Culture and Society 22 (5):67-94.
    Dominant social sciences approaches to complexity suggest that awareness of complexity in late-modern society comes from various recent scientific insights. By examining today’s plant and human genomics sciences, I question this from both ends: first suggesting that typical public culture was already aware of particular salient forms of complexity, such as limits to predictive knowledge ; second, showing how up-to-date genomics science expresses both complexity and its opposites, predictive determinism and reductionism, as coexistent representations of nature and scientific knowledge. I (...)
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  • Theories, theoretical models, truth.Ryszard Wójcicki - 1995 - Foundations of Science 1 (4):337-406.
    This paper was written with two aims in mind. A large part of it is just an exposition of Tarski's theory of truth. Philosophers do not agree on how Tarski's theory is related to their investigations. Some of them doubt whether that theory has any relevance to philosophical issues and in particular whether it can be applied in dealing with the problems of philosophy (theory) of science.In this paper I argue that Tarski's chief concern was the following question. Suppose a (...)
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  • Curriculum Design and Epistemic Ascent.Christopher Winch - 2013 - Journal of Philosophy of Education 47 (1):128-146.
    Three kinds of knowledge usually recognised by epistemologists are identified and their relevance for curriculum design is discussed. These are: propositional knowledge, know-how and knowledge by acquaintance. The inferential nature of propositional knowledge is argued for and it is suggested that propositional knowledge in fact presupposes the ability to know how to make appropriate inferences within a body of knowledge, whether systematic or unsystematic. This thesis is developed along lines suggested in the earlier work of Paul Hirst. The different kinds (...)
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  • Assessing Professional Know‐How.Christopher Winch - 2016 - Journal of Philosophy of Education 50 (4):554-572.
    This article considers how professional knowledge should be assessed. It is maintained that the assessment of professional know-how raises distinctive issues from the assessment of know-how more generally. Intellectualist arguments which suggest that someone's giving an account of how to F should suffice for attributing to them knowledge of how to F are set out. The arguments fail to show that there is no necessary distinction between two kinds of know-how, namely the ability to F and knowing that w is (...)
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  • Toward an evolutionary ecology of meaning.Jeffrey S. Wicken - 1989 - Zygon 24 (2):153-184.
    I will discuss some of the implications of the ongoing Darwinian revolution for theology as a constructor and interpreter of human meaning. Focus will be directed toward the following issues: How should we best understand ourselves in the new, evolutionary cosmos? What are the problems with the kind of genetic reductionism espoused by neo‐Darwinism? How are those problems resolved by the “relational” understanding of life made available by thermodynamics and ecology? How do we generate meaning‐structures in this relationally‐constituted cosmos? Finally, (...)
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  • AI — and everything else.Godela Unseld - 1992 - AI and Society 6 (3):280-287.
    One of the most common misunderstandings in dealing with the world is the notion that you can do it piece-meal, that in understanding and shaping one part you can safely ignore the rest. One of the oldest wisdoms is the insight that in reality everything is knitted together, that to meddle with one part is always to meddle with the whole. AI as a social phenomenon is a good example for both findings. In trying to understand this new event in (...)
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  • Forschung AlS innovatives system: Entwurf einer integrativen sehweise, die modelle erstellt zur beschreibung und kritik Von forschungsprozessen.Håkan Törnebohm & Gerard Radnitzky - 1971 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 2 (2):239-290.
    Summary Research is regarded as transformations of complexes composed of knowledge, problems and (hardware and software) instruments. Sequences of such transformations are embedded in human settings in which they are given directions. Problems and the work of solving them are divided into empirical and theoretical ones. In an advanced science like physics empirical and theoretical work are interrelated by means of flows of problem-generating information. Empirical and theoretical researchers work also on problems of their own making. Residuals of knowledge which (...)
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  • Objectivity and the language of science.K. Sundaram - 1985 - Zeitschrift Für Allgemeine Wissenschaftstheorie 16 (2):334-340.
    Die Arbeit betrachtet die verschiedenen Ansichten, die über wissenschaftliche Objektivität bestehen: Etwa als Charakteristik einer gesamtwissenschaftlichen Praxis, als Gesamtfortschritt, der durch die Struktur der Institution bestimmt ist, oder als etwas, was auf subjektivem Glauben, subjektivem Verfahren und kollektiven Meinungen begründet ist. Sie betrachtet die Objektivität der Wissenschaft auch in bezug auf den Sinn wissenschaftlicher Behauptungen und bezüglich des allgemeinen erkenntnistheoretischen Hintergrundes. Mit Blick auf einige neuere Thesen innerhalb der Quantenphysik und in der Sprache der Quantenphysik versucht die Arbeit herauszustellen, daß (...)
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  • Metaphysical Realism and Objectivity: Some Theoretical Reflections.Aldo Stella & Giancarlo Ianulardo - 2018 - Philosophia 46 (4):1001-1021.
    In this paper we aim to show an intrinsic contradiction of contemporary Metaphysical Realism by focusing on the relation between the subject and the object. Metaphysical Realism considers facts and objects as being empirical, and therefore they are considered in relation to the subject, while at the same time facts are assumed to belong to an autonomous and independent reality. However, if a real object is considered to be independent from the subject, once it enters in a relation with the (...)
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  • On refusing to be an epistemologically black box: Instruments in chemical kinetics during the 1920s and '30s.Jeffry L. Ramsey - 1991 - Studies in History and Philosophy of Science Part A 23 (2):283-304.
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  • Towards a system philosophy of scientific research.Gerard Radnitzky - 1974 - Philosophy of the Social Sciences 4 (3):369-398.
    Can research be studied in a way that is neither logical reconstruction nor empirical psychology or sociology of science? In contemporary philosophy of science this is usually denied—in spite of the recent 'paradigm shift' there. A system-philosophy approach in theory of research is outlined by means of some models : a research enterprise is viewed as a productive, innovative system, the research process as a transformation of complexes of knowledge-problems-instruments (software and hard ware). The direction this development takes is guided (...)
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  • Prinzipielle problemstellungen der forschungspolitik.Gerard Radnitzky - 1976 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 7 (2):367-403.
    Summary Research consists of choosing a problem, proposing and testing problem solutions, and presenting the results. In its central moment — conjectures and testing — science must be autonomous in order to be successful. Securing this autonomy by organizational means is one of the tasks of research policy. Research needs to justify itself only when the researcher makes a claim to the resources of others. To discuss problems of justification of governmental support, it is imperative to distinguish between basic and (...)
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  • European Urban Traditions: An Anthropologist’s View on Polis, Urbs_, and _Civitas.Giuliana B. Prato - 2016 - Diogenes 63 (3-4):9-19.
    The argument developed in this article originates from the reflection that what constitutes a city or what is meant by urban are differently understood in different parts of the world and by different scholars. Thus, I first address the problematic of incommensurability. I argue that this key issue in the philosophy of science is central to how the debate on urban anthropology has developed. Then I ask whether this problematic extends to cross-disciplinary debate among the contemporary social sciences and what (...)
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  • The doctrine of creation and modern science.Wolfhart Pannenberg - 1988 - Zygon 23 (1):3-21.
    In contrast to Christian theology that has ignored science, this essay suggests that a credible doctrine of God as creator must take into account scientific understandings of the world. The introduction of the principle of inertia into seventeenth‐century science and philosophy helped change the traditional idea of God as creator (which included divine conservation and governance) into a deist concept of God. To recapture the idea that God continually creates, it is important to affirm the contingency of the world as (...)
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  • On the centrality of human value.Teresa Carla Oliveira & Stuart Holland - 2012 - Journal of Economic Methodology 19 (2):121 - 141.
    The financial crash of 2008 following the selling of fictitious derivatives was a crisis of both rationality and values whose aftermath has thrown the legitimation of deregulated markets, and governments, into question. This paper critiques the Becker metaphor of human capital and submits that human value is central to and the fulcrum of both economic and social values. It illustrates that Hume and Adam Smith directly countered the Hobbesian hypothesis that human nature is based only on self-interest, distinguishes market values (...)
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  • The computational metaphor and environmentalism.John Nolan - 1992 - AI and Society 6 (1):50-61.
    The Computational Metaphor is an extremely influential notion, and more than any other trend has given rise to the field of Cognitive Science. Environmentalism is at present better formalised as a political movement than as a scientific paradigm, despite significant research by Gibson and his followers. This article attempts to address the difficult problem of synthesising these two apparently antagonistic research paradigms.
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  • Alien Reasoning: Is a Major Change in Scientific Research Underway?Thomas Nickles - 2020 - Topoi 39 (4):901-914.
    Are we entering a major new phase of modern science, one in which our standard, human modes of reasoning and understanding, including heuristics, have decreasing value? The new methods challenge human intelligibility. The digital revolution inspires such claims, but they are not new. During several historical periods, scientific progress has challenged traditional concepts of reasoning and rationality, intelligence and intelligibility, explanation and knowledge. The increasing intelligence of machine learning and networking is a deliberately sought, somewhat alien intelligence. As such, it (...)
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  • Leon Cooper’s Perspective on Teaching Science: An Interview Study.Mansoor Niaz, Stephen Klassen, Barbara McMillan & Don Metz - 2010 - Science & Education 19 (1):39-54.
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  • An appraisal of the controversial nature of the oil drop experiment: Is closure possible?Mansoor Niaz - 2005 - British Journal for the Philosophy of Science 56 (4):681-702.
    Acceptance of the quantization of the elementary electrical charge was preceded by a bitter dispute between Robert Millikan and Felix Ehrenhaft, which lasted for many years. Both Millikan and Ehrenhaft obtained very similar experimental results and yet Millikan was led to formulate the elementary electrical charge and Ehrenhaft to fractional charges. There have been four major attempts to reconstruct the historical events that led to the controversy: Holton ; Franklin ; Barnes et al. ; Goodstein. So we have the controversy (...)
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  • Models in the Theology of Avery Dulles A Critical Analysis.Terrence Merrigan - 1993 - Bijdragen 54 (2):141-161.
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  • Teaching the Philosophical and Worldview Components of Science.Michael R. Matthews - 2009 - Science & Education 18 (6-7):697-728.
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  • Why Is There No Hermeneutics of Natural Sciences? Some Preliminary Theses.Gyorgy Markus - 1987 - Science in Context 1 (1):5-51.
    The ArgumentContemporary natural sciences succeed remarkably well in ensuring a relatively continuous transmission of their cognitively relevant traditions and in creating a widely shared background consensus among their practitioners – hermeneutical ends seemingly achieved without hermeneutical awareness or explicitly acquired hermeneutical skills.It is a historically specific – emerging only in the nineteenth century – cultural organization of the Author-Text-Reader relation which endows them with such an ease of hermeneutical achievements: an institutionally fixed form of textual and intertextual practices, normatively posited (...)
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  • The ghost of Wittgenstein: Forms of life, scientific method, and cultural critique.William T. Lynch - 2005 - Philosophy of the Social Sciences 35 (2):139-174.
    In developing an "internal" sociology of science, the sociology of scientific knowledge drew on Wittgenstein’s later philosophy to reinterpret traditional epistemological topics in sociological terms. By construing scientific reasoning as rule following within a collective, sociologists David Bloor and Harry Collins effectively blocked outside criticism of a scientific field, whether scientific, philosophical, or political. Ethnomethodologist Michael Lynch developed an alternative, Wittgensteinian reading that similarly blocked philosophical or political critique, while also disallowing analytical appeals to historical or institutional contexts. I criticize (...)
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  • Laboratory Space and the Technological Complex: An Investigation of Topical Contextures.Michael Lynch - 1991 - Science in Context 4 (1):51-78.
    The ArgumentThere can be no doubt about the moral and epistemological significance of what Shapin calls the “physical place” of the scientific laboratory. The physical place is defined by the locales, barriers, ports of entry, and lines of sight that bound the laboratory and separate it from other urban and architectural environments. Shapin's discussion of the emergence of the scientific laboratory in seventeenth-century England provides a convincing demonstration that credible knowledge is situated at an intersection between physical locales and social (...)
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  • The Physical Sciences and the Romantic Movement.David M. Knight - 1970 - History of Science 9 (1):54-75.
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  • Michael Polanyi and jewish identity.Paul Knepper - 2005 - Philosophy of the Social Sciences 35 (3):263-293.
    s Jewish identity contributed to his philosophical outlook. His life in a Hungarian-acculturated, nonobservant Jewish family in the last decades of the Austro-Hungarian Empire; his experience as a Jew emigrating from Hitler’s Germany; and his thoughts about Zionism informed his theory of knowledge. During the late 1930s and 1940s, he worked to reconcile his Jewish identity with his commitments to Christianity, and this tension contributed to his thinking about the nature of scientific discovery. The malapropism baptized Jew characterizes the scientist (...)
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  • Scientific discovery: A philosophical survey.Aharon Kantorovich - 1994 - Philosophia 23 (1-4):3-23.
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  • Personality and epistemology: Cognitive social learning theory as a philosophy of science.James W. Jones - 1989 - Zygon 24 (1):23-38.
    . Implicit in the cognitive social learning model of personality as articulated by Walter Mischel, Albert Bandura, and others, is an epistemology which emphasizes the activity of the mind in the construction of knowledge. Using Mischel's five person variables as an outline, the epistemic implications of this model of personality are developed and then illustrated by application to William James's typology of the religious personality and to the current debate over hermeneutic and empirical approaches to studying human behavior. This approach (...)
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  • Towards an evolutionary pragmatics of science.Asher Idan & Aharon Kantorovich - 1985 - Zeitschrift Für Allgemeine Wissenschaftstheorie 16 (1):47-66.
    Fundamentismus und Skeptizismus-Anarchismus sind zwei entgegengesetzte Positionen in der traditionellen Erkenntnistheorie und in der modernen Wissenschaftstheorie. Zwischen ihnen gibt es einen dritten Standpunkt, den Evolutionismus. Beispiele sind zwei neuere Arbeiten von Putnam und Stegmüller . Im Gegensatz zum logisch-statischen Fundamentismus berücksichtigt der Evolutionismus auch dynamische und naturalistische Ansätze. Stegmüller folgend entlehnen wir in der vorliegenden Untersuchung aus der Sprachphilosophie pragmatische Gesichtspunkte, um die logische Syntax und Semantik, die Werkzeuge des Fundamentismus, zu ersetzen. Wir zeigen die Kraft der Pragmatik bei der (...)
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  • Wittgenstein and Ant-watching.Deborah M. Gordon - 1992 - Biology and Philosophy 7 (1):13-25.
    Research in animal behavior begins by identifying what animals are doing. In the course of observation, the observer comes to see animals as performing a particular activity. How does this process work? How cn we be certain that behavior is identified correctly? Wittgenstein offers an approach to these questions. looking at the uses of certainly rather than attempting to find rules that guarantee it. Here two stages in research are distinguished: first, watching animals, and second, reporting the results to other (...)
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  • Tacit Beginnings Towards a Model of Scientific Thinking.Rory J. Glass - 2013 - Science & Education 22 (10):2709-2725.
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  • Nature, reality, and the sacred: A meditation in science and religion.Langdon Gilkey - 1989 - Zygon 24 (3):283-298.
    . Many scientists now recognize the participation of the knower in the known. Not many admit, however, that scientists rely upon intuitions about reality commonly attributed to philosophy and religion: that sensory experience relates us to an order in nature congruent with our minds and of value congruent with our fulfilled being. Nature has disclosed itself to scientists—albeit fragmentarily—as power, life, order, and unity or meaning. In science these remain limit questions, raised but unanswered. In the unity of these qualities, (...)
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  • Science, Worldviews, and Education.Hugh G. Gauch - 2009 - Science & Education 18 (6-7):667-695.
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  • The boat/helmsman.Stephen Gage - 2007 - Technoetic Arts 5 (1):15-24.
    The founding metaphor of cybernetics is re-examined. The helmsman is part of a body- object hybrid that is terrain-dependent. The available palette of behaviours can only be understood in this way. The boat/helmsman hybrid demonstrates moment-to-moment feedback characteristics that include a form of damping which is based on the hybrid's previous history. The moment-to-moment goal is a direction over water, not a destination. End goal navigation is based on prediction and depends on a map and a plan. The boat/helmsman metaphor (...)
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  • Rehabilitating responsibility.Gerry Gaden - 1990 - Journal of Philosophy of Education 24 (1):27–39.
    Gerry Gaden; Rehabilitating Responsibility, Journal of Philosophy of Education, Volume 24, Issue 1, 30 May 2006, Pages 27–38, https://doi.org/10.1111/j.1467-975.
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  • Into Terra incognita: Charting beyond Peter Harrison's the territories of science and religion.Michael Fuller - 2016 - Zygon 51 (3):729-741.
    Peter Harrison's The Territories of Science and Religion throws down a serious challenge to advocates of dialogue as the primary means of engagement between science and religion. This article accepts the validity of this challenge and looks at four possible responses to it. The first—a return to the past—is rejected. The remaining three—exploring new epistemic frameworks for the encounter of science and religion, broadening out the engagement beyond the context of the physical sciences and Western culture, and looking at ways (...)
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  • Climate Change, Laudato Si', Creation Spirituality, and the Nobility of the scientist's Vocation.Matthew Fox - 2018 - Zygon 53 (2):586-612.
    This exploration into spirituality and climate change employs the “four paths” of the creation spirituality tradition. The author recognizes those paths in the rich teachings of Pope Francis’s encyclical, Laudato Si' and applies them in considering the nobility of the scientist's vocation. Premodern thinkers often resisted any split between science and religion. The author then lays out the basic archetypes for recognizing the sacredness of creation, namely, the Cosmic Christ (Christianity); the Buddha Nature (Buddhism); the Image of God (Judaism); the (...)
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  • Kuhn's Structural Revolutions and the Development of Christian Doctrine: A Systematic Discussion.Edwin El-Mahassni - 2018 - Heythrop Journal 59 (3):509-522.
    In 1845, John Henry Cardinal Newman wrote a treatise describing the development of Christian doctrine. Since then, his ideas have been challenged, in particular by Protestant theologians who have argued that the development of doctrine does not progress in either a smooth or linear path. In the philosophy of science, Thomas Kuhn's The Structure of Scientific Revolutions has challenged the idea that science is purely driven by objective and rational motives. In this paper, Kuhn's ideas are applied to the development (...)
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  • Hermeneutics as an approach to science: Part II.Martin Eger - 1993 - Science & Education 2 (4):303-328.
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  • Hermeneutics and science education: An introduction.Martin Eger - 1992 - Science & Education 1 (4):337-348.
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  • Alternative interpretations, history, and experiment: Reply to Cushing, Crease, Bevilacqua, and Giannetto.Martin Eger - 1995 - Science & Education 4 (2):173-188.
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  • A tale of two controversies: Dissonance in the theory and practice of rationality.Martin Eger - 1988 - Zygon 23 (3):291-325.
    The relation between rationality in science and rationality in moral discourse is of interest to philosophers and sociologists of science, to educators and moral philosophers. Apparently conflicting conceptions of rationality can be detected at the core of two current socio-educational controversies: the creationievolution controversy and that concerning “moral education.” This paper takes as its starting point the recorded views of participants in these controversies; exhibits the contradictions and their effect on the public; relates these contradictions to developments in the philosophy (...)
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  • Reviews : Steve Fuller, Science, Buckingham, UK: Open University Press, and Minneapolis, MN: University of Minnesota Press, 1997.Val Dusek - 1998 - History of the Human Sciences 11 (2):132-138.
    Fuller's account of religious parallels to scientific and science studies disputes, non-Western science, Merton on values of science.
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  • Science and pseudo-science: The case of creationism.R. G. A. Dolby - 1987 - Zygon 22 (2):195-212.
    The paper reviews criteria which have been used to distinguish science from nonscience and from pseudo–science, and it examines the extent to which they can usefully be applied to “creation science.” These criteria do not force a clear decision, especially as creation science resembles important eighteenth–century forms of orthodox science. Nevertheless, the proponents of creation science may be accused of pious fraud in failing to concede in their political battles that their “science” is tentative and tendentious and will continue to (...)
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  • Graphic Understanding: Instruments and Interpretation in Robert Hooke's Micrographia.Michael Aaron Dennis - 1989 - Science in Context 3 (2):309-364.
    The ArugmentThis essay answers a single question: what was Robert Hooke, the Royal Society's curator of experiments, doing in his well-known 1665 work,Micrographia?Hooke was articulating a “universal cure of the mind” capable of bringing about a “reformation in Philosophy,” a change in philosophy's interpretive practices and organization. The work explicated the interpretive and political foundations for a community of optical instrument users coextensive with the struggling Royal Society. Standard observational practices would overcome the problem of using nonstandard instruments, while inherent (...)
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