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  1. From FRA to RFN, or How the Family Resemblance Approach Can Be Transformed for Science Curriculum Analysis on Nature of Science.Ebru Kaya & Sibel Erduran - 2016 - Science & Education 25 (9-10):1115-1133.
    The inclusion of Nature of Science in the science curriculum has been advocated around the world for several decades. One way of defining NOS is related to the family resemblance approach. The family resemblance idea was originally described by Wittgenstein. Subsequently, philosophers and educators have applied Wittgenstein’s idea to problems of their own disciplines. For example, Irzik and Nola adapted Wittgenstein’s generic definition of the family resemblance idea to NOS, while Erduran and Dagher reconceptualized Irzik and Nola’s FRA-to-NOS by synthesizing (...)
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  • Teaching With and About Nature of Science, and Science Teacher Knowledge Domains.Fouad Abd-El-Khalick - 2012 - Science & Education 22 (9):2087-2107.
    The ubiquitous goals of helping precollege students develop informed conceptions of nature of science and experience inquiry learning environments that progressively approximate authentic scientific practice have been long-standing and central aims of science education reforms around the globe. However, the realization of these goals continues to elude the science education community partly because of a persistent, albeit not empirically supported, coupling of the two goals in the form of ‘teaching about NOS with inquiry’. In this context, the present paper aims, (...)
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  • Cultural Boundaries of Science: Credibility on the Line.Thomas F. Gieryn - 1999 - University of Chicago Press.
    Why is science so credible? Usual answers center on scientists' objective methods or their powerful instruments. In his new book, Thomas Gieryn argues that a better explanation for the cultural authority of science lies downstream, when scientific claims leave laboratories and enter courtrooms, boardrooms, and living rooms. On such occasions, we use "maps" to decide who to believe—cultural maps demarcating "science" from pseudoscience, ideology, faith, or nonsense. Gieryn looks at episodes of boundary-work: Was phrenology good science? How about cold fusion? (...)
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  • New Directions for Nature of Science Research.Gürol Irzik & Robert Nola - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 999-1021.
    The idea of family resemblance, when applied to science, can provide a powerful account of the nature of science (NOS). In this chapter we develop such an account by taking into consideration the consensus on NOS that emerged in the science education literature in the last decade or so. According to the family resemblance approach, the nature of science can be systematically and comprehensively characterised in terms of a number of science categories which exhibit strong similarities and overlaps amongst diverse (...)
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  • Nature of Science in the Science Curriculum: Origin, Development, Implications and Shifting Emphases.Derek Hodson - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 911-970.
    This chapter briefly traces the history of nature of science (NOS) orientations in science education, notes some differences in the way NOS is defined and in arguments used to justify its inclusion in the school science curriculum and acknowledges the centrality of NOS to recent curriculum and research initiatives based on scientific argumentation, modelling and consideration of socioscientific issues (SSI). Some critical scrutiny is directed towards the so-called consensus view of NOS and whether it adequately and appropriately represents the diversity (...)
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  • (6 other versions)The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
    Thomas S. Kuhn's classic book is now available with a new index.
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  • The nature of science and instructional practice: Making the unnatural natural.Fouad Abd-El-Khalick, Randy L. Bell & Norman G. Lederman - 1998 - Science Education 82 (4):417-436.
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  • Teaching and assessing the nature of science: An introduction.Michael P. Clough & Joanne K. Olson - 2008 - Science & Education 17 (2-3):143-145.
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  • The nature of science in science education: An introduction.William F. Mccomas, Hiya Almazroa & Michael P. Clough - 1998 - Science & Education 7 (6):511-532.
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  • The Structure of Scientific Revolutions.David Bohm - 1964 - Philosophical Quarterly 14 (57):377-379.
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  • The Minnesota Case Study Collection: New Historical Inquiry Case Studies for Nature of Science Education.Douglas Allchin - 2012 - Science & Education 21 (9):1263-1281.
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  • Two Views About Explicitly Teaching Nature of Science.Richard A. Duschl & Richard Grandy - 2013 - Science & Education 22 (9):2109-2139.
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  • Turning Crisis into Opportunity: Nature of Science and Scientific Inquiry as Illustrated in the Scientific Research on Severe Acute Respiratory Syndrome.Siu Ling Wong, Jenny Kwan, Derek Hodson & Benny Hin Wai Yung - 2009 - Science & Education 18 (1):95-118.
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  • The Story Behind the Science: Bringing Science and Scientists to Life in Post-Secondary Science Education.Michael P. Clough - 2011 - Science & Education 20 (7-8):701-717.
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  • Nature of Science and Science Content Learning.Hanno Michel & Irene Neumann - 2016 - Science & Education 25 (9-10):951-975.
    Besides viewing knowledge about the nature of science as important for its own value with respect to scientific literacy, an adequate understanding of NOS is expected to improve science content learning by fostering the ability to interrelate scientific concepts and, thus, coherently acquire scientific content knowledge. However, there is a lack of systematic investigations, which clarify the relations between NOS and science content learning. In this paper, we present the results of a study, conducted to investigate how NOS understanding relates (...)
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