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  1. Open-minded environmental education in the science classroom.David Burns & Stephen Norris - 2009 - Paideusis: Journal of the Canadian Philosophy of Education Society 18 (1):35–43.
    In this paper we will discuss the issue of environmental advocacy in science education in light of William Hare’s concept of open-mindedness. Although we shall assume that science teaching and learning must go beyond the scientific facts and theories and deal with the implications of science for society, we shall argue that science education should also demand an open-mindedness about environmental concerns such that all proposals for sustainability and the like are weighed against the alternatives using the best scientific knowledge (...)
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  • Philosophy of Education and Science Education: A Vital but Underdeveloped Relationship.Roland M. Schulz - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1259-1316.
    This chapter examines the relationship between the two fields of science education and philosophy of education to inquire how philosophy could better contribute to improving science curriculum, teaching, and learning, especially science teacher education. An inspection of respective research journals exhibits an almost complete neglect of each field for the other (barring exceptions).While it can be admitted that philosophy has been an area of limited and scattered interest for science education researchers for some time, the subfield of philosophy of education (...)
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  • International Handbook of Research in History, Philosophy and Science Teaching.Michael R. Matthews (ed.) - 2014 - Springer.
    This inaugural handbook documents the distinctive research field that utilizes history and philosophy in investigation of theoretical, curricular and pedagogical issues in the teaching of science and mathematics. It is contributed to by 130 researchers from 30 countries; it provides a logically structured, fully referenced guide to the ways in which science and mathematics education is, informed by the history and philosophy of these disciplines, as well as by the philosophy of education more generally. The first handbook to cover the (...)
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  • Mediating Science and Society in the EU and UK: From Information-Transmission to Deliberative Democracy?Anwar Tlili & Emily Dawson - 2010 - Minerva 48 (4):429-461.
    In this paper we critically review recent developments in policies, practices and philosophies pertaining to the mediation between science and the public within the EU and the UK, focusing in particular on the current paradigm of Public Understanding of Science and Technology (PEST) which seeks to depart from the science information-transmission associated with previous paradigms, and enact a deliberative democracy model. We first outline the features of the current crisis in democracy and discuss deliberative democracy as a response to this (...)
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  • Kuhn in the Classroom, Lakatos in the Lab: Science Educators Confront the Nature-of-Science Debate.Karen Sullenger & Steven Turner - 1999 - Science, Technology, and Human Values 24 (1):5-30.
    Programs for the reform of K-12 science teaching today usually insist that science teachers must introduce their students to the nature of science, as well as to scientific content. The academic field of science studies, however, evinces no consensus about what the nature of science really is. This article examines how science educators and educational researchers have drawn on the fragmented teachings of science studies about the nature of science, and how they have used those teachings as a resource in (...)
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  • From Science Studies to Scientific Literacy: A View from the Classroom.Douglas Allchin - 2014 - Science & Education 23 (9):1911-1932.
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  • Towards Bildung-Oriented Chemistry Education.Jesper Sjöström - 2013 - Science & Education 22 (7):1873-1890.
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  • Towards Eco-reflexive Science Education.Jesper Sjöström, Ingo Eilks & Vânia G. Zuin - 2016 - Science & Education 25 (3-4):321-341.
    The modern world can be described as a globalized risk society. It is characterized by increasing complexity, unpredictable consequences of techno-scientific innovations and production, and its environmental consequences. Therefore, chemistry, just like many other knowledge areas, is in an ongoing process of environmentalization. For example, green chemistry has emerged as a new chemical metadiscipline and movement. The philosophy of green chemistry was originally based on a suggestion of twelve principles for environment-friendly chemistry research and production. The present article problematizes limitations (...)
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  • Should the sociology of science be rated X?Douglas Allchin - 2004 - Science Education 88 (6):934-946.
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  • A Critique of Science Education as Sociopolitical Action from the Perspective of Liberal Education.Yannis Hadzigeorgiou - 2015 - Science & Education 24 (3):259-280.
    This paper outlines the rationale underpinning the conception of science education as sociopolitical action, and then presents a critique of such a conception from the perspective of liberal education. More specifically, the paper discusses the importance of the conception of science education as sociopolitical action and then raises questions about the content of school science, about the place and value of scientific inquiry, and about the opportunities students have for self-directed inquiry. The central idea behind the critique is that a (...)
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  • Ethics or Morals: Understanding Students’ Values Related to Genetic Tests on Humans.Mats Gunnar Lindahl - 2009 - Science & Education 18 (10):1285-1311.
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