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  1. Could HPS Improve Problem-Solving?Ricardo Lopes Coelho - 2013 - Science & Education 22 (5):1043-1068.
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  • Does Science Presuppose Naturalism ?Yonatan I. Fishman & Maarten Boudry - 2013 - Science & Education 22 (5):921-949.
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  • Methodological Issues in Science Education Research: A Perspective from the Philosophy of Science.Keith S. Taber - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1839-1893.
    This chapter offers an overview of methodological issues within science education research and considers the extent to which this area of scholarship can be understood to (actually and potentially) be scientific. The chapter considers the nature of education and educational research, how methodological issues are discussed in educational research and the range of major methodological strategies commonly used. It is suggested that the way research is discussed, undertaken and reported seems quite different in science education from research in the natural (...)
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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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  • Towards Teaching Chemistry as a Language.Pierre Laszlo - 2013 - Science & Education 22 (7):1669-1706.
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  • Conceptual Problems in the Foundations of Mechanics.Ricardo Lopes Coelho - 2012 - Science & Education 21 (9):1337-1356.
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  • Alan F. Chalmers: The Scientist’s Atom and the Philosopher’s Stone: How Science Succeeded and Philosophy Failed to Gain Knowledge of Atoms.Michael R. Matthews - 2011 - Science & Education 20 (2):173-190.
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  • I have chosen another way of thinking.Lena Hansson & Britt Lindahl - 2010 - Science & Education 19 (9):895-918.
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  • The Role of Metaphysical Naturalism in Science.Martin Mahner - 2012 - Science & Education 21 (10):1437–1459.
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  • The Jesuits and the Method of Indivisibles.David Sherry - 2018 - Foundations of Science 23 (2):367-392.
    Alexander’s "Infinitesimal. How a dangerous mathematical theory shaped the modern world"(London: Oneworld Publications, 2015) is right to argue that the Jesuits had a chilling effect on Italian mathematics, but I question his account of the Jesuit motivations for suppressing indivisibles. Alexander alleges that the Jesuits’ intransigent commitment to Aristotle and Euclid explains their opposition to the method of indivisibles. A different hypothesis, which Alexander doesn’t pursue, is a conflict between the method of indivisibles and the Catholic doctrine of the Eucharist. (...)
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  • Science, Worldviews and Education.Michael R. Matthews - 2014 - In International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1585-1635.
    Science has always engaged with the worldviews of societies and cultures. The theme is of particular importance at the present time as many national and provincial education authorities are requiring that students learn about the nature of science (NOS) as well as learning science content knowledge and process skills. NOS topics are being written into national and provincial curricula. Such NOS matters give rise to at least the following questions about science, science teaching and worldviews: -/- What is a worldview? (...)
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  • On the Concept of Force: How Understanding its History can Improve Physics Teaching.Ricardo Lopes Coelho - 2010 - Science & Education 19 (1):91-113.
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  • Ronald L. Numbers : Galileo Goes to Jail and Other Myths about Science and Religion.Colin Gauld - 2010 - Science & Education 19 (2):217-224.
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  • The Implications for Science Education of Heidegger’s Philosophy of Science.Robert Shaw - 2013 - Educational Philosophy and Theory 45 (5):546-570.
    Science teaching always engages a philosophy of science. This article introduces a modern philosophy of science and indicates its implications for science education. The hermeneutic philosophy of science is the tradition of Kant, Heidegger, and Heelan. Essential to this tradition are two concepts of truth, truth as correspondence and truth as disclosure. It is these concepts that enable access to science in and of itself. Modern science forces aspects of reality to reveal themselves to human beings in events of disclosure. (...)
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  • Towards a Critical Re-Appraisal of Ecology Education: Scheduling an Educational Intervention to Revisit the ‘Balance of Nature’ Metaphor.Tasos Hovardas & Konstantinos Korfiatis - 2011 - Science & Education 20 (10):1039-1053.
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  • Philosophical Dimensions of Social and Ethical Issues in School Science Education: Values in Science and in Science Classrooms.Ana C. Couló - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1087-1117.
    Philosophical debates on the nature and significance of values in scientific knowledge and practices have differentiated cognitive (or epistemic) values from noncognitive (non-epistemic, such as moral or political) ones. The significance of cognitive values has come to be more or less commonly accepted, but the place of noncognitive values is much more controversial. Analysis and debate on values-related dimensions of scientific knowledge and inquiry has been on the rise in contemporary philosophy of science since 1970. This chapter provides an overview (...)
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  • Towards a Refined Depiction of Nature of Science.Igal Galili - 2019 - Science & Education 28 (3-5):503-537.
    This study considers the short list of Nature of Science features frequently published and widely known in the science education discourse. It is argued that these features were oversimplified and a refinement of the claims may enrich or sometimes reverse them. The analysis shows the need to address the range of variation in each particular aspect of NOS and to illustrate these variations with actual events from the history of science in order to adequately present the subject. Another implication of (...)
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  • E. J. Holmyard and the Historical Approach to Science Teaching.Edgar W. Jenkins - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 2383-2408.
    E. J. Holmyard was a distinguished scholar and schoolmaster in England in the first half of the twentieth century. After graduating from Cambridge in both natural science and history, he quickly established a reputation for his research into the early history of chemistry, especially Islamic alchemy, and for his advocacy of a historical approach to the teaching of science. Both these interests found expression in his large number of school chemistry textbooks, many of which were highly successful and innovative publications, (...)
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  • On the Concept of Energy: Eclecticism and Rationality.Ricardo Lopes Coelho - 2014 - Science & Education 23 (6):1361-1380.
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  • Views from the Chalkface.Zhi Hong Wan & Siu Ling Wong - 2016 - Science & Education 25 (9-10):1089-1114.
    Although the goal of developing school students’ understanding of nature of science has long been advocated, there is still a lack of research that focuses on probing how science teachers, a kind of major stakeholder in NOS instruction, perceive the values of teaching NOS. Through semi-structured interviews, this study investigated the views of 15 Hong Kong in-service senior secondary science teachers about the values of teaching NOS. These values as perceived by the teachers fall into two types. The first type (...)
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  • Earth at Rest.Edvin Østergaard - 2017 - Science & Education 26 (5):557-582.
    Focus of this article is the current situation characterized by students’ de-rootedness and possible measures to improve the situation within the frame of education for sustainable development. My main line of argument is that science teachers can practice teaching in such a way that students are brought in deeper contact to the environment. I discuss efforts to promote aesthetic experience in science class and in science teacher education. Within a wide range of definitions, my main understanding of aesthetic experience is (...)
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