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  1. 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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  • Scientism and Scientific Thinking.Renia Gasparatou - 2017 - Science & Education 26 (7-9):799-812.
    The move from respecting science to scientism, i.e., the idealization of science and scientific method, is simple: We go from acknowledging the sciences as fruitful human activities to oversimplifying the ways they work, and accepting a fuzzy belief that Science and Scientific Method, will give us a direct pathway to the true making of the world, all included. The idealization of science is partly the reason why we feel we need to impose the so-called scientific terminologies and methodologies to all (...)
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  • The Parallels Between Philosophical Inquiry and Scientific Inquiry: Implications for science education.Gilbert Burgh & Kim Nichols - 2012 - Educational Philosophy and Theory 44 (10):1045-1059.
    The ‘community of inquiry’ as formulated by C. S. Peirce is grounded in the notion of communities of discipline-based inquiry engaged in the construction of knowledge. The phrase ‘transforming the classroom into a community of inquiry’ is commonly understood as a pedagogical activity with a philosophical focus to guide classroom discussion. But it has a broader application. Integral to the method of the community of inquiry is the ability of the classroom teacher to actively engage in the theories and practices (...)
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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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  • Evaluating Arguments from a Play about Ethics in Science: A Study with Medical Learners.Pablo Antonio Archila - 2017 - Argumentation 32 (1):53-76.
    Developing critical thinking ability is one of the main goals of medical education, in part because it enhances clinical reasoning, a vital competence in clinical practice. However, there is limited evidence suggesting ways to effectively teach critical thinking in the classroom. Here, we describe the use of a drama-based critical thinking classroom scenario. The study used a mixed-methods approach with both quantitative and qualitative analysis of questionnaire responses. Ninety-one medical students in Colombia were asked to identify and evaluate arguments regarding (...)
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  • From epistemology to policy: reorienting philosophy courses for science students.Mark Thomas Young - 2022 - European Journal for Philosophy of Science 12 (2):1-14.
    Philosophy of science has traditionally focused on the epistemological dimensions of scientific practice at the expense of the ethical and political questions scientists encounter when addressing questions of policy in advisory contexts. In this article, I will explore how an exclusive focus on epistemology and theoretical reason can function to reinforce common, yet flawed assumptions concerning the role of scientific knowledge in policy decision making when reproduced in philosophy courses for science students. In order to address this concern, I will (...)
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  • Using the logical basis of phylogenetics as the framework for teaching biology.Charles Morphy D. Santos & Adolfo R. Calor - unknown
    The influence of the evolutionary theory is widespread in modern worldview. Due to its great explanatory power and pervasiveness, the theory of evolution should be used as the organizing theme in biology teaching. For this purpose, the essential concepts of phylogenetic systematics are useful as a didactic instrument. The phylogenetic method was the first objective set of rules to implement in systematics the evolutionary view that the organisms are all connected at some hierarchical level due to common ancestry, as suggested (...)
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