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  1. Coherence of Pre-service Physics Teachers’ Views of the Relatedness of Physics Concepts.Maija Nousiainen - 2013 - Science & Education 22 (3):505-525.
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  • What Students' Arguments Can Tell Us: Using Argumentation Schemes in Science Education.Fabrizio Macagno & Aikaterini Konstantinidou - 2013 - Argumentation 27 (3):225-243.
    The relationship between teaching and argumentation is becoming a crucial issue in the field of education and, in particular, science education. Teaching has been analyzed as a dialogue aimed at persuading the interlocutors, introducing a conceptual change that needs to be grounded on the audience’s background knowledge. This paper addresses this issue from a perspective of argumentation studies. Our claim is that argumentation schemes, namely abstract patterns of argument, can be an instrument for reconstructing the tacit premises in students’ argumentative (...)
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  • Understanding Students’ Reasoning: Argumentation Schemes as an Interpretation Method in Science Education.Aikaterini Konstantinidou & Fabrizio Macagno - 2013 - Science & Education 22 (5):1069-1087.
    The relationship between teaching and argumentation is becoming a crucial issue in the field of education and, in particular, science education. Teaching has been analyzed as a dialogue aimed at persuading the interlocutors, introducing a conceptual change that needs to be grounded on the audience’s background knowledge. This paper addresses this issue from a perspective of argumentation studies. Our claim is that argumentation schemes, namely abstract patterns of argument, can be an instrument for reconstructing the tacit premises in students’ argumentative (...)
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  • Integrating Epistemological Perspectives on Chemistry in Chemical Education: The Cases of Concept Duality, Chemical Language, and Structural Explanations.Ebru Kaya & Sibel Erduran - 2013 - Science & Education 22 (7):1741-1755.
  • Determinism and Underdetermination in Genetics: Implications for Students’ Engagement in Argumentation and Epistemic Practices.María Pilar Jiménez-Aleixandre - 2014 - Science & Education 23 (2):465-484.
  • Articulation of Conceptual Knowledge and Argumentation Practices by High School Students in Evolution Problems.Marina de Lima Tavares, María-Pilar Jiménez-Aleixandre & Eduardo F. Mortimer - 2010 - Science & Education 19 (6-8):573-598.
  • Argumentation in Science Education: A Model-based Framework.Florian Böttcher & Anke Meisert - 2011 - Science & Education 20 (2):103-140.
  • Argumentative Writing Behavior of Graduate EFL Learners.Esmaeel Abdollahzadeh, Mohammad Amini Farsani & Maryam Beikmohammadi - 2017 - Argumentation 31 (4):641-661.
    This study analyzed the argumentative writing behavior of Iranian graduate learners of English as Foreign Language in their English essays. Further, the correlations between the use of argument elements and overall writing quality as well as soundness of produced arguments were investigated. To this end, 150 essays were analyzed. The sample essays were found to be predominantly deductive in terms of rhetorical pattern. Moreover, they mainly utilized ‘data’ and ‘claim’ most frequently with secondary elements of argument as the least produced (...)
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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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  • Beyond the scientific method: Model‐based inquiry as a new paradigm of preference for school science investigations.Mark Windschitl, Jessica Thompson & Melissa Braaten - 2008 - Science Education 92 (5):941-967.
  • Understanding students' practical epistemologies and their influence on learning through inquiry.William A. Sandoval - 2005 - Science Education 89 (4):634-656.
  • Argument relevance and structure. Assessing and developing students’ uses of evidence.Fabrizio Macagno - 2016 - International Journal of Educational Research 79:180–194.
    The purpose of this paper is to show whether the two crucial dimensions used for assessing the quality of argumentation, argument-as-a-product (argument structure) and argument-as-a-process (relevance), are interrelated, and how they can be used to assess the effect of argumentative mode on students’ arguments. To this purpose, a twofold coding scheme will be developed, aimed at capturing: a) the argumentative function of evidence use and b) the dialogical relevance of evidence use. A study will be described in which students’ use (...)
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  • Revisiting School Scientific Argumentation from the Perspective of the History and Philosophy of Science.Agustín Adúriz-Bravo - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1443-1472.
    This chapter aims to revisit the notion of argumentation that is currently used in science education. After acknowledging a consolidated tendency of linguistics-based approaches to the study of ‘school scientific argumentation’, the chapter proposes to shift the interest towards an examination of the epistemic aspects of argumentation, i.e. those that derive from its central participation in science as a process and as a product. The premise of the chapter is that the contributions of the philosophy and history of science and (...)
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  • Identifying argumentative acts within the classroom amongst engineering students.Juan Fernando Barros-Martinez - unknown
    Students’ arguments surrounding a scientific topic are analyzed. This analysis comes from research developed in the classroom where dialogic interaction was promoted. The purpose of this study has not only been to identify argumentative elements used by students during the sessions but principally to the process of discussion. Three different ways have been proposed for this analysis: speech acts, acts of argumentative process and acts of learning process, with the intention of establishing relationships between them.
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