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Historical-Investigative Approaches in Science Teaching

In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1473-1502 (2014)

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  1. Learning About Archaeology and Prehistoric Life.M. Besse, S. Fragnière, A. Müller, M. Piguet, L. Dubois, D. Miéville, S. Schoeb & D. Schumacher - 2019 - Science & Education 28 (6-7):759-795.
    This article is about an intervention introducing prehistoric life in primary education. Its objectives were to foster openness and interest for prehistory and archaeology, as well as content knowledge and conceptual learning with a focus on four main facets: basic knowledge about prehistoric life; conceptual learning/change regarding prehistory; learning about archaeologists and archaeology as a scientific discipline; and learning about interactions of archaeology and other disciplines. Students participated in two workshops about the creation of a prehistoric object, highlighting the close (...)
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  • Introduction to IDTC Special Issue: Joule's Bicentenary History of Science, Foundations and Nature of Science.Raffaele Pisano, Paulo Mauricio & Philippe Vincent - 2020 - Foundations of Science 2 (25):1-21.
    James Prescott Joule’s (1818–1889) bicentenary took place in 2018 and commemorated by the IDTC with a Symposium—‘James Joule’s Bicentenary: Scientific and Pedagogical Issues Concerning Energy Conservation’—at the European Society for the History of Science (ESHS & BSHS), 14th–17th September, 2018, in London. This symposium had three main objectives: It aimed specifically to celebrate James Joule’s achievements considering the most recent historiographical works with a particular focus on the principle of conservation of energy; It served the purpose of discussing the scientific (...)
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  • When Things Go Wrong: Implementing Historical-Investigative Activities in the Classroom.Renata da Fonseca Moraes Batista & Cibelle Celestino Silva - 2019 - Science & Education 28 (9-10):1135-1151.
    In this project, we worked in partnership with school teachers who are frequent users of experimental kits available for loan to schools using the historical-investigative approach. The original kits bring a traditional approach to experimentation, without the presence of the history of science. We developed and implemented new guides to the kits, without changing their materials and instruments. Design-based research supports the development methodology; the school science topics covered in this paper are Joseph Black’s studies on latent and specific heat. (...)
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  • Physics Teachers’ Challenges in Using History and Philosophy of Science in Teaching.Dietmar Höttecke & Andreas Henke - 2015 - Science & Education 24 (4):349-385.
    The inclusion of the history and philosophy of science in science teaching is widely accepted, but the actual state of implementation in schools is still poor. This article investigates possible reasons for this discrepancy. The demands science teachers associate with HPS-based teaching play an important role, since these determine teachers’ decisions towards implementing its practices and ideas. We therefore investigate the perceptions of 8 HPS-experienced German middle school physics teachers within and beyond an HPS implementation project. Within focused interviews these (...)
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  • Joule’s Experiments on the Heat Evolved by Metallic Conductors of Electricity.R. A. Martins & A. P. B. Silva - 2020 - Foundations of Science 26 (3):625-701.
    The focus of this paper is one of James Prescott Joule’s scientific contributions: the laws of heat production by electric currents in conductors. In 1841, the 22 years old Joule published a paper with the title “On the heat evolved by metallic conductors of electricity, and in the cells of a battery during electrolysis” where he presented an experimental study of that phenomenon and proposed two laws that were allegedly supported by his trials. On closer inspection, both his laboratory work (...)
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