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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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  • The Feasibility of Folk Science.Frank C. Keil - 2010 - Cognitive Science 34 (5):826-862.
    If folk science means individuals having well worked out mechanistic theories of the workings of the world, then it is not feasible. Laypeople’s explanatory understandings are remarkably coarse, full of gaps, and often full of inconsistencies. Even worse, most people overestimate their own understandings. Yet recent views suggest that formal scientists may not be so different. In spite of these limitations, science somehow works and its success offers hope for the feasibility of folk science as well. The success of science (...)
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  • Professional Preparation of Future Teachers of Vocational Training in the Transport Area of Expertise with Use of the Author’s Educational Application.Mykhailo Pohorielov, Olena Lavrentieva, Volodymyr Bondarenko, Igor Britchenko, Andrii Dorohan & Aleksandr Uchitel - 2020 - AET 2020 Proceedings of the 1st Symposium on Advances in Educational Technology 1:702-713.
    The paper presents the content, as well as approaches to the use in the educational process of the author’s Electronic educational methodical complex (EEMC) “Construction of car”. The course is created for students of the speciality 015 Professional education (Transport, the operation and repairing of automobiles). Its content covers general topics including the study of a car engine, electrical equipment and automotive driveline. The created electronic course embraces, in addition to textual material, illustrations, dynamic models, instructions, manuals, textbooks, reference books (...)
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  • Representing, Running, and Revising Mental Models: A Computational Model.Scott Friedman, Kenneth Forbus & Bruce Sherin - 2018 - Cognitive Science 42 (4):1110-1145.
    People use commonsense science knowledge to flexibly explain, predict, and manipulate the world around them, yet we lack computational models of how this commonsense science knowledge is represented, acquired, utilized, and revised. This is an important challenge for cognitive science: Building higher order computational models in this area will help characterize one of the hallmarks of human reasoning, and it will allow us to build more robust reasoning systems. This paper presents a novel assembled coherence theory of human conceptual change, (...)
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  • Bewitchment, Biology, or Both: The Co‐Existence of Natural and Supernatural Explanatory Frameworks Across Development.Cristine H. Legare & Susan A. Gelman - 2008 - Cognitive Science 32 (4):607-642.
    Three studies examined the co‐existence of natural and supernatural explanations for illness and disease transmission, from a developmental perspective. The participants (5‐, 7‐, 11‐, and 15‐year‐olds and adults; N = 366) were drawn from 2 Sesotho‐speaking South African communities, where Western biomedical and traditional healing frameworks were both available. Results indicated that, although biological explanations for illness were endorsed at high levels, witchcraft was also often endorsed. More important, bewitchment explanations were neither the result of ignorance nor replaced by biological (...)
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  • Scientific and Folk Theories of Viral Transmission: A Comparison of COVID-19 and the Common Cold.Danielle Labotka & Susan A. Gelman - 2022 - Frontiers in Psychology 13.
    Disease transmission is a fruitful domain in which to examine how scientific and folk theories interrelate, given laypeople’s access to multiple sources of information to explain events of personal significance. The current paper reports an in-depth survey of U.S. adults’ causal reasoning about two viral illnesses: a novel, deadly disease that has massively disrupted everyone’s lives, and a familiar, innocuous disease that has essentially no serious consequences. Participants received a series of closed-ended and open-ended questions probing their reasoning about disease (...)
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  • Knowing When Help Is Needed: A Developing Sense of Causal Complexity.Jonathan F. Kominsky, Anna P. Zamm & Frank C. Keil - 2018 - Cognitive Science 42 (2):491-523.
    Research on the division of cognitive labor has found that adults and children as young as age 5 are able to find appropriate experts for different causal systems. However, little work has explored how children and adults decide when to seek out expert knowledge in the first place. We propose that children and adults rely on “mechanism metadata,” information about mechanism information. We argue that mechanism metadata is relatively consistent across individuals exposed to similar amounts of mechanism information, and it (...)
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  • On Discerning Critical Elements, Relationships and Shifts in Attaining Scientific Terms: The Challenge of Polysemy/Homonymy and Reference.Helge R. Strömdahl - 2012 - Science & Education 21 (1):55-85.
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  • Students’ Conceptions as Dynamically Emergent Structures.David E. Brown - 2014 - Science & Education 23 (7):1463-1483.
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  • “It kinda has like a mind”: Children's and parents' beliefs concerning viral disease transmission for COVID-19 and the common cold.Danielle Labotka & Susan A. Gelman - 2023 - Cognition 235 (C):105413.
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  • Thought Experiments in Science and in Science Education.Mervi A. Asikainen & Pekka E. Hirvonen - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1235-1256.
    This chapter will discuss the role of thought experiments in science and in science teaching. The constructive and destructive roles played by thought experiments in the construction of scientific theories can be used in science teaching to help students to understand the processes of science. In addition, they have potential to be used as a teaching tool for developing students’ conceptual understanding. The use of thought experiments can also increase students’ interest in science and help them in understanding situations beyond (...)
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  • Discerning the Division of Cognitive Labor: An Emerging Understanding of How Knowledge Is Clustered in Other Minds.Frank C. Keil, Courtney Stein, Lisa Webb, Van Dyke Billings & Leonid Rozenblit - 2008 - Cognitive Science 32 (2):259-300.
    The division of cognitive labor is fundamental to all cultures. Adults have a strong sense of how knowledge is clustered in the world around them and use that sense to access additional information, defer to relevant experts, and ground their own incomplete understandings. One prominent way of clustering knowledge is by disciplines similar to those that comprise the natural and social sciences. Seven studies explored an emerging sense of these discipline‐based ways of clustering of knowledge. Even 5‐year‐olds could cluster knowledge (...)
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  • Qualitative Quantitative and Experimental Concept Possession, Criteria for Identifying Conceptual Change in Science Education.Otto Lappi - 2013 - Science & Education 22 (6):1347-1359.
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  • Tensions Between Learning Models and Engaging in Modeling.Candice Guy-Gaytán, Julia S. Gouvea, Chris Griesemer & Cynthia Passmore - 2019 - Science & Education 28 (8):843-864.
    The ability to develop and use models to explain phenomena is a key component of the Next Generation Science Standards, and without examples of what modeling instruction looks like in the reality of classrooms, it will be difficult for us as a field to understand how to move forward in designing curricula that foreground the practice in ways that align with the epistemic commitments of modeling. In this article, we illustrate examples drawn from a model-based curriculum development project to problematize (...)
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  • Concept Development in Learning Physics: The Case of Electric Current and Voltage Revisited.Ismo T. Koponen & Laura Huttunen - 2013 - Science & Education 22 (9):2227-2254.
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  • Conceptual Change from the Framework Theory Side of the Fence.Stella Vosniadou & Irini Skopeliti - 2014 - Science & Education 23 (7):1427-1445.
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  • Healing, Mental Energy in the Physics Classroom: Energy Conceptions and Trust in Complementary and Alternative Medicine in Grade 10–12 Students. [REVIEW]Annika M. Svedholm & Marjaana Lindeman - 2013 - Science & Education 22 (3):677-694.
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  • What Can Be Learned From a Laboratory Model of Conceptual Change? Descriptive Findings and Methodological Issues.Stellan Ohlsson & David G. Cosejo - 2014 - Science & Education 23 (7):1485-1504.
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  • The Use of Interactive Fiction to Promote Conceptual Change in Science.Simon Flynn & Mark Hardman - 2019 - Science & Education 28 (1-2):127-152.
    In recent years, researchers within science education have started to consider the impact of narrative upon teaching and learning in science. This article investigates the possibilities of interactive fiction as a means by which students can be provided with feedback on their understanding in science, and explores the mechanisms which might allow learning from this. Through a review of literature around the use of narrative in science education, we have produced a list of recommendations that might guide the development of (...)
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