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  1. Connections between pedagogical and epistemological constructivism: Questions for teaching and research in chemistry. [REVIEW]Donald J. Wink - 2006 - Foundations of Chemistry 8 (2):111-151.
    The rich and ongoing debate about constructivism in chemistry education includes questions about the relationship, for better or worse, between applications of the theory in pedagogy and in epistemology. This paper presents an examination of the potential to use connections of epistemological and pedagogical constructivism to one another. It examines connections linked to the content, processes, and premises of science with a goal of prompting further research in these areas.
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  • 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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  • Mind Maps: Processed as Intuitively as Thought? Investigating Late Elementary Students’ Eye-Tracked Visual Behavior Patterns In-Depth.Emmelien Merchie, Sofie Heirweg & Hilde Van Keer - 2022 - Frontiers in Psychology 13.
    In this study, 44 late elementary students’ visual behavior patterns when reading mind maps were investigated, more particularly, the intuitive processing nature of their visual characteristics, reading sequence and presentation mode. Eye-tracked data were investigated by means of static early attention and dynamic educational process mining analysis and combined with learning performance and retrospective interview data. All students seem to struggle with the map’s radial structure during initial reading. Also, the picture’s position in the map diverts students from consecutively reading (...)
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  • Patterns of Response Times and Response Choices to Science Questions: The Influence of Relative Processing Time.Andrew F. Heckler & Thomas M. Scaife - 2015 - Cognitive Science 39 (3):496-537.
    We report on five experiments investigating response choices and response times to simple science questions that evoke student “misconceptions,” and we construct a simple model to explain the patterns of response choices. Physics students were asked to compare a physical quantity represented by the slope, such as speed, on simple physics graphs. We found that response times of incorrect answers, resulting from comparing heights, were faster than response times of correct answers comparing slopes. This result alone might be explained by (...)
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  • Scientific Caricatures in the Earth Science Classroom: An Alternative Assessment for Meaningful Science Learning.Renee M. Clary & James H. Wandersee - 2010 - Science & Education 19 (1):21-37.
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  • Learning Science Through Aesthetic Experience in Elementary School : Aesthetic Judgement, Metaphor and Art.Britt Jakobson - unknown
    This thesis considers the role of aesthetic meaning-making in elementary school science learning. Children’s aesthetic experiences are traced through their use of aesthetic judgements, spontaneous metaphors and art activities. The thesis is based on four empirical studies: the first two examining children’s language use, i.e. the role of aesthetic judgements and the significance of spontaneous metaphors while learning science and the latter two dealing with how art activities mediate what elementary school children learn in science and what a variety of (...)
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