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Haglund, Jesper; Jeppsson, Fredrik; Andersson, Johanna – Science Education, 2012
This exploratory study in a classroom setting investigates first graders' (age 7-8 years, N = 25) ability to perform analogical reasoning and create their own analogies for two irreversible natural phenomena: mixing and heat transfer. We found that the children who contributed actively to a full-class discussion were consistently successful at…
Descriptors: Constructivism (Learning), Childrens Art, Discussion, Heat
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Afonso, Ana S.; Gilbert, John K. – Science Education, 2007
This study analyzes the short-term consequences of visitors' use of different types of exhibits (i.e., "exemplars of phenomena" and "analogy based") together with the factors affecting visitors' understanding of and their evaluation of the use of such exhibits. One hundred and twenty five visitors (either alone or in groups) were observed …
Descriptors: Misconceptions, Logical Thinking, Exhibits, Museums
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Flick, Larry – Science Education, 1991
Reports an instructional application of a theory of analogical reasoning. Uses the grinding of a sugar cube as an explanatory-predictive analogy for state transitions of water as a stimulus for promoting associations with other appropriate experiences in elementary school students. (PR)
Descriptors: Classroom Research, Concept Formation, Educational Research, Elementary Education
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Weinberg, Paul J.; Sorensen-Weinberg, Erika K. – Science Education, 2022
Embodied cognition has been a useful means to support learning in science education. In this article, we describe a model of embodied cognition through analogical mapping that is supported through the participatory simulation and mathematical description of a link and pivot system. We look at the propensity for this model of embodied cognition to…
Descriptors: Human Body, Cognitive Processes, Science Education, Models
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May, David B.; Hammer, David; Roy, Patricia – Science Education, 2006
Expert scientific inquiry involves the generation and use of analogies. How and when students might develop this aspect of expertise has implications for understanding how and when instruction might facilitate that development. In a study of K-8 student inquiry in physical science, we are examining cases of spontaneous analogy generation. In the…
Descriptors: Physical Sciences, Logical Thinking, Thinking Skills, Grade 3
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Harrison, Allan G.; Treagust, David F. – Science Education, 1996
Examines the reasoning behind views of atoms and molecules held by students (n=48) and investigates how mental models may assist or hamper further instruction in chemistry. Reports that students prefer models of atoms and molecules that depict them as discrete, concrete structures. Recommends that teachers develop student modeling skills and…
Descriptors: Atomic Theory, Chemistry, Constructivism (Learning), Misconceptions