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Ying-Chih Chen; Michelle Jordan; Jongchan Park; Emily Starrett – Science Education, 2024
An essential aspect of scientific practice involves grappling with the generation of predictions, representations, interpretations, investigations, and communications related to scientific phenomena, all of which are inherently permeated with uncertainty. Transferring this practice from expert settings to the classroom is invaluable yet…
Descriptors: Science Instruction, Teaching Methods, Science Process Skills, Ambiguity (Context)
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Tang, Xiaowei; Levin, Daniel M.; Chumbley, Alexander K.; Elby, Andrew – Science Education, 2022
Science education researchers agree about the importance of evidence in science practices such as argumentation. Yet, disagreements and ambiguities about what counts as "evidence" in science classrooms pervade the literature. We argue that these ambiguities and disagreements can be viewed as falling along three fault lines: (i) the…
Descriptors: Science Education, Persuasive Discourse, Evidence, Educational Research
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Kervinen, Anttoni; Aivelo, Tuomas – Science Education, 2023
Uncertainty is endemic to scientific research practices; therefore, it is also an important element in learning about science. Studies have shown that experiences and management of uncertainty regarding the epistemic practices of science can support learning. Whereas the common strategies of supporting students in handling uncertainty rely on the…
Descriptors: Secondary School Students, Suburban Schools, Foreign Countries, Responses
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Watkins, Jessica; Manz, Eve – Science Education, 2022
Science education researchers have highlighted how uncertainty can foster meaningful scientific sense-making, supporting students to re-evaluate their understandings of scientific phenomena and pursue deeper causal accounts. However, facilitating whole-class conversations motivated by uncertainty is complex and challenging, calling for further…
Descriptors: Decision Making, Ambiguity (Context), Science Education, Classroom Communication
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Mejias, Sam; Thompson, Naomi; Sedas, Raul Mishael; Rosin, Mark; Soep, Elisabeth; Peppler, Kylie; Roche, Joseph; Wong, Jen; Hurley, Mairéad; Bell, Philip; Bevan, Bronwyn – Science Education, 2021
As an emerging field of theory, research, and practice, STEAM (Science, Technology, Engineering, Arts, and Mathematics) has received attention for its efforts to incorporate the arts into the rubric of STEM (Science, Technology, Engineering, and Mathematics) learning. In particular, many informal educators have embraced it as an inclusive and…
Descriptors: Art Education, STEM Education, Interdisciplinary Approach, Transformative Learning
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Tang, Xiaowei; Elby, Andrew; Hammer, David – Science Education, 2020
Through analysis of a classroom lesson led by a decorated teacher, we illustrate how instructional practices favor students seeking empirical patterns at the expense of using mechanistic reasoning. In the lesson, when students spontaneously come up with hypothetical mechanisms to explain why a light bulb in an electric circuit does or does not…
Descriptors: Foreign Countries, Pattern Recognition, Logical Thinking, Concept Formation
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Phelan, Siëlle; Specht, Inga; Schnotz, Wolfgang; Lewalter, Doris – Science Education, 2017
Visitors to modern science museums are likely to encounter exhibitions presenting conflicting information, such as risks and benefits of new scientific developments. Such exhibitions encourage visitors to reflect upon different sides of a story and to form or adjust their attitudes toward the topic on display. However, there is very little…
Descriptors: Attitude Change, Scientific Attitudes, Science Teaching Centers, Museums