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Showing all 12 results Save | Export
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Zhadyra Akhatayeva; Kakim Sagindykov; Bazarbek Mukushev; Nurgul Kurmangaliyeva; Ardak Karipzhanova – Education and Information Technologies, 2024
The goal of the study is to create Visual Basic and MATHCAD apps to create programs that show the core force using physical forces as an example. The research subjects are high school teachers and students; the inherent context is high school STEM courses. Programs for computer visualization have been developed, and theoretical investigations have…
Descriptors: High School Teachers, High School Students, STEM Education, Computer Uses in Education
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Kersting, Magdalena; Steier, Rolf; Venville, Grady – International Journal of Science Education, Part B: Communication and Public Engagement, 2021
Virtual reality applications turn abstract concepts into experienceable phenomena and present exciting opportunities to transform science education and public outreach practices. While research has started to look into the affordances of virtual reality (VR) in the formal science education context, the potential of these technologies to enhance…
Descriptors: Computer Simulation, Science Education, Educational Technology, Technology Uses in Education
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Everding, Daniel J.; Keller, John M. – Physical Review Physics Education Research, 2020
We present the analysis of the planetarium usage survey (PLUS), a two-part, mixed-methods initial study investigating planetarium use in the U.S. by undergraduate learners. Seventy-seven planetariums situated on college or university campuses within the U.S. completed an online survey during the fall of 2018 with 11 of those participating in…
Descriptors: Recreational Facilities, Space Exploration, Astronomy, Undergraduate Students
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Jankowska, Dorota M.; Gajda, Aleksandra; Karwowski, Maciej – International Journal of Science Education, 2019
This article explores how creative visual imagination and creative thinking can help children to construct mental models of space. A mixed-method study, integrating quantitative and qualitative approaches and involving 98 five-year-old children (54 girls and 44 boys) demonstrated that creative visual imagination, rather than creative thinking, is…
Descriptors: Foreign Countries, Preschool Children, Creative Thinking, Visual Learning
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Buck Bracey, Zoë E. – Journal of Research in Science Teaching, 2017
This article presents the results of exploratory research with community college students from non-dominant linguistic backgrounds (NDLB) in an introductory astronomy class as they collaborated to reconstruct dynamic cosmology visualizations through drawing. Data included student discourse during the drawing activity, post-activity interviews, and…
Descriptors: Two Year College Students, Community Colleges, Astronomy, Science Education
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Tretter, Thomas R.; Ardasheva, Yuliya; Morrison, Judith A.; Karin Roo, Anna – International Journal of Science Education, 2019
This study investigated ways to foster positive science attitudes among newcomer first-year middle school English learners (n = 79) under two conditions: (1) "Extended Science + Extended Literacy" (planetarium-based visualisations + vocabulary + comic and trade books) and (2) "Extended Science + Literacy" (planetarium-based…
Descriptors: Scientific Attitudes, Middle School Students, English Language Learners, Secondary School Science
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Price, C. Aaron; Lee, Hee-Sun; Plummer, Julia D.; SubbaRao, Mark; Wyatt, Ryan – Journal of Astronomy & Earth Sciences Education, 2015
Stereoscopy's potential as a tool for science education has been largely eclipsed by its popularity as an entertainment platform and marketing gimmick. Dozens of empirical papers have been published in the last decade about the impact of stereoscopy on learning. As a result, a corpus of research now points to a coherent message about how, when,…
Descriptors: Position Papers, Science Instruction, Science Education, Cognitive Processes
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Heywood, David; Parker, Joan; Rowlands, Mark – Science Education, 2013
The role of visualization and model-based reasoning has become increasingly significant in science education across a range of contexts. It is generally recognized that supporting learning in developing causal explanations for observed astronomical events presents considerable pedagogic challenge. Understanding the Sun's apparent movement…
Descriptors: Visualization, Spatial Ability, Science Education, Astronomy
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Sullivan, Megan – Science Teacher, 2011
Visualization is the art of turning information--concepts, processes, events, structures, and trends--into images that support our understanding. Carter Emmart is a visualizer of science. He is the director of astrovisualization for the American Museum of Natural History (AMNH). In this interview, Emmart describes what it is like to be a…
Descriptors: Visualization, Museums, Science Education, Interviews
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Subramaniam, K.; Padalkar, Shamin – International Journal of Science Education, 2009
In this study, we examine how subjects set up, transform, and reason with models that they establish on the basis of known facts as they seek to explain a familiar everyday phenomenon--the phases of the moon. An interview schedule was designed to elicit subjects' reasoning, and in the case where explanations were mistaken, to induce a change in…
Descriptors: Astronomy, Visualization, Logical Thinking, Models
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Price, Aaron; Lee, Hee-Sun – Journal of Science Education and Technology, 2010
We investigated whether and how student performance on three types of spatial cognition tasks differs when worked with two-dimensional or stereoscopic representations. We recruited nineteen middle school students visiting a planetarium in a large Midwestern American city and analyzed their performance on a series of spatial cognition tasks in…
Descriptors: Middle School Students, Cues, Spatial Ability, Time Factors (Learning)
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Yair, Yoav; Schur, Yaron; Mintz, Rachel – Journal of Science Education and Technology, 2003
Presents a novel approach to teaching astronomy and planetary sciences centered on visual images and simulations of planetary objects. Focuses on the study of the moon and the planet Mars by means of observations, interpretation, and comparison to planet Earth. (Contains 22 references.) (Author/YDS)
Descriptors: Astronomy, Educational Technology, Science Education, Space Sciences