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Showing 1 to 15 of 34 results Save | Export
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Julianna Washington; Taylor Darwin; Theodora Beauchamp; Candace Walkington – Grantee Submission, 2024
Prisms VR, a secondary math learning application, allows for users to see, manipulate, and engage with mathematical concepts in an embodied way in Virtual Reality (VR) environment. We examine cases in which mathematics teachers and middle school students worked through Prisms and reflected upon their experiences. Findings indicate that VR…
Descriptors: Mathematics Instruction, Teacher Attitudes, Computer Simulation, Algebra
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Jane Batamuliza; Gonzague Habinshuti; Jean Baptiste Nkurunziza – Journal of Technology and Science Education, 2024
This current study presents the effects of interactive computer simulations on students' performance and concept retention in the unit of chemical reactions. Purposive sampling was used to select four schools with a sample population of 320. The Achievement test on chemical reactions was developed, validated, and checked for reliability. The…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Comparative Analysis
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Wang, Cixiao; Wang, Jingxin; Shi, Zhu; Wu, Feng – Interactive Learning Environments, 2023
Digital instructional tools, such as virtual manipulatives, have been widely adopted as an enhanced approach to inquiry-based learning. However, the optimal ratio of mobile devices to students in instructional settings remain controversial. This research introduced a counterbalanced quasi-experiment to compare the learning performance and…
Descriptors: Comparative Analysis, Science Education, Inquiry, Active Learning
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Ai-Chu Elisha Ding – Journal of Research on Technology in Education, 2024
Multilingual learners (MLs) often struggle with science conceptual learning partly due to the abstractness of the concepts and the complexity of scientific texts. This study presents a case of a Virtual Reality (VR) enhanced science learning unit to support middle-school students' science conceptual learning. Using a transformative mixed methods…
Descriptors: Multilingualism, Science Education, Learning Processes, Computer Simulation
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Rajiv Satsangi; Stephanie D. Sigmon – Remedial and Special Education, 2024
Whole number computations are a critical skill that serves as a foundation upon which higher-order concepts in mathematics are taught to children. To facilitate their instruction, educators often use multiple representations to support a child's cognition. Representations with physical manipulatives are widely studied through a graduated…
Descriptors: Multiplication, Thinking Skills, Elementary School Students, Learning Problems
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O'Banion, Matthew S.; Lewis, Nicholas S.; Boyce, Michael W.; Laughlin, Jordan; Majkowicz, Deborah C. – Journal of Geography in Higher Education, 2023
This experiment utilized advanced visualization technology for the delivery of an introductory remote sensing lesson in an undergraduate geography course. Given the numerous immersive visualization solutions available, it is now possible to leverage the capabilities of augmented, mixed, and virtual reality (AR, MR, and VR) technology in a…
Descriptors: Geographic Information Systems, Geography Instruction, Undergraduate Students, Visual Aids
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Bacca-Acosta, Jorge; Tejada, Julian; Fabregat, Ramon; Kinshuk; Guevara, Juan – Educational Technology Research and Development, 2022
Scaffolding is a mechanism for helping novice learners to solve a problem or complete a task that is beyond their current skill set. Prior research on immersive virtual reality (IVR) environments with scaffolding has mainly focused on the effectiveness of scaffolding for conceptual understanding and information processing. However, research on…
Descriptors: Computer Simulation, Eye Movements, English (Second Language), Second Language Learning
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Richter, Juliane; Lachner, Andreas; Jacob, Leonie; Bilgenroth, Friederike; Scheiter, Katharina – Journal of Computer Assisted Learning, 2022
Background: Engaging students in computer-assisted guided inquiry learning has great potential to scaffold their scientific understanding: Students are expected to improve their scientific problem-solving skills, and at the same time gain a deep conceptual understanding of the subject-matter. Additional generative activities such as creating video…
Descriptors: Self Concept, Problem Solving, Video Technology, Computer Assisted Instruction
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Altmeyer, Kristin; Kapp, Sebastian; Thees, Michael; Malone, Sarah; Kuhn, Jochen; Brünken, Roland – British Journal of Educational Technology, 2020
Learning with hands-on experiments can be supported by providing essential information virtually during lab work. Augmented reality (AR) appears especially suitable for presenting information during experimentation, as it can be used to integrate both physical and virtual lab work. Virtual information can be displayed in close spatial proximity to…
Descriptors: Concept Formation, Scientific Concepts, Pretests Posttests, Teaching Methods
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Woodham, Omar P. – Marketing Education Review, 2018
This article introduces a simulation, Marketplace Live, and compares students' simulation performance with their course performance. The sample is drawn from 13 sections of the author's Marketing Concepts (Principles of Marketing) course. The results support the idea that marketing simulations do contribute to learning marketing concepts. Evidence…
Descriptors: Marketing, Teaching Methods, Instructional Effectiveness, Tests
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Bajwa, Neet Priya; Perry, Michelle – Mathematical Thinking and Learning: An International Journal, 2021
Elementary school students struggle in interpreting the equal sign as a symbol denoting equivalence. Although many have advocated using a pan-balance scale to help students develop this understanding, less is known about what features associated with this model support learning. To attempt to control and examine these features, the investigators…
Descriptors: Mathematics Skills, Mathematics Instruction, Elementary School Students, Concept Formation
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Wang, Hong-Syuan; Chen, Sufen; Yen, Miao-Hsuan – Physical Review Physics Education Research, 2021
This study aims to examine the effectiveness of metacognitive scaffolding in different inquiry tasks related to optics. Two high school classes participated in this study. One class, the treatment group (n = 33), which integrated metacognitive prompts into the simulation-based inquiry, was compared to the other class, the control group (n = 34),…
Descriptors: Metacognition, Scaffolding (Teaching Technique), Science Process Skills, Teaching Methods
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Chabalengula, Vivien; Fateen, Rasheta; Mumba, Frackson; Ochs, Laura Kathryn – Journal of Computers in Mathematics and Science Teaching, 2016
This study investigated the effect of an inquiry-based computer simulation modeling (ICoSM) instructional approach on pre-service science teachers' understanding of homeostasis and its related concepts, and their perceived design features of the ICoSM and simulation that enhanced their conceptual understanding of these concepts. Fifty pre-service…
Descriptors: Inquiry, Computer Simulation, Preservice Teachers, Concept Formation
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Sun, Koun Tem; Chen, Meng Hsun – International Journal of Distance Education Technologies, 2019
From random interviews of mathematics teachers, the researchers are conscious that students have difficulties in solving problems regarding compound body volume measurement. The researchers found the main factor involved in the difficulties was incomplete spatial concepts. Augmented reality (AR), which is a kind of educational technology, has been…
Descriptors: Geometry, Mathematics Instruction, Teaching Methods, Computer Software
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Twissell, Adrian – Educational Technology & Society, 2018
Abstract electronics concepts are difficult to develop because the phenomena of interest cannot be readily observed. Visualisation skills support learning about electronics and can be applied at different levels of representation and understanding (observable, symbolic and abstract). Providing learners with opportunities to make transitions…
Descriptors: Electronics, Case Studies, Concept Formation, Scientific Concepts
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