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Anveshna Srivastava; Vihang Vaidya; Sahana Murthy; Chandan Dasgupta – British Journal of Educational Technology, 2024
Spatial perspective-taking (SPT) ability positively influences performance in STEM fields. While limited research studies have been done with school students, they have yielded inconclusive findings and, hence, here we report findings from our study with an augmented reality (AR) enhanced learning environment (ARELE), GeoSolvAR, on middle-school…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
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Yafeng Zheng; Shebing Sun; Yang Yang; Chang Xu – Research in Science Education, 2024
This study explored the differences in the effects of directive versus reflective feedback on elementary school students' conceptual understanding and epistemological beliefs in a simulation-based online science inquiry environment, by comparing more fine-grained differences in the inquiry behaviors of students who received the two types of…
Descriptors: Feedback (Response), Elementary School Students, Scientific Concepts, Epistemology
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Pujiastuti, Heni; Haryadi, Rudi – Journal of Education and e-Learning Research, 2023
Mathematical literacy is important for students to formulate, use and interpret mathematics in various contexts. The aim of this research is to determine the effectiveness of Guided Inquiry Learning-Augmented Reality (GILAR) on mathematical literacy ability. This research method used a quasi-experimental pretest and posttest design with a…
Descriptors: Mathematics Skills, Inquiry, Teaching Methods, Physical Environment
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Chou, Ren-Jye; Liang, Chih-Ping; Huang, Li-yu; She, Hsiao-Ching – Journal of Science Education and Technology, 2022
This study compared the effectiveness of online skeuomorphic physics inquiry-based learning with and without simulation on 8th-grade students' performance of scientific inquiry involving the spring unit. Two classes (58 students) were assigned to the online skeuomorphic physics inquiry-based learning with simulation, and two classes (59 students)…
Descriptors: Physics, Science Instruction, Inquiry, Grade 8
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Lai, Ting-Ling; Lin, You-Sheng; Chou, Chi-Yin; Yueh, Hsiu-Ping – Journal of Educational Computing Research, 2022
The study aims to evaluate the effectiveness of an inquiry-based virtual reality (VR) science lab used in junior high school science classes. The "Scientific Investigation VR Lab" ("SIVRLAB") is designed for 9th-grade students to learn about electrochemical cells. It is situated in a guided problem-solving context, where…
Descriptors: Curriculum Evaluation, Inquiry, Active Learning, Electronic Learning
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Yunus Emre Avcu; Yavuz Yaman – Journal of Inquiry Based Activities, 2024
A differentiated science activity was created for gifted students. The focus is on Sustainable Development Goal 15 (SDG-15) for life on land, enhancing engagement, self-regulated learning skills, and scientific creativity in gifted students. The activity spanned eight lesson hours, with tasks encouraging observation, inquiry, and creative…
Descriptors: Gifted, Individualized Instruction, Science Instruction, Computer Simulation
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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
Julie Tomczak – ProQuest LLC, 2023
This action research study aimed to find ways to adjust my practice by incorporating inquiry-based, science activities and virtual simulations to improve student conceptual understanding of physical and chemical changes. A multi-lesson, curricular intervention combining inquiry-based activities and virtual simulations was developed using…
Descriptors: Computer Simulation, Grade 5, Science Instruction, Active Learning
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Azita, Manouchehri; Ayse, Ozturk; Azin, Sanjari – Mathematics Teacher: Learning and Teaching PK-12, 2020
In this article we illustrate how one teacher used PhET cannonball simulation as an instructional tool to improve students' algebraic reasoning in a fifth grade classroom. Three instructional phases effective to implementation of simulation included: Free play, Structured inquiry and, Synthesizing ideas.
Descriptors: Algebra, Logical Thinking, Grade 5, Elementary School Mathematics
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Yun Wen; Chun Lai; Sujin He; Yiyu Cai; Chee Kit Looi; Longkai Wu – Interactive Learning Environments, 2024
The impact of Augmented Reality (AR)-based science learning on cognitive development has been established, but the effect of AR on the improvement of students' academic performance remains inconclusive. Additionally, while epistemic beliefs as a significant determinant on student learning outcomes is well-documented, there is little research in…
Descriptors: Elementary School Students, Epistemology, Beliefs, Student Attitudes
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Wen, Yun; Wu, Longkai; He, Sujin; Ng, Nathanael Hsien-Ern; Teo, Beng Chong; Looi, Chee Kit; Cai, Yiyu – Educational Technology Research and Development, 2023
Notwithstanding the advantages of incorporating Augmented Reality (AR) in education, AR's concrete uses as compared to other technologies are not fully recognised. Moreover, many of the existing studies have neglected to examine the impact of pedagogy and its corresponding instructional models, whilst implementing AR in teaching and learning. In…
Descriptors: Elementary School Students, Science Instruction, Active Learning, Inquiry
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Amy Adair; Ellie Segan; Janice Gobert; Michael Sao Pedro – Grantee Submission, 2023
Developing models and using mathematics are two key practices in internationally recognized science education standards, such as the Next Generation Science Standards (NGSS). However, students often struggle with these two intersecting practices, particularly when developing mathematical models about scientific phenomena. Formative…
Descriptors: Artificial Intelligence, Mathematical Models, Science Process Skills, Inquiry
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Liu, Chen-Chung; Wen, Cai-Ting; Chang, Hsin-Yi; Chang, Ming-Hua; Lai, Po-Han; Fan Chiang, Shih-Hsun; Yang, Chih-Wei; Hwang, Fu-Kwun – Instructional Science: An International Journal of the Learning Sciences, 2022
Virtual labs provide space for students to iteratively test, observe, and revise their understanding so as to improve their scientific literacy. However, one of the challenges that students face is that they need to think and act like scientists so as to be sensitively alert to methodological flaws and various sources of error. This study thus…
Descriptors: Science Laboratories, Computer Simulation, Science Process Skills, Educational Technology
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Reilly, Joseph M.; McGivney, Eileen; Dede, Chris; Grotzer, Tina – Journal of Experimental Education, 2021
Despite increasing calls for science education that utilizes immersive technologies and authentically model scientific inquiry, little is known about how well curricula leveraging these technologies impact students' science identity. This paper presents a mixed-methods study of identity exploration in 7th grade science students using a three-week…
Descriptors: Science Education, Educational Technology, Technology Uses in Education, Grade 7
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Wu, Juana; Guo, Rong; Wang, Zhuo; Zeng, Rongqing – Interactive Learning Environments, 2021
Developing the problem-solving abilities of elementary school students has been recognized as an important educational objective. Science curricula, because of their practical and experimental characteristics, are thought to be an important way to develop students' problem-solving ability. The use of Virtual Reality (VR) technology in teaching…
Descriptors: Video Technology, Technology Integration, Computer Simulation, Science Activities
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