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Showing 1 to 15 of 34 results Save | Export
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Xiao-Ming Wang; Qing-Nan Hu; Gwo-Jen Hwang; Xiao-Han Yu – Interactive Learning Environments, 2023
Biology involves the understanding of life concepts and the exploration of life processes. Due to the complexity of life, the learning content of biology is often microscopic, abstract, and complex. In traditional teaching, The non-visualization of abstract concepts, rote memorization of knowledge and low classroom participation tend to make…
Descriptors: Biology, Science Instruction, Learning Motivation, Teaching Methods
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Papadimitropoulos, N.; Pavlatou, E. A. – Interactive Learning Environments, 2023
Physical experiments on real-world systems are proposed as a means to raise learning outcomes and Arduino microcontroller is highlighted as an appropriate tool to perform them. However, experimentation on a real system may encounter various barriers. Therefore, a learning environment was developed in order to perform Arduino experiments on digital…
Descriptors: Educational Technology, Technology Uses in Education, Chemistry, Science Instruction
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Xin Guan; Chunmei Sun; Gwo-jen Hwang; Kegan Xue; Zhuo Wang – Interactive Learning Environments, 2024
Play is crucial to children's development. With the prevalent use of digital technologies, children and young adults are seen playing games more often and longer on digital devices. How should teachers capitalize the advantages of games in class, without inducing more health risks or problems for children? To achieve this goal, teachers need…
Descriptors: Game Based Learning, Educational Technology, Science Instruction, Design
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Chen, Yen-Chieh; Lu, Yu-Ling; Lien, Chi-Jui – Interactive Learning Environments, 2021
Students' engagement in a learning environment has been a crucial factor in evaluating the quality of learning and predicting their academic success. With technologies being more applied in science education for enhancing learning engagement, it is important to study how learning environments with different levels of technological engagement…
Descriptors: Technology Integration, Game Based Learning, Video Technology, Conventional Instruction
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Fan-Jun Yang; Chien-Yuan Su; Wen-Wen Xu; Yue Hu – Interactive Learning Environments, 2023
Argumentation scaffolding can be used to enhance the formulation of logical arguments as well as the performance of such arguments. This study presents a web-based synchronized scientific argumentation environment integrated with prompt scaffolding to support simulation-based physics learning for elementary school students. To investigate the…
Descriptors: Scaffolding (Teaching Technique), Persuasive Discourse, Physics, Science Instruction
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Ye, Xin-Dong; Chang, Yi-Hsin; Lai, Chiu-Lin – Interactive Learning Environments, 2019
Educators have indicated that a good flipped learning design has the potential to enable teachers to use the class time effectively for conducting higher-order thinking activities and enhancing the interactions among peers and teachers. Several previous studies have also pointed out the importance of employing proper learning strategies, such that…
Descriptors: Homework, Video Technology, Educational Technology, Technology Uses in Education
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Zhu, Guangtian; Su, Xiaoling; Du, Juan; Chen, Qingwei; Xiong, Bolong; Chiang, Feng-Kuang – Interactive Learning Environments, 2023
Physics is a subject requiring strong logical thinking, and writing a problem-solving path according to logical thinking can enhance students' knowledge and problem-solving ability. The purpose of the study was to explore the effects of problem presentation of different scaffolds (MAPS or dynamic figures) on students' physical problem solving.…
Descriptors: Physics, Science Instruction, Problem Solving, Scaffolding (Teaching Technique)
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Hüseyin Ates; Juan Garzón; Georgios Lampropoulos – Interactive Learning Environments, 2024
Flipped learning has become an ally in education. However, although the literature has identified multiple benefits of using this strategy to improve student learning outcomes, its adoption and implementation by teachers in science education remain scarce. This study examines antecedents of science teachers' flipped teaching readiness to act,…
Descriptors: Science Teachers, Flipped Classroom, Readiness, Teaching Methods
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Shalaunda M. Reeves; Charlotte A. Bolch; Richard T. Bex II; Kent J. Crippen – Interactive Learning Environments, 2024
Recently, interest in understanding the prospects of virtual environments, specifically virtual reality laboratories (VR Lab) -- those that involve a first-person practica experience via a desktop computer or head-mounted display -- in science education has increased. Seemingly ingrained in the process of implementing a VR Lab is a supposition of…
Descriptors: Student Experience, Student Motivation, Student Attitudes, Beliefs
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Hasan Zuhtu Okulu; Nilay Muslu – Interactive Learning Environments, 2024
ChatGPT holds significant potential for enhancing learning through integration into education as an advanced chatbot. With the goal of harnessing this potential, our research focused on exploring the utilization of ChatGPT in designing a course plan for pre-service science teachers. We adopted a qualitative research approach and employed ChatGPT…
Descriptors: Preservice Teachers, Science Teachers, Science Instruction, Instructional Design
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Zhu, Xiaoming; Sun, Bo; Luo, Yanlin – Interactive Learning Environments, 2018
Now visualization courses have been taught at universities around the world. Keeping students motivated and actively engaged in this course can be a challenging task. In this paper we introduce our developed interactive learning system called VisMis (Visualization and Multi-modal Interaction System) for postgraduate scientific visualization course…
Descriptors: Visualization, Graduate Study, Teaching Methods, Concept Formation
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Aflalo, Ester; Zana, Lizet; Huri, Tehila – Interactive Learning Environments, 2018
The findings of the research literature about the necessity and contribution of Interactive Whiteboards (IWB) are not unequivocal and are sometimes contradictory. The study aimed to examine the interactive attributes in lessons with an IWB and the students' attitudes. Methodical structured observations of 26 science lessons were conducted in…
Descriptors: Science Instruction, Elementary School Science, Interaction, Science Teachers
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Carroll, Meredith; Lindsey, Summer; Chaparro, Maria; Winslow, Brent – Interactive Learning Environments, 2021
Mobile technology's ubiquity has caused a shift in how students learn and how pedagogy can take place. Educators have the potential to engage students more fully in the modern educational environment, by making learning content and interactions accessible via mobile devices, both within and outside of the classroom. There is a need to leverage the…
Descriptors: Learner Engagement, Teaching Methods, Educational Environment, Handheld Devices
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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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Herodotou, Christothea; Muirhead, Dave K.; Aristeidou, Maria; Hole, Malcolm J.; Kelley, Simon; Scanlon, Eileen; Duffy, Marcus – Interactive Learning Environments, 2020
Virtual Learning Environments (VLEs) are becoming commonplace in Higher Education. Amongst the latest VLE developments is the design and use of Virtual Microscopes (VMs) that allow for viewing and manipulation of online images by multiple students. Although students are found to be generally satisfied with the use of VMs, it is yet not known what…
Descriptors: Educational Technology, Computer Simulation, Higher Education, Laboratory Equipment
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