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Showing 1 to 15 of 32 results Save | Export
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De Back, Tycho T.; Tinga, Angelica M.; Louwerse, Max M. – Interactive Learning Environments, 2023
Immersive virtual environments hold unexplored potential to scaffold and stimulate learning in multiple ways for the purpose of increasing potential learning gains. Yet, the number of implementations in educational settings remains very limited. One reason for limited implementation of immersive virtual environment applications may be a lack of…
Descriptors: Cooperation, Educational Environment, Electronic Learning, Distance Education
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Lahcen Oubahssi; Claudine Piau-Toffolon; Oussema Mahdi – Interactive Learning Environments, 2024
In this paper, we address the issue of the design and deployment of VR-oriented pedagogical scenarios by teachers as designers. To provide practical and theoretical solutions, we analyse the various existing models and tools for assisting teachers in the design and deployment of virtual reality learning environments (VRLEs). We identify a need for…
Descriptors: Computer Simulation, Teaching Methods, Instructional Design, Technology Uses in Education
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Muhittin Sahin – Interactive Learning Environments, 2024
Learning analytics aims to improve learning and teaching in digital learning environments by optimizing them. Real-time feedback, suggestions, directions, and interventions are structured in the digital learning environments. In order to structure more effective interventions, it is crucial to ascertain which of these services offered to students…
Descriptors: Learning Analytics, Intervention, Student Attitudes, Preferences
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Jelena Mihajlovic-Milicevic; Miloš Radenkovic; Aleksandra Labus; Danijela Stojanovic; Zorica Bogdanovic – Interactive Learning Environments, 2024
This paper studies the problem of coordination and supervision of virtual teams and their capabilities. The goal is to develop a model suitable for managing virtual student teams specialized in the development of smart environments. The developed model is based on SAFe and DevOps, which when combined provide us with a framework for the evaluation…
Descriptors: Educational Environment, Virtual Classrooms, Group Instruction, Active Learning
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Duan, JinJu; Lu, Lin; Xie, Kui – Interactive Learning Environments, 2023
Knowledge construction can be facilitated through different types of social interactive environment. A knowledge network environment (KN) develops a knowledge-centered network visualizing the structure of collective knowledge. A social network environment (SN) creates a people-centered network visualizing the social relationships among people.…
Descriptors: Educational Environment, Cooperative Learning, Social Networks, Interpersonal Relationship
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Antje Boomgaarden; Katharina Loibl; Timo Leuders – Interactive Learning Environments, 2023
PS-I learning approaches with an initial problem-solving phase (PS) followed by an instruction phase (I) can be optimised by providing adaptive (individualised) instruction that builds on students' problem-solving products. A computer-based implementation of both phases offers the possibility of adaptivity at the transition from the…
Descriptors: Computer Assisted Instruction, Technology Uses in Education, Fractions, Educational Environment
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Kanika; Shampa Chakraverty; Pinaki Chakraborty; Manan Madan – Interactive Learning Environments, 2023
The study aims to investigate the effect of homogenous and heterogeneous grouping on students' achievement and experiences of learning in a collaborative environment. A collaborative learning environment has been used as a pedagogical tool for a long time now. However, there is no clarity on which grouping strategy to use. In this paper, we study…
Descriptors: Academic Achievement, Educational Environment, Cooperative Learning, Grouping (Instructional Purposes)
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Shang Zhang – Interactive Learning Environments, 2023
The study aims to investigate the dynamics of forming critical and creative thinking of music students in static or mobile interactive learning environments. Two experimental groups were formed: 48 music students during the study used predominantly static interactive learning environments for education; 49 music students during the experiment used…
Descriptors: Music Education, Interaction, Multimedia Materials, Educational Environment
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Juan Garzón; Georgios Lampropoulos – Interactive Learning Environments, 2024
The benefits of mobile learning for science education have been widely described; however, there is scarce evidence of its effect on student learning. This article presents a meta-analysis of 44 empirical studies to assess the effect of mobile learning on students' learning at K-12 levels. Moreover, the study considered the moderating effect of…
Descriptors: Handheld Devices, Educational Technology, Science Education, Elementary Secondary Education
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Ilana Dubovi – Interactive Learning Environments, 2023
As virtual reality (VR) technologies have been increasingly adopted in the educational field, careful consideration and evaluation of instructional modes to support learning with VR are needed. This study focuses on evaluation of two instructional modes: direct interaction and manipulation of the VR learning environment; and the vicarious approach…
Descriptors: Computer Simulation, Simulated Environment, Educational Environment, Interaction
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Quadir, Benazir; Yang, Jie Chi; Chen, Nian-Shing – Interactive Learning Environments, 2022
As the use of online learning has continued to expand, there has been a growing demand for advanced software or social sites that can enhance learning outcomes in online settings. It is important to explore how learner-learner, learner-teacher and learner-content interactions affect on learning outcomes while using the social sites such as…
Descriptors: Outcomes of Education, Electronic Publishing, Web Sites, Educational Environment
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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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Li, Jiansheng; Lin, Yuyu; Sun, Mingzhu; Shadiev, Rustam – Interactive Learning Environments, 2023
This study examined whether socially shared regulation of learning (SSRL) enhances students' algorithmic thinking performance, promotes learning participation and improves students' learning attitudes through game-based collaborative learning. The students learned algorithmic knowledge and completed programing tasks using Kodu, a new visual…
Descriptors: Cooperative Learning, Game Based Learning, Educational Environment, Algorithms
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Mohamed M. Mostafa – Interactive Learning Environments, 2023
Interactive Learning Environments (ILE) is a leading international journal in the design and use of interactive learning environments. In this study we conduct a comprehensive bibliometric analysis spanning three decades to objectively examine the journal's impactful authors, citation patterns, collaboration networks and emerging trends.…
Descriptors: Bibliometrics, Network Analysis, Developing Nations, Developed Nations
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Yang, Qi-Fan; Hwang, Gwo-Jen; Sung, Han-Yu – Interactive Learning Environments, 2020
The present study aims to investigate the trends of mobile learning in physical education by reviewing the journal publications from the Scopus database. Several dimensions, including application domains, adopted mobile devices, research methods, research subjects, adopted teaching strategies, research issues, and learning locations are taken into…
Descriptors: Physical Education, Educational Research, Educational Trends, Technology Integration
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