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Kai-Yi Chin; Ching-Sheng Wang – Interactive Learning Environments, 2024
This study developed a VR-based mobile learning system to simulate the natural environment of a geopark for university students to learn geological knowledge. This learning method used a Google cardboard equipped with smartphones, where students can watch stereoscopic scenes and experience virtual environments as if visiting the geopark. In order…
Descriptors: Foreign Countries, Computer Simulation, Handheld Devices, Geology
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Çebi, Ayça; Güyer, Tolga – Interactive Learning Environments, 2022
The studies in the literature show that all learners may not benefit from hypermedia learning systems in the same way as a result of their individual differences. Learners with different individual characteristic may display different navigational pattern and they may encounter different problems in the hypermedia learning system. The aim of the…
Descriptors: Modeling (Psychology), Navigation (Information Systems), Electronic Learning, Hypermedia
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Lee, Seungyup; Baek, Jongsoo; Han, Gunhee – Interactive Learning Environments, 2018
Using a secondary device while viewing a primary device (i.e. TV), or media multitasking, is now common. Numerous researchers and practitioners have attempted to introduce secondary devices into education as a new learning environment providing additional information to the user. However, the learning-related effects of using a second screen…
Descriptors: Likert Scales, Questionnaires, Multimedia Instruction, Computer Oriented Programs
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Uysal, Murat Pasa – Interactive Learning Environments, 2016
Various methods and tools have been proposed to overcome the learning obstacles for Object-Oriented Programming (OOP). However, it remains difficult especially for novice learners. The problem may be not only adopting an instructional method, but also an Integrated Development Environment (IDE). Learners employ IDEs as a means to solve programming…
Descriptors: Evaluation, Educational Environment, Cognitive Processes, Difficulty Level