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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
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
Adams, Deanne M.; Pilegard, Celeste; Mayer, Richard E. – Journal of Educational Computing Research, 2016
Learning physics often requires overcoming common misconceptions based on naïve interpretations of observations in the everyday world. One proposed way to help learners build appropriate physics intuitions is to expose them to computer simulations in which motion is based on Newtonian principles. In addition, playing video games that require…
Descriptors: Video Games, Teaching Methods, Technology Uses in Education, Simulated Environment

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