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Multi-touch Technology in Education:Digital Simulation Improves Student Comprehension, Cognitive Concept, and Anxiety

机译:多触控技术在教育中:数字模拟改善了学生理解,认知概念和焦虑

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Digital simulation technology is widely used in science education and has enormous potential for its development. Numerous studies have shown that the use of digital simulation in an education environment, especially in scientific education, is conducive to intuitive interaction and improves students' participation in their learning activities. This study investigated the effects of digital simulation with different interactive modes (based on gesture simulation and button simulation) on students' cognitive concepts, attention, and anxiety levels in an elementary physics course. To collect the students' cognitive concepts, attention, and anxiety levels, we developed a digital simulation with two different interactive interfaces and used a quasi-experimental design, in which a total of 40 sixth-grade students were randomly assigned to a gesture-or digital-based digital simulation. The experimental results showed that the digital simulation of gestures effectively improved students' cognitive concept levels. The EEG analysis showed that students in the gesturebased digital simulation had higher attention levels compared with those who used button-based digital simulation. Moreover, the operation of digital simulation is relatively difficu students using gesture-based digital simulation had greater anxiety than students using button-based digital simulation. This study suggests that the use of multi-touch gestures in science education can improve students' comprehension of scientific concepts and improve their concentration in learning activities.
机译:数字仿真技术广泛用于科学教育,具有巨大的发展潜力。众多研究表明,在教育环境中使用数字模拟,特别是在科学教育中,有利于直观的互动和提高学生参与其学习活动。本研究调查了用不同互动模式(基于手势仿真和按钮模拟)对学生的认知概念,关注和焦虑水平的数字模拟对初级物理课程的影响。要收集学生的认知概念,关注和焦虑水平,我们开发了一种具有两种不同的交互式界面的数字模拟,并使用了准确性设计,其中共有40名六年级学生随机分配给手势 - 或基于数字的数字模拟。实验结果表明,手势的数字模拟有效改善了学生的认知概念水平。 EEG分析表明,与使用基于按钮的数字模拟的人相比,手势基于数字模拟的学生具有更高的关注水平。此外,数字模拟的操作相对困难;使用基于手势的数字模拟的学生比使用基于按钮的数字模拟的学生更焦虑。本研究表明,在科学教育中使用多点触摸手势可以提高学生对科学概念的理解,提高学习活动的集中。

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