Development of a mobile learning network for science with augmented reality and its impact on students’ literacy and numeracy

Ucu Cahyana, Ika Lestari, Irwanto Irwanto, JarotSembodo Suroso
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Abstract

The aim of the current research is to develop the Mobile Learning Network for Science application with Augmented Reality (MLNFS-AR) application on the topic of atomic structure and chemical equilibrium. The study was conducted in four public schools in Jakarta, Indonesia. The Borg and Gall development cycle was adopted in this study, including preliminary research, planning and developing learning media, and validation, evaluation, and revision. Regarding the assessment results from media experts, the mobile learning application was declared very feasible with a percentage of 91.7% for the topic of atomic structure and 87.2% for the topic of chemical equilibrium. The results of the material and language feasibility assessments were 81.6% for the topic of atomic structure and 82.3% for the topic of chemical equilibrium. The results of the media assessments for students were 92.9% for the topic of atomic structure and 89.9% for the topic of chemical equilibrium. The results of the media assessment by chemistry teachers were 97.1% for the topic of atomic structure and 94.7% for the topic of chemical equilibrium. Overall, this mobile learning medium is categorized as very feasible to use as a learning support medium. In addition, the MLNFS-AR app is effective in improving student literacy and numeracy. In sum, the mobile learning app, MLNFS-AR, can be used as a flexible learning medium, can be used anytime and anywhere, and makes it easier for students to learn chemistry.
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利用增强现实技术开发科学移动学习网络及其对学生识字和算术能力的影响
本研究旨在开发以原子结构和化学平衡为主题的增强现实科学移动学习网络应用程序(MLNFS-AR)。研究在印度尼西亚雅加达的四所公立学校进行。本研究采用了博格和盖尔开发周期,包括前期研究、规划和开发学习媒体,以及验证、评估和修订。根据媒体专家的评估结果,原子结构主题和化学平衡主题的移动学习应用分别以 91.7% 和 87.2% 的比例被宣布为非常可行。对材料和语言的可行性评估结果是,原子结构主题为 81.6%,化学平衡主题为 82.3%。针对学生的媒体评估结果为:原子结构主题 92.9%,化学平衡主题 89.9%。化学教师对媒体的评估结果是,原子结构主题为 97.1%,化学平衡主题为 94.7%。总体而言,该移动学习媒体被归类为非常可行的学习辅助媒体。此外,MLNFS-AR 应用程序还能有效提高学生的读写能力和计算能力。總括而言,流動學習應用程式 MLNFS-AR 可作為靈活的學習媒介,隨時隨地使用,讓學生更容易學習化學。
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