Pengembangan E-modul Interaktif Berbasis Android dan Nature of Science Pada Materi Ikatan Kimia dan Gaya Antar Molekul Untuk Menumbuhkan Literasi Sains Siswa

Lalu Bhabiet Rinjani Accraf, S. Suryati, Yusran Khery
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引用次数: 5

Abstract

Chemical bond sand intermolecular forces have abstract characteristics. Thepresence of technology in learning media can help students understand theconcept. The learning media in question can be in the form of an androidbasedinteractive e-module that provides convenient accessibility for users. Topresent the atmosphere of science learning, the e-module can be structuredwith the orientation of the Nature Of Science. This research and developmentaims to produce an android-based interactive e-module prototype with thenature of science oriented on chemical bonding and intermolecular forcessubject material to foster students' scientific literacy. This type of researchand development study was carried out with the Nieven development modelwhich consisted of 4 stages: (1) preliminary research stage, (2) prototypingstage ,(3) summative evaluation stage, and (4) systematic reflection anddocumentation stage. However, due to limited resources, this study wascarried out until summative evaluation. With the presentation formula andwith the categories, the results of expert validation obtained an averagepresentation of 90% with very feasible categories, and practical test resultson chemistry teachers obtained avalue of 95% with very feasible categoriesand the results of limited group trials obtained 85% with very decentcategory. Therefore, it can be concluded that the interactive e-moduleprototype that developed is very feasible and can be proceed to abroaderstage in fostering students' literacy skills.
以Android为基础的互动e模块的开发和科学的本质,以分子间的化学键和力为基础,培养学生的科学素常
化学键和分子间力具有抽象的特征。技术在学习媒体中的存在可以帮助学生理解这个概念。所讨论的学习媒体可以采用基于android的交互式电子模块的形式,为用户提供方便的访问。在科学学习的氛围下,电子模块可以以科学的本质为导向进行构建。本研究开发的目的是制作一个基于机器人的交互式电子模块原型,具有以化学键和分子间力为导向的科学性质,以培养学生的科学素养。这种类型的研发研究采用Nieven开发模型进行,该模型包括4个阶段:(1)初步研究阶段,(2)原型设计阶段,(3)总结性评估阶段,(4)系统反思和文档化阶段。然而,由于资源有限,本研究一直进行到总结性评价。利用表述公式和类别,专家验证结果在非常可行类别下的平均表述率为90%,化学教师实践测试结果在非常可行类别下的平均表述率为95%,在非常合适类别下的有限群体试验结果在非常合适类别下的平均表述率为85%。由此可见,所开发的互动式电子模块原型在培养学生读写能力方面是非常可行的,可以推广到国外。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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