Development of Inorganic Molecular Shape Model Using 3D Printer to Strengthen Student's Conceptual Understanding

Rizal Galih Pratama, J. Harta
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Abstract

This research aims to develop a product in the form of an inorganic molecular shape model using a 3D printer, analyze the validity, practicality, effectiveness of the product, and strengthen students' conceptual understanding using the product. The method is Research and Development (R&D) based on the Analysis, Design, Development, Implementation and Evaluation (ADDIE) model. The supporting instruments for this research are product and instrument validation sheets, product readability questionnaires, pretest-posttest questions, question during the trial, observation sheets for students' conceptual understanding, and student response questionnaire to the product. The results showed that the product developed was following the ADDIE model because the five stages were carried out systematically; the product being developed has very high validity with an average percentage of 96.88%; the average percentage of practicality is 95.17%  which is categorized as very practical, and the average percentage of effectiveness is 94.69% which is categorized as very effective; the product developed can strengthen students' conceptual understanding shown on the average percentage of conceptual understanding indicators achievement during the trial was 90.61% and the observation result was 94.69%, both of which belong to very high category. There was an increase in the average pretest value of 33.93 and post-test of 63.99. The results of the Rasch analysis after using this product showed that the consistency of students' answers was 0.71 (quite good), the quality of the items was 0.93 (very good), and the interaction between the consistency of students' answers was 0.68 (quite good). The product can be used to strengthen students' conceptual understanding on the topic of molecular shape.
利用3D打印机开发无机分子形状模型,加强学生的概念理解
本研究旨在利用3D打印机制作无机分子形状模型形式的产品,分析产品的有效性、实用性、有效性,并通过产品加强学生的概念理解。该方法是基于分析、设计、开发、实施和评估(ADDIE)模型的研究与开发(R&D)。本研究的辅助工具为产品及仪器验证表、产品可读性问卷、前测后测问题、试验中问题、学生概念理解观察表、学生对产品的反应问卷。结果表明,由于系统地进行了五个阶段,产品开发遵循ADDIE模型;所开发的产品具有很高的效度,平均效度为96.88%;实用性的平均百分比为95.17%,属于非常实用,有效性的平均百分比为94.69%,属于非常有效;所开发的产品可以加强学生的概念理解,在试验期间,概念理解指标的平均达成率为90.61%,观察结果为94.69%,均属于非常高的类别。前测平均值为33.93,后测平均值为63.99。使用该产品后的Rasch分析结果显示,学生答案的一致性为0.71(较好),项目质量为0.93(很好),学生答案一致性之间的交互作用为0.68(较好)。该产品可用于加强学生对分子形状主题的概念理解。
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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