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An Analysis of Students’ Misconceptions on the Implementation of Active Learning of Optics and Photonics Approach Assisted by Computer Simulation

机译:计算机模拟辅助学生对光学和光子学方法实施积极学习的误解分析

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摘要

Misconceptions take place in a variety of Physics lesson subjects including the Light and Optics. This study aimed at determining the students’ misconceptions and the effectiveness of Active Learning of Optics and Photonics (ALOP) approach assisted by computer simulation to reduce misconceptions among students on the material of optical instruments. The mixed method was employed in this study using embedded mixed method design. The study was conducted to students of grade XI in one senior high school in Bandung. The participants were divided into two groups: control group and experimental group in which each group consisted of 23 students. A conventional learning was applied in the con-trol group while the experimental class implemented ALOP computer-aided simulation learning. The instrument used to identify students’ misconceptions were Four-Tier Optics and Photonics Test (FTOPT), consisted of 18 items, which was given during the pre-test and post-test. The results showed that misconceptions were disseminated over the concept of eyes, camera, magnifier, mi-croscopes, and telescopes. Additionally, ALOP approach using computer-aided simulations is effective to reduce students’ misconceptions on the material of op-tical instrument.
机译:在包括光和光学的各种物理课程主题中发生误解。本研究旨在确定学生的误解和主动学习的光学和光子学(ALOP)方法的有效性,通过计算机模拟辅助,减少学生对光学仪器材料的误解。使用嵌入式混合方法设计在该研究中使用了混合方法。这项研究于万隆一级高中的XI级学生进行。参与者分为两组:对照组和实验组,其中每个组由23名学生组成。在Con-Trol组中应用传统学习,而实验阶段实施了Alop计算机辅助模拟学习。用于识别学生误解的仪器是四层光学和光子学测试(FTOPT),由18项组成,在预测试和后测试期间给出。结果表明,在眼睛,相机,放大镜,mi-croscopes和望远镜的概念上传播误解。此外,使用计算机辅助模拟的ALOP方法是有效地降低学生对Op-Tical仪器材料的误解。

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