Development of Learning Media Moodle-Based on Static Fluids

Halimatush S.T Utari, Rini Budiharti, Sukarmin Sukarmin, Daru Wahyuningsih, Fairusy F Haryani
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Abstract

The purpose of this study was to develop a physics learning media Moodle-based with a scientific approach to static fluid that is feasible to use in the learning process. Previous research found that the media developed did not contain simulations which are very necessary in learning physics. Therefore, it is necessary to develop media that supports simulating physics practicums, especially in static fluids, and interactive. This study used the research and development (RnD) method, with the model ADDIE. However, because the goal was only to get the feasibility of the media, the steps were limited to three stages, which were Analyze, Design, and Development. This media is equipped with simulations using PhET and another Virtual Laboratory which can be accessed online through belajarsains-uns.com. The result is that the physics learning media Moodle-based on static fluids was successfully developed with very good criteria based on the assessments from expert validators, peer reviewers, and reviewers around 1364 of 1476. Meanwhile, during trials, some errors are found in the spelling of sentences. After revising, an increased score of the pre-test and post-test showed that learning media was effectively used and the questionnaire result met very good criteria, 5728 of 6840
基于静态流体的学习媒体模块的开发
本研究的目的是开发一种基于moodle的物理学习媒体,采用科学的静态流体方法,可以在学习过程中使用。以往的研究发现,所开发的媒体没有包含物理学习中非常必要的模拟。因此,有必要开发支持模拟物理实习的媒体,特别是在静态流体中,并具有互动性。本研究采用研发(RnD)方法,采用ADDIE模型。然而,因为目标只是获得媒体的可行性,所以步骤被限制在三个阶段,即分析,设计和开发。该媒体配备了使用PhET和另一个虚拟实验室的模拟,可以通过belajarsains-uns.com在线访问。结果是,基于静态流体的物理学习媒体moodle成功开发,并根据专家验证者、同行审稿人和审稿人在1364 / 1476左右的评估得出了非常好的标准。同时,在测试过程中,也发现了一些句子拼写错误。修改后的前测和后测分数均有所提高,表明学习媒体得到了有效的利用,问卷结果达到了很好的标准,6840分中的5728分
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