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Empirical Analysis of the Use of the VISIR Remote Lab in Teaching Analog Electronics

机译:在模拟电子教学中使用VISIR远程实验室的经验分析

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Remote laboratories give students the opportunity of experimenting in STEM by using the Internet to control and measure an experimental setting. Remote laboratories are increasingly used in the classroom to complement, or substitute for, hands-on laboratories, so it is important to know its learning value. While many authors approach this question through qualitative analyses, this paper reports a replicated quantitative study that evaluates the teaching performance of one of these resources, the virtual instrument systems in reality (VISIR) remote laboratory. VISIR, described here, is the most popular remote laboratory for basic analog electronics. This paper hypothesizes that use of a remote laboratory has a positive effect on students' learning process. This report analyzes the effect of the use of VISIR in five different groups of students from two different academic years (2013-2014 and 2014-2015), with three teachers and at two educational levels. The empirical experience focuses on Ohm's Law. The results obtained are reported using a pretest and post-test design. The tests were carefully designed and analyzed, and their reliability and validity were assessed. The analysis of knowledge test question results shows that the post-test scores are higher that the pretest. The difference is significant according to Wilcoxon test (p <; 0.001), and produces a Cohen effect size of 1.0. The VISIR remote laboratory's positive effect on students' learning processes indicates that remote laboratories can produce a positive effect in students' learning if an appropriate activity is used.
机译:远程实验室通过使用互联网来控制和测量实验环境,使学生有机会进行STEM实验。远程实验室在教室中越来越多地用来代替或代替动手实验室,因此了解其学习价值非常重要。尽管许多作者通过定性分析解决了这个问题,但本文还是报道了一项重复的定量研究,该研究评估了其中一种资源(现实中的虚拟仪器系统(VISIR)远程实验室)的教学效果。此处描述的VISIR是最流行的基本模拟电子设备远程实验室。本文假设使用远程实验室会对学生的学习过程产生积极影响。本报告分析了在两个不同学年(2013-2014年和2014-2015年)的五个不同组的学生中使用VISIR的效果,其中三个老师和两个教育水平。实证经验集中在欧姆定律上。使用预测试和后测试设计报告获得的结果。测试经过精心设计和分析,并评估了其可靠性和有效性。对知识测验题结果的分析表明,测验后分数高于测验前分数。根据Wilcoxon检验,差异显着(p <; 0.001),并且Cohen效应大小为1.0。 VISIR远程实验室对学生学习过程的积极影响表明,如果使用适当的活动,远程实验室可以对学生的学习产生积极影响。

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