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Rasch Measurement Analysis for Validation Instrument to Evaluate Students Technical Readiness for Embedded Systemsud

机译:用于验证工具的Rasch测量分析,以评估学生对嵌入式系统的技术准备程度 ud

摘要

Embedded systems have become a significant manufacturing sector and essential in our life due to their large applications. As a result, higher education institutions acknowledge the significance for offering embedded system design course to electrical, electronics, and computer engineering students. Unfortunately, embedded systems design course continues to be challenging and complex despite current attempts in introducing new embedded system teaching methods. This paper deals with this issue by developing and validating an instrument to measure students' readiness to learn embedded systems using Rasch model. An expert panel was used to verify the content validity and a pilot study (N = 40 respondents) was performed to measure the instrument reliability. A total of 365 respondents from different universities completed the 10-item scale and provided demographic data. The scale dimensionality was evaluated using WINSTEPS 3.92.1, with results showed that all the items fit the Rasch measurement model with acceptable fit index (0.6-1.4) and expressed revealed good consistency, with reliability alpha of 1.00 and 0.72 for items and persons respectively. The instrument was found to have appropriate psychometric properties, and the overall results are well aligned with theoretical expectations. This work has shown that the students were not technically ready for embedded system study.
机译:嵌入式系统由于其庞大的应用程序,已成为重要的制造部门,并成为我们生活中必不可少的部分。因此,高等教育机构认识到为电气,电子和计算机工程专业的学生提供嵌入式系统设计课程的重要性。不幸的是,尽管当前尝试引入新的嵌入式系统教学方法,但是嵌入式系统设计课程仍然是具有挑战性和复杂性的。本文通过开发和验证一种可以测量学生使用Rasch模型学习嵌入式系统的意愿的工具来解决这个问题。使用一个专家小组来验证内容的有效性,并进行了一项初步研究(N = 40位受访者)以测量仪器的可靠性。来自不同大学的365名受访者完成了10项问卷,并提供了人口统计数据。使用WINSTEPS 3.92.1评估量表尺寸,结果显示所有项目均符合Rasch测量模型,且拟合指数可接受(0.6-1.4),并显示出良好的一致性,项目和人员的可靠性alpha分别为1.00和0.72。 。发现该仪器具有适当的心理计量学特性,并且总体结果与理论预期高度吻合。这项工作表明,学生在技术上还没有为嵌入式系统学习做好准备。

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