Planned Chaos in Electrical Engineering Education

Thomas Fuhrmann, M. Niemetz
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引用次数: 2

Abstract

This paper presents the idea to intentionally introduce planned chaos into electrical engineering lectures and lab courses to improve students’ learning success. The reason to present this idea are several personal experiences in daily teaching. If students experience some uncertainty in their study program, it is seen that they have higher challenges and therefore higher learning success in managing uncertain situations. In these ways, students acquire methodical and social competences to deal with uncertainty and achieve productive results in an unstable working environment. If, however, the chaos is too large, students are over-strained with the situation, distracted from the actual learning targets and consequently learning results will be worse, drop-out rates will increase and they will be frustrated. The beneficial level of uncertainty depends on the student culture, academic progress and personality characteristics. The competence to deal with complex situations is essential for later professional life where unexpected circumstances occur regularly. Introducing planned chaos into lectures and lab courses has not to be confused with a missing didactic concept and is no justification for a bad preparation. Planned chaos is a demanding concept for professors to find the right implementation for an optimized learning outcome. These described findings are experienced from practical work and student evaluations.
电气工程教育中的计划混沌
本文提出有意将计划混沌引入电气工程课程和实验课程,以提高学生的学习成功率。提出这一观点的原因是我在日常教学中的几个亲身经历。如果学生在他们的学习计划中经历一些不确定性,可以看到他们在管理不确定性情况时具有更高的挑战,因此更高的学习成功率。通过这些方式,学生获得了处理不确定性的系统和社会能力,并在不稳定的工作环境中取得了富有成效的成果。然而,如果混乱太大,学生对这种情况过度紧张,从实际的学习目标上分心,因此学习效果会更差,辍学率会增加,他们会感到沮丧。不确定性的有益程度取决于学生的文化、学业进步和个性特征。处理复杂情况的能力对于以后经常发生意外情况的职业生涯至关重要。在讲座和实验课程中引入有计划的混乱不能与缺失的教学概念相混淆,也不能成为准备不充分的理由。有计划的混乱是一个要求教授找到最佳学习结果的正确实施方法的概念。这些发现来自实际工作和学生评价。
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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