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Deeper Theoretical Understanding by Means of Practical Experience in Electric and Electronic Circuits for Freshmen

机译:通过用于新生的电气和电子电路的实践经验更深入的理论理解

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A traditional way to teach bachelor students in electrical engineering is organized such that theoretical knowledge is predominant in the first year while applications and practical experiences are reserved for later stages of their education. In this contribution, we want to introduce a reverse approach: In a freshmen course at Bonn-Rhein-Sieg University of Applied Science, students gain hands-on experience with resistances, condensers and other active parts, like transistors or relays from the very first day. We present how the combination of practical experience directly linked with theoretical knowledge enhances students' learning. It promotes deeper understanding of the theory and a better transfer between theory and practice. This teaching approach is adapted to address two main goals: First, to give practical experience to first-semester students as a basis for further laboratory and working situations. Second, to create a deeper and more sustainable understanding of physics by directly observing the effects that are described in formulas. The key to success is to find an efficient solution to carry out this approach with the given spatial and financial resources - which means, to do it in the lecture hall with very few material resources. To show that this innovative teaching concept really enhances the competencies of the students, an innovative evaluation approach was used where the students have to reflect upon their competencies before and after the course.
机译:传统的方式来教本科学生在电气工程的组织使理论知识是在第一年主要在应用程序和实践经验是留给他们的教育的后期阶段。在这方面的贡献,我们要为大家介绍的逆向方法:在课程在应用科学波恩 - 莱茵 - 西格大学一年级新生,学生获得动手用电阻,电容器等有源器件的经验,就像从最初的晶体管或继电器日。我们提出怎样的实践经验相结合,直接与理论知识提高学生的学习联系起来。它促进理论认识的不断深入,理论与实践之间的更好的传递。这种教学方法适合于解决两个主要目标:第一,给予第一学期的学生,作为进一步的实验室和工作情况的基础实践经验。其次,通过直接观察,在公式中描述的效果创造物理学更深入,更持久的理解。成功的关键是找到一个有效的解决方案,以开展与给定的空间和财力这种做法 - 这意味着,除了极少数物力做报告厅。为了证明这种创新的教学理念真正提高学生的能力,使用了创新的评价方法,把学生有前后课程后在他们的能力来体现。

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