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New teaching approaches and student motivation lead to documented gains in engineering education

机译:新的教学方法和学生的积极性导致有记录的工程教育成果

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The paper presents an integrated design for the undergraduate course Semiconductor Circuit Design of the Hamburg University of Technology (TUHH). This course lays the foundations for understanding new technologies which are increasingly present in everyday life. To ensure that graduates in electrical engineering are well trained in this area, it is particularly important to understand the concepts and relationships introduced in this course. A study of the exam results identified basic mathematical problems as hindering student performance. In the spirit of constructive alignment the course's learning objectives were reviewed and teaching methods were selected to address these deficiencies, to which end new didactic concepts have been introduced in lecture and tutorials. A novel aspect of the course design has been the integration of lecture and tutorial sessions. Homework assignments have been designed to support continuous learning using two components: One part being a review of previous tutorial sessions and the other part preparing the forthcoming lectures. The goals of these innovations are: 1) Students learn continuously throughout the semester 2) Students obtain a deep and sustained understanding of the concepts introduced in the course 3) Students can explain the working principles of various MOS (Metal-Oxide-Semiconductor) devices in different circuits Lectures were expanded by the introduction of concept questions using an audience response systems (ARS) in combination with Peer Instruction periods. This way students and teachers engaged in a feedback loop providing both, students and instructors, information about the learning status of the students. In addition, attention of students during the lectures increased. Furthermore video recordings of the lecture, student discussion forums and additional exercises and tests were made available. The new teaching methods were evaluated by monitoring results of the written examination and student satisfaction.- Both have improved significantly. The examination results improved in particular for problems probing concept understanding. Participation in some of the optional offers made to students was very high.
机译:本文介绍了汉堡工业大学(TUHH)半导体电路设计本科课程的集成设计。本课程为理解日常生活中越来越多的新技术奠定了基础。为了确保电气工程专业的毕业生在这一领域受到良好的培训,理解本课程介绍的概念和关系特别重要。对考试结果的研究发现,一些基本的数学问题阻碍了学生的表现。本着建设性结盟的精神,对课程的学习目标进行了审查,并选择了解决这些缺陷的教学方法,为此,在讲课和教程中引入了新的教学概念。课程设计的一个新颖方面是讲座和辅导课程的整合。作业被设计为支持持续学习,它使用两个组件:一个部分是对以前的教程课程的回顾,另一部分是准备即将举行的讲座的内容。这些创新的目标是:1)学生在整个学期中不断学习2)学生对课程中引入的概念有了深刻而持久的理解3)学生可以解释各种MOS(金属氧化物半导体)设备的工作原理在不同的电路中,通过使用听众响应系统(ARS)结合同伴指导时间段来引入概念性问题,扩大了讲座的范围。这样,学生和教师参与了一个反馈循环,向学生和教师提供有关学生学习状态的信息。此外,讲座期间学生的注意力也有所增加。此外,还提供了讲座,学生讨论论坛以及其他练习和测试的录像带。通过监测笔试成绩和学生满意度对新的教学方法进行了评估。-两者均得到了显着改善。考试结果得到了改善,特别是对于探索概念理解方面的问题。参与向学生提供的一些可选课程的参与率很高。

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