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Micro- and Macroscale Ideas of Current Among Upper-Division Electrical Engineering Students

机译:高等电气工程专业学生的微观和宏观观念

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The concept of electric current is fundamental in the study of electrical engineering (EE). Students are often exposed to this concept in their daily lives and early in middle school education. Lower-division university courses are usually limited to the study of passive electronic devices and simple electric circuits. Semiconductor physics is an upper-division course that presents the physics behind semiconductor devices in depth and exposes the students to microscale explanations of different types of current, such as drift and diffusion currents. This paper investigates how third-year college students majoring in EE link microscale and macroscale concepts of current, and what misconceptions they reveal after one quarter of advanced instruction in semiconductor physics. The interviewees were posed a problem, based on a distracting device structure that exposed student difficulties in defining current, charges and doping, and the plotting of current–voltage (I–V) characteristics. For example, some students had the naïve idea that current is the flow of a particular type of charge (i.e., only electrons or only holes) or that there is a “spectrum of doping.” Almost all students drew a one-quadrant coordinate system for the I–V curves, which might imply that students think only about positive voltages. These findings can inform further studies to identify and address misconceptions in the important area of semiconductor device physics.
机译:电流的概念是电气工程(EE)研究的基础。在日常生活和中学早期阶段,学生经常会接触到这种概念。低年级大学课程通常仅限于无源电子设备和简单电路的研究。半导体物理学是一门高级课程,深入介绍半导体器件背后的物理学,使学生可以对各种类型的电流(例如漂移和扩散电流)进行微观解释。本文研究了电子工程专业的三年级大学生如何将微观和宏观的当前概念联系起来,以及在四分之一的半导体物理高级指导下他们揭示出了哪些误解。基于分散注意力的设备结构,受访者面临一个问题,该结构暴露了学生在定义电流,电荷和掺杂以及绘制电流-电压(IV)特性图时遇到的困难。例如,有些学生天真的想法是电流是特定类型电荷的流动(即仅电子或仅空穴),或者存在“掺杂光谱”。几乎所有学生都为IV曲线绘制了一个四象限坐标系,这可能意味着学生仅考虑正电压。这些发现可以为进一步的研究提供信息,以识别并解决半导体器件物理学重要领域中的误解。

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