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A qualitative approach to teaching capacitive circuits

机译:定性教学电容电路的方法

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We have investigated students' qualitative understanding of dc circuits containing resistors and a capacitor. We found that a year after traditional lecture instruction as part of an introductory physics course, most students were unable to predict the behavior of a series circuit consisting of a battery, a bulb, and a capacitor. Among the difficulties identified we found that almost half of the students implicitly abandoned the idea that a complete circuit is necessary for a bulb to light when a capacitor is introduced into the circuit. We have developed curriculum that enables students to construct a phenomenological model in which they liken the behavior of a capacitor to that of a wire, a switch, and a battery; this allows them to qualitatively describe circuits with batteries, bulbs, and capacitors. We have also developed curriculum on the determination of RC times. Post-test results show a significant increase in understanding of capacitive circuits.
机译:我们调查了学生对包含电阻器和电容器的直流电路的定性理解。我们发现,作为物理入门课程的一部分,在进行传统讲座指导后的一年,大多数学生无法预测由电池,灯泡和电容器组成的串联电路的行为。在发现的困难中,我们发现几乎一半的学生隐含地放弃了将电容器引入电路时灯泡必须点亮完整电路的想法。我们开发了课程,使学生能够建立一种现象学模型,使他们将电容器的行为比喻为电线,开关和电池的行为。这使他们能够定性地描述带有电池,灯泡和电容器的电路。我们还开发了有关确定RC时间的课程。测试后的结果表明,对电容电路的理解有了很大的提高。

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