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A FAN-C Exploration of RC Circuits

机译:RC电路的扇形探索

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摘要

Recently, small computer fans have been demonstrated to be an effective method for teaching simple resistive circuits both qualitatively and quantitatively. The current through the fans is related to the rotational speed of the fans and allows multiple senses to be engaged (touch, sight, and hearing). Methods for learning simple circuits in an effective and accessible way have been explored for decades, and the prevailing approach has been the use of incandescent light bulbs. However, light bulbs can only be used to build a qualitative foundation. Quantitative experiments require non-bulb circuits, as the resistance of incandescent light bulbs changes with current. When fans are used, plots of current vs. voltage exhibit a linear relationship, which provides a nearly constant effective resistance for the fan. This suggests that fans can also be used to explore RC circuits both qualitatively and quantitatively, where the fans act as the resistive elements as well as the indicator. In this contribution, we will demonstrate that computer fans can be used to qualitatively explore the charging and discharging times for RC circuits. By monitoring the voltage across the capacitor as a function of time, we will also show that fans can be used for quantitative RC analysis.
机译:最近,小型计算机风扇已被证明是定性和定量教授简单电阻电路的有效方法。通过风扇的电流与风扇的转速有关,允许多种感官(触摸、视觉和听觉)参与。几十年来,人们一直在探索以一种有效且易于理解的方式学习简单电路的方法,而最流行的方法是使用白炽灯泡。然而,灯泡只能用来建立一个定性的基础。定量实验需要非灯泡电路,因为白炽灯泡的电阻随电流变化。当使用风扇时,电流与电压的曲线图呈线性关系,这为风扇提供了几乎恒定的有效电阻。这表明,风扇也可用于定性和定量地探索RC电路,其中风扇充当电阻元件和指示器。在本文中,我们将展示计算机风扇可以用来定性地探索RC电路的充电和放电时间。通过监测电容器两端的电压随时间的变化,我们还将表明风扇可用于定量RC分析。

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