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Augmented reality direct current glow discharge experimentation

机译:增强现实直接电流发光放电实验

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The glowing discharges of plasma obtained by introducing direct current high voltages between two electrodes in a chamber that contains a low pressure gas produces a spectacular effect that makes it attractive to be used as a laboratory experiment for students. Setting up this experiment is however costly and has crucial safety issues to be addressed. An augmented reality approach here allows students to conduct such an experiment effectively. It was designed to guide students on how to conduct the experiment safely and properly, as well as to allow them to note the voltage breakdown values according to Paschen’s rule. The tool has the strong advantage of allowing students to conduct experimentation without removing any of the real-life and tactile features that help to constitute cognition events in the natural world. It also yielded positive responses when tested on 39 high school students as part of an outreach program for science and technology.
机译:通过在含有低压气体的腔室中的两个电极之间引入直接电流的直流高压而获得的等离子体的发光放电产生了一种壮观的效果,使其使其具有用于学生的实验室实验。 然而,建立此实验昂贵并具有要解决的安全问题。 这里的增强现实方法允许学生有效地进行这样的实验。 它旨在指导学生如何安全妥善安全地进行实验,并允许他们注意根据Paschen的规则的电压击穿值。 该工具具有强大优势,允许学生进行实验,而无需删除任何现实和触觉特征,有助于构成自然界中的认知事件。 当39名高中学生测试时,它还产生了积极的反应,作为科学技术的外展计划的一部分。

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