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Teaching strategy focused on sensory perception, students' interest and enjoyment: Successful application in Electrical Engineering (EE) lab for non-EE majors

机译:以感官知觉,学生的兴趣和享受为重点的教学策略:非EE专业的学生在电气工程(EE)实验室中的成功应用

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We report the development and successful teaching of new laboratory experiments for a large introductory course in Electrical Engineering (EE) for non-EE majors. Our goal is to create the learning environment that would engage students' senses; provide hands-on experience, to which they can easily relate; stimulate intuitive understanding of EE concepts; foster enjoyment of learning, and eventually, help them succeed in their own fields. The first experiment focuses on applications of Fourier series to the spectra of sounds of music played on a Virtual Keyboard®. In the second experiment, students solder their own filter circuit to serve has low-pass/high-pass audio filters, and then they apply their filters to an excerpt of music, with the goal of understanding effects of the filter transfer function on the audio signal through listening. Both experiments expand the conventional range of application of theory and circuits in introductory courses (usually, only standard waveforms are used, e.g. sinusoidal and square). In the scheme of the entire course, all lab projects aim to introduce realistic, practical applications that pique student interest, show students the relevance of electrical engineering, and help them transfer their newly learned skills and experience to their own fields of work and future studies.
机译:我们报告了针对非EE专业的电气工程(EE)大型入门课程的新实验室实验的开发和成功教学。我们的目标是创造一种能够激发学生感官的学习环境;提供可以轻松联系到的动手经验;激发对EE概念的直观理解;培养学习乐趣,并最终帮助他们在各自领域取得成功。第一个实验着重于将Fourier系列应用于在VirtualKeyboard®上演奏的音乐声谱。在第二个实验中,学生焊接自己的滤波器电路以提供低通/高通音频滤波器,然后将其滤波器应用于音乐摘录中,以了解滤波器传递函数对音频的影响。通过收听发出信号。这两个实验都在入门课程中扩展了理论和电路的常规应用范围(通常仅使用标准波形,例如正弦波和方波)。在整个课程的计划中,所有实验室项目的目的都是引入切合实际的实际应用,以激发学生的兴趣,向学生展示电气工程的重要性,并帮助他们将新学到的技能和经验转移到自己的工作领域和未来的研究中。 。

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