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声学子计划:在 COVID-19 大流行期间,为本科工程实验课程而设立的实验室和学生主导的项目。

Acoustics@Home: Laboratories and student-led projects conducted for an undergraduate engineering experimentation course during the COVID-19 pandemic.

机构信息

Department of Mechanical Engineering, The Cooper Union for the Advancement of Science and Art, 7 East 7th Street, New York, New York, USA, 10003.

出版信息

J Acoust Soc Am. 2022 Jul;152(1):43. doi: 10.1121/10.0011919.

Abstract

Hands-on, project-based learning was difficult to achieve in online classes during the COVID-19 pandemic. The Engineering Experimentation course at Cooper Union teaches third-year mechanical engineering students practical experimental skills to measure physical phenomenon, which typically requires in-person laboratory classes. In response to COVID, a low-cost, at-home laboratory kit was devised to give students tools to conduct experiments. The kit included a microcontroller acting as a data-acquisition device and custom software to facilitate data transfer. A speed of sound laboratory was designed with the kit to teach skills in data collection, signal processing, and error analysis. The students derived the sound speed by placing two microphones a known distance apart and measuring the time for an impulsive signal to travel from one to the other. The students reported sound speeds from 180.7-477.8 m/s in a temperature range from 273.7-315.9 K. While these reported speeds contained a large amount of error, the exercise allowed the students to learn how to account for sources of error within experiments. This paper also presents final projects designed by the students at home, an impedance tube and two Doppler shift experiments, that exhibit successful and effective low-cost solutions to demonstrate and measure acoustic phenomenon.

摘要

在 COVID-19 大流行期间,动手实践、基于项目的学习在在线课程中很难实现。库伯联盟学院的工程实验课程为三年级机械工程专业的学生教授实用的实验技能,以测量物理现象,这通常需要亲自进行实验室课程。为了应对 COVID-19,设计了一种低成本的家庭实验室套件,为学生提供进行实验的工具。该套件包括一个充当数据采集设备的微控制器和定制软件,以方便数据传输。使用该套件设计了一个声速实验室,教授数据收集、信号处理和误差分析方面的技能。学生们通过将两个麦克风放置在已知的距离上,并测量脉冲信号从一个麦克风传播到另一个麦克风所需的时间,从而得出声速。学生们在 273.7-315.9 K 的温度范围内报告的声速在 180.7-477.8 m/s 之间。虽然这些报告的速度包含大量误差,但该实验让学生了解了如何在实验中考虑误差源。本文还介绍了学生在家中设计的期末项目,即阻抗管和两个多普勒频移实验,这些项目展示了成功有效的低成本解决方案,用于演示和测量声学现象。

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