基于高级频谱分析仪Pro的古筝声频分析

Haris Rosdianto, S. Sumarli, S. Suryati
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引用次数: 0

摘要

如果结合实践活动,对声音频率的物理学习将会更有效。这种实习活动可以通过将其与文化联系起来来完成,因为文化价值在物理学习中具有实现的潜力,例如乐器的声音频率。至于本研究使用的文化是古筝。本研究旨在对古筝的音频进行分析,对古筝的音频与本音的比较,对古筝的音频与八度音频的比较。采用的研究方式是基于实验室实验,借助智能手机中已经安装的Advanced Spectrum Analyzer Pro应用程序测量21根古筝琴弦的声音频率。分析结果表明,弦越长,产生的声音频率越低。简单的线性回归检验表明,声音的频率沿原音和八度音呈线性分布。研究结果可以应用于物理学习,通过开展实习活动,并利用先进的频谱分析仪Pro应用程序测量乐器和其他可以发出声音的物体的声音频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Sound Frequency on Guzheng Using Advanced Spectrum Analyzer Pro
Physics learning about sound frequency will be more effective if equipped with practicum activities. This practicum activity can be done by linking it with a cultural because cultural values have the potential to be implemented in physics learning, such as musical instruments for sound frequency. As for the culture used in this research is the Guzheng. This research aims to analyzed  of the Guzheng sound frequency, the comparison of the sound frequency to the prime tones, and the comparison of the sound frequency to the octave tones. The research type that was used is based on laboratory experiment with the aids of Advanced Spectrum Analyzer Pro application which is already installed in the smartphone to measure the sound frequency of 21 strings of Guzheng. The result of the analyzed showed that the longer of string  so the sound frequency produced is the lower. As for of simple linear regression test showed that the sound frequency is linearly distributed to the prime tones and to the octave tones. The result of research can be applied in physics learning by conducting practicum activities and utilizing technology by the Advanced Spectrum Analyzer Pro application to measure the sound frequency both on musical instruments and on other objects that can make a sound.
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