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Basic physics of the violin
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Basic physics of the violin : ウィキペディア英語版
Basic physics of the violin

The distinctive sound of a violin is the result of interactions between its many parts. Drawing a bow across the strings causes them to vibrate. This vibration is transmitted through the bridge and sound post to the body of the violin (mainly the top and back), which allows the sound to effectively radiate into the surrounding air. The tension and type of strings, placement and tension of the sound post, quality of the bow, and the construction of the body, all contribute to the loudness and tonal quality of the sound.
==Strings==
The strings of a violin are stretched across the bridge and nut of the violin so that the ends are essentially stationary, allowing for the creation of standing waves. The fundamental frequency and harmonic overtones of the resulting sound depend on the material properties of the string, such as the tension, length, mass, elasticity and damping factor.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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