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The violin is unusual in that it produces frequencies beyond the upper audible limit for humans. [18] The fundamental frequency and overtones of the resulting sound depend on the material properties of the string: tension, length, and mass, [3] as well as damping effects [12] and the stiffness of the string. [19]
Two different notations of natural harmonics on the cello. First as sounded (more common), then as fingered (easier to sightread). In physics, acoustics, and telecommunications, a harmonic is a sinusoidal wave with a frequency that is a positive integer multiple of the fundamental frequency of a periodic signal.
In most pitched musical instruments, the fundamental (first harmonic) is accompanied by other, higher-frequency harmonics. Thus shorter-wavelength, higher-frequency waves occur with varying prominence and give each instrument its characteristic tone quality. The fact that a string is fixed at each end means that the longest allowed wavelength ...
Occasionally, an adult with a small frame may use a so-called 7 ⁄ 8 size violin instead of a full-size instrument. Sometimes called a lady's violin, these instruments are slightly shorter than a full size violin, but tend to be high-quality instruments capable of producing a sound comparable to that of fine full size violins. The sizes of 5 ...
A violin consists of a body or corpus, a neck, a finger board, a bridge, a soundpost, four strings, and various fittings.The fittings are the tuning pegs, tailpiece and tailgut, endpin, possibly one or more fine tuners on the tailpiece, and in the modern style of playing, usually a chinrest, either attached with the cup directly over the tailpiece or to the left of it.
This device allows matching the frequency of the xenon flash lamp to the frequency of vibration of the string. In a dark room, this clearly shows the waveform. Otherwise, one can use bending or, perhaps more easily, by adjusting the machine heads, to obtain the same, or a multiple, of the AC frequency to achieve the same effect. For example, in ...
Playing a harmonic on a string. Here, "+7" indicates that the string is held down at the position for raising the pitch by 7 semitones. Playing a string harmonic (a flageolet) is a string instrument technique that uses the nodes of natural harmonics of a musical string to isolate overtones.
The playing ranges of the instruments in the violin family overlap each other, but the tone quality and physical size of each distinguishes them from one another. The ranges are as follows: violin: G 3 to E 7 (practical, notes up to A7 are possible); viola: C 3 to A 6 (conservative); violoncello: C 2 to A 5 (conservative); and double-bass: E 1 to C 5 (slightly expanded from conservative estimate).
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