Anmelden

In the case of stringed instruments like the guitar, the elastic property that determines the speed of the sound produced is its linear mass density or the mass per unit length. This is simply called the linear density. If the string's linear density is constant along the string, then the linear density is simply the total mass divided by the total length.

The string's wave speed can be regulated by varying the linear density. Tension is the other property that determines the speed of transverse waves along the string.

Note that the fundamental frequency of the string also depends on the string's length. If the string is held on a fret, for example, then its effective length decreases. That is, by changing the length of the string, the frequency can be regulated. The positions of the frets are made so that the different frequencies produced occur in a progression that is pleasing to the human ear. These different frequencies are the different musical notes. Since decreasing the string's effective length increases the frequency, the notes progress from lower to higher as different frets are held along the string.

Different strings are arranged and regulated so that their combination follows a particular pattern of fundamental frequencies. By playing different notes on the strings, different harmonics are obtained, which is the craft of playing the guitar.

Tags
Guitar StringLinear Mass DensityLinear DensityWave SpeedTensionFundamental FrequencyEffective LengthMusical NotesFretsHarmonicsSound ProductionTransverse Waves

Aus Kapitel 16:

article

Now Playing

16.7 : Problem-Solving: Tuning of a Guitar String

Waves

362 Ansichten

article

16.1 : Wanderende Wellen

Waves

4.9K Ansichten

article

16.2 : Wellen-Parameter

Waves

5.7K Ansichten

article

16.3 : Gleichungen der Wellenbewegung

Waves

4.0K Ansichten

article

16.4 : Grafische Darstellung der Wellenfunktion

Waves

1.5K Ansichten

article

16.5 : Geschwindigkeit und Beschleunigung einer Welle

Waves

3.7K Ansichten

article

16.6 : Geschwindigkeit einer Transversalwelle

Waves

1.4K Ansichten

article

16.8 : Kinetische und potentielle Energie einer Welle

Waves

3.4K Ansichten

article

16.9 : Energie und Kraft einer Welle

Waves

3.3K Ansichten

article

16.10 : Interferenz und Überlagerung von Wellen

Waves

4.6K Ansichten

article

16.11 : Reflexion von Wellen

Waves

3.6K Ansichten

article

16.12 : Ausbreitung von Wellen

Waves

2.2K Ansichten

article

16.13 : Stehende Wellen

Waves

2.9K Ansichten

article

16.14 : Modi der stehenden Wellen - I

Waves

2.8K Ansichten

article

16.15 : Modi der stehenden Wellen: II

Waves

779 Ansichten

JoVE Logo

Datenschutz

Nutzungsbedingungen

Richtlinien

Forschung

Lehre

ÜBER JoVE

Copyright © 2025 MyJoVE Corporation. Alle Rechte vorbehalten