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The glockenspiel (/ ˈ ɡ l ɒ k ə n ʃ p iː l / GLO-kən-shpeel; German pronunciation: [ˈɡlɔkənˌʃpiːl] or [ˈɡlɔkn̩ˌʃpiːl], Glocken: bells and Spiel: play) or bells is a percussion instrument consisting of pitched aluminum or steel bars arranged in a keyboard layout. This makes the glockenspiel a type of metallophone, similar to ...
Maurice Ravel preferred the keyboard version of the instrument because it can play a true ff dynamic for brilliance and iridescence in orchestral climaxes. [3] In the late 20th century, the firm of Bergerault began manufacturing a three-octave (F 2 –E 4 ) mallet instrument with a damping mechanism operated by a foot pedal, which is capable of ...
They are a mallet percussion instrument in the metallophone family that is essentially a cross between the vibraphone, glockenspiel, and celesta. They have bars made of aluminum. [1] They sound one octave down from the glockenspiel, or one octave above concert pitch and generally have a range of 2 + 1 ⁄ 2 octaves.
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The glockenspiel is the mallet percussion instrument most often used as a part of the battery. The tradition of marching the glockenspiel as part of the battery is common in many countries, such as in the Filipino drum and lyre corps.
See also untuned percussion Pitched percussion: A glockenspiel and a set of crotales in use.. This subsection is traditionally called tuned percussion, [2] however the corresponding term untuned percussion is avoided in modern organology in favour of the term unpitched percussion, so the instruments of this subsection are similarly termed pitched percussion.
The main emphasis of the front ensemble are the mallet instruments: marimba, vibraphone, glockenspiel, chimes, crotales, and xylophone. Some marching band circuits also allow non-standard instruments (such as the violin ) or electronic instruments (such as synthesizers and bass guitars ) in the pit.
He experimented with the instrument's acoustics and tuning, and developed the first "scientifically tuned" glockenspiel. On the Sensations of Tone by German physician and physicist Hermann von Helmholtz was a strong influence on Deagan's advances. [6] The company remained in the control of Deagan's descendants for two generations beyond.