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The voiceless retroflex sibilant affricate is a type of consonantal sound, used in some spoken languages.The symbol in the International Phonetic Alphabet that represents this sound is t̠͡ʂ , sometimes simplified to tʂ or ꭧ , and the equivalent X-SAMPA symbol is ts`.
Features of the voiceless alveolar lateral affricate: Its manner of articulation is affricate, which means it is produced by first stopping the airflow entirely, then allowing air flow through a constricted channel at the place of articulation, causing turbulence.
A voiceless alveolar affricate is a type of affricate consonant pronounced with the tip or blade of the tongue against the alveolar ridge (gum line) just behind the teeth. This refers to a class of sounds, not a single sound.
The voiceless alveolo-palatal sibilant affricate is a type of consonantal sound, used in some spoken languages.The symbols in the International Phonetic Alphabet that represent this sound are t͡ɕ , t͜ɕ , c͡ɕ and c͜ɕ , and the equivalent X-SAMPA symbols are t_s\ and c_s\, though transcribing the stop component with c (c in X-SAMPA) is rare.
The English sounds spelled "ch" and "j" (broadly transcribed as [t͡ʃ] and [d͡ʒ] in the IPA), German and Italian z [t͡s] and Italian z [d͡z] are typical affricates, and sounds like these are fairly common in the world's languages, as are other affricates with similar sounds, such as those in Polish and Chinese.
The voiceless velar affricate is a type of consonantal sound, used in some spoken languages.The symbols in the International Phonetic Alphabet that represents this sound are k͡x and k͜x , and the equivalent X-SAMPA symbol is k_x.
The voiceless palato-alveolar sibilant affricate or voiceless domed postalveolar sibilant affricate is a type of consonantal sound used in some spoken languages.The sound is transcribed in the International Phonetic Alphabet with t͡ʃ , t͜ʃ tʃ (formerly the ligature ʧ ), or, in broad transcription, c .
Features of the voiceless dental non-sibilant affricate: Its manner of articulation is affricate, which means it is produced by first stopping the airflow entirely, then allowing air flow through a constricted channel at the place of articulation, causing turbulence.