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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

The nature of vocal sounds

West, Robert W. January 1900 (has links)
Thesis (Ph. D.)--University of Wisconsin, 1925. / Cover title. "Reprinted from the Quarterly journal of speech education, vol. xii, no. 4." Bibliography: p. 34.
2

Ein Versuch die Schallbewegung einiger Konsonanten und anderer Geräusche mit dem Hensen'schen Sprachzeichner graphisch Darzustellen ...

Wendeler, Johann Gottfried Otto Paul, January 1886 (has links)
Inaug.-Diss.--Kiel. / Lebenslauf. "Gekrönte Preisschrift aus dem Physiologischen Institut der Universität Kiel."
3

Výpočtové modelování šíření hlasu okolo hlavy člověka pomocí metody konečných prvků / Computational modelling of voice propagation around the human head using finite element method

Ryšavý, Antonín January 2018 (has links)
In the first part of this master's thesis there is briefly presented the biomechanics of the human voice creation and an overview of the hitherto published computational models of the vocal tract and dissemination of the acoustic waves around the human head. The second part of the thesis deals with the creation of the computational model of a dissemination of the acoustic waves through vocal tract and further into a space around the head during the pronouncing of the Czech vowel /a:/. The vocal tract is excited by a harmonic signal in the place of vocal chords. On the surface of the vocal tract and the part of the head including hair and skin there is defined an acoustic absorption. The dissemination of the acoustic waves in the vocal tract, in the near field around the mouth, in the area around the head and in the points on the cheeks is detailed mapped. The dissemination of the acoustic waves is analyzed in the points where the speech microphones are placed. Acoustic pressure dependence on frequency, transmission functions between defined points and the acoustic pressure amplitudes depending on the distance from the mouth are obtained. In particular, the frequency distortion of the spectra is observed at the points indicated. Furthermore, the radiation impedance in the mouth area is evaluated. The results obtained are compared with the results of the hitherto published experimental measurements and can be used for the exact measurement of human voice or for the frequency correction of the microphones during the scann of the speech and sing placced in the analyzed points.

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