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Degradation marks of phonograph cylinders from Tesař’s opera collection Cover

Degradation marks of phonograph cylinders from Tesař’s opera collection

Open Access
|Feb 2023

References

  1. 1. Sterne J. The Audible Past: Cultural Origins of Sound Reproduction. Durham: Duke University Press, 2003
  2. 2. Welch W. Read O. From Tinfoil to Stereo: The Acoustic Years of the Recording Industry, 1877-1929. Indianapolis: H. W. Sams, 1976.
  3. 3. Shambarger P. Cylinder Records: An Overview. ARSC Journal. 1995, volume 26, No. 2. s. 133-161. ISSN 2151-4402.
  4. 4. Wile R. Cylinder Record Materials. ARSC Journal. 1995, volume 26, no. 2. s. 162-171. ISSN 2151-4402.
  5. 5. Monroe E. B. Uncovering the nature of damage to early wax cylinder audio recordings during storage, Conference Paper: Presented at the International Conference on Audio Archiving, Preservation and Restoration, 2018 June 7–9, Culpeper, VA, USA, p.7 [online].
  6. 6. Divadelní rozhledy: 1907, volume 3, p. 40. [online]
  7. 7. Meszner J. Přehled zvukového průmyslu: studijní materiály. Strojopis, 1984, s. 29–40.
  8. 8. Demnerová K., Kadavá J., Purkrtová S., Savická D., Sýkorová H., Ďurovič M., Benetková B., Hricková K., Koukalová L., Nováková M. Metodika odběru a izolace bakterií, kvasinek a plísní z fotografických materiálů (Methodology of collection and isolation of bacteria, yeasts and fungi from photographic materials); University of Chemistry and Technology Prague: 2020; p. 23.
  9. 9. Bartl B. et al. Analysis of efflorescence on surface of bees-wax seals. Journal of Cultural Heritage, 2012, volume 13, s. 275–284.
  10. 10. Bartl B. et al. Efflorescence on the surface of beeswax seals: A calorimetric study, Thermochimica Acta, 2013, volume 566, s. 292–297.
  11. 11. Bartl B. et al. ‘Wax bloom’ on beeswax cultural heritage objects: Exploring the causes of the phenomenon. Magn. Reson. Chem. 2015, volume 53, s. 509–513.
  12. 12. Filopoulou A., Vlachou S., Boyatzis S.C., Fatty Acids and Their Metal Salts: A Review of Their Infrared Spectra in Light of Their Presence in Cultural Heritage, Molecules, 2021, volume 26, pp 27.
  13. 13. Pudney P. D. A., Mutch K. J., Zhu S. Characterising the phase behaviour of stearic acid and its triethanolamine soap and acid-soap by infrared spectroscopy, Phys. Chem. Chem. Phys., 2009, volume 11, s. 5010-5018.
  14. 14. Lynch M. L., Wireko F., Tarek M., Klein M., Intermolecular Interactions and the Structure of Fatty Acid-Soap Crystals, J. Phys. Chem B, 2001, volume 105, s. 552-561.
  15. 15. Mašek Benetková B., Mejzr M., Šefců R., Šír F., Průzkum sbírky fonografických válečků Českého muzea hudby, Muzeum, 2019, volume 57, No. 2. s. 59-70.
  16. 16. Allen A., Novotná H., Mejzr M., Šír F. Manipulace s historickými zvukovými nosiči a jejich ochrana: základní podmínky a postupy dlouhodobé fyzické ochrany fonografických válečků a standardních gramofonových desek. Praha: Národní muzeum, 2019. [online].
DOI: https://doi.org/10.2478/kom-2022-0020 | Journal eISSN: 1804-1213 | Journal ISSN: 0452-599X
Language: English
Page range: 150 - 159
Published on: Feb 10, 2023
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2023 Barbora Mašek Benetková, Petra Korandová, Kristýna Boumová, Hana Sýkorová, Jana Kadavá, Michal Studničný, Radka Šefců, Martin Mejzr, Filip Šír, published by Association of Czech and Slovak Corrosion Engineers
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.