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Tytuł artykułu

Acoustic Spectroscopy,Experimental Methods and Research

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
There was presented in the paper the theoretical discussion about the ultrasonic relaxation process related to energy transfer between translational and vibrational degrees of freedom as well as with the existing of chemical isomerism. The part of the paper describes several ultrasonic equipments for measurements of absorption and velocity in very wide frequency range from hundreds kHz to tens GHz. At the end there were shown several experimental examples of possible taking the advantage of the ultrasonic spectroscopy.
Rocznik
Tom
Strony
169--188
Opis fizyczny
Bibliogr. 28 poz., rys.
Twórcy
autor
  • Institute of Experimental Physics, University of Gdańsk,Wita Stwosza 57, 80-952 Gdańsk, Poland, fizbl@univ.gda.pl
Bibliografia
  • 1.Andreae J.A., Bass R., Heasell E.L., Lamb J., Acustica, 8, (1958), 131.
  • 2.Bahadur B., Acustica, 33, (1975), 277.
  • 3.Balcerzak A., Proc. of 51stOpen Seminar on Acoustics, (2004) 203.
  • 4.Baranskij K., Doklady Russian Academy of Sciences, (in Russian), 114, (1957) 517.
  • 5.Chynoweth A.G., Schneider W.G., J. Chem. Phys. 20, (1952) 1777.
  • 6.Chase C.E., Wiliamson R.C., Tisza L., Phys. Fluids, 1, (1958) 193.
  • 7.De Groot M. S., Ultrasonic relaxation due to rotational isomerism, N.V. Drukkerij V/H.J.J. Groen & Zn - Leiden, [1958].
  • 8.Eggers F., Funck Th., Rev. Sci. Instrum., 44, (1973), 969.
  • 9.Eggers F., Funck Th., Richmann K.H., Acustica, 40, (1978), 273.
  • 10.Eggers F., Acustica, 80, (1994), 397.
  • 11.Fleury P.A., Chiao R.Y., J. Acoust. Soc. Am., 39, (1966), 751.
  • 12.Glasstone S., Laidler K.J., Eyring H., Theory of rate processes, McGraw-Hill, New York (1941).
  • 13.Ilgunas V., Yaronis V, Sukackas V, Ultrasonic interferometers, (in Russian) Vilnius "Mokslas", (1983).
  • 14.Kirchhoff G., Ann. d. Phys., 134, (1868), 177.
  • 15.Lamb J., Z. Elektrochem., 64, (1960) 135.
  • 16.Lezhnev N.B., High frequency ultrasonic spectroscopy of vibrational realxation in liquids, Hab. Thesis, Ashgabad (1982).
  • 17.Linde B.B.J., Archives of Acoustics 7, (1982), 163.
  • 18.B.B.J. Linde, Acoustical spectroscopy of cyclic & heterocyclic compounds, ketones and polluted water surface, Wydawnictwo Uniwersytetu Gdańskiego, (1997).
  • 19.B.B.J. Linde, Vibrational relaxation in liquids, Mol. Quant. Acoust. 23, 14, 2002
  • 20.Mason W. P., Physical Acoustics, Vol. II Part A, Properties of gases, liquids, and Solutions, Academic press, New York and London (1965).
  • 21.Matheson A.J., Molecular Acoustics, Wiley-Interscience a division of John Wiley & Sons Ltd, London, New York, Sydney, Toronto (1971).
  • 22.Mc Skimin H.J., J. Acoust. Soc. Am., 29, (1957), 1185.
  • 23.Pellam J., Galt J.K., J. Chem. Phys., 14, (1946), 608.
  • 24.Płowiec R., Archives of Acoust., 4, (1970), 411.
  • 25.Prokofiev B.A., Izvestya Academy of Sciences of Soviet Union, (in Russian) 7, (1957), 94.
  • 26.Stokes G.G., Camb. Trans. Phil. Soc., 8, (1945), 287.
  • 27.Stokes G.G., Phil. Mag., 4, (1851), 305.
  • 28.Wehr J., Measurements of absorption and velocity of ultrasound waves, (in Polish), PWN, Warszawa, (1972).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0012-0015
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