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  • This paper deals with the analysis of dielectric spectra of glycerol with dielectric relaxation spectroscopy (DRS). Dielectric spectra of glycerol have been measured in the frequency range 20 Hz to 10 MHz and in the temperature range 10 K to 300 K. The observed dielectric spectra featured a typical relaxation maximum, which could be in the first approximation described by the Arrhenius equation. The activation energy of the relaxation process observed was 90 MJ/kmol. The relaxation strength as well as the shape of the relaxation peak remained in the temperature interval 180 K - 230 K (visibility of peak) almost the same, thus indicating that no change of the relaxation mechanism comes about.
  • This paper deals with the analysis of dielectric spectra of glycerol with dielectric relaxation spectroscopy (DRS). Dielectric spectra of glycerol have been measured in the frequency range 20 Hz to 10 MHz and in the temperature range 10 K to 300 K. The observed dielectric spectra featured a typical relaxation maximum, which could be in the first approximation described by the Arrhenius equation. The activation energy of the relaxation process observed was 90 MJ/kmol. The relaxation strength as well as the shape of the relaxation peak remained in the temperature interval 180 K - 230 K (visibility of peak) almost the same, thus indicating that no change of the relaxation mechanism comes about. (en)
  • This paper deals with the analysis of dielectric spectra of glycerol with dielectric relaxation spectroscopy (DRS). Dielectric spectra of glycerol have been measured in the frequency range 20 Hz to 10 MHz and in the temperature range 10 K to 300 K. The observed dielectric spectra featured a typical relaxation maximum, which could be in the first approximation described by the Arrhenius equation. The activation energy of the relaxation process observed was 90 MJ/kmol. The relaxation strength as well as the shape of the relaxation peak remained in the temperature interval 180 K - 230 K (visibility of peak) almost the same, thus indicating that no change of the relaxation mechanism comes about. (cs)
Title
  • Dielestric relaxation spectroscopy of glycerol to low temperatures
  • Dielestric relaxation spectroscopy of glycerol to low temperatures (en)
  • DIELECTRIC RELAXATION SPECTROSCOPY OF GLYCEROL TO LOW TEMPERATURES (cs)
skos:prefLabel
  • Dielestric relaxation spectroscopy of glycerol to low temperatures
  • Dielestric relaxation spectroscopy of glycerol to low temperatures (en)
  • DIELECTRIC RELAXATION SPECTROSCOPY OF GLYCEROL TO LOW TEMPERATURES (cs)
skos:notation
  • RIV/00216305:26220/07:PU70245!RIV08-MSM-26220___
http://linked.open.../vavai/riv/strany
  • 134-137
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  • RIV/00216305:26220/07:PU70245
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  • Dielectric, relaxation, spectroscopy, glycerol, low temperature (en)
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  • [9A673C1C8766]
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  • Brno
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  • New trends in physics
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  • Stráník, Rostislav
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  • Ing. Zdeněk Novotný CSc.
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  • 978-80-7355-078-3
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  • 26220
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