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Mass spectrometric study of the thermodynamic properties of melts in the Rb2O-B2O3 system. / Stolyarova, V. L.; Lopatin, S. I.

In: Glass Physics and Chemistry, Vol. 30, No. 2, 01.03.2004, p. 151-156.

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@article{9a2973706b0040279d27d89dbab816d4,
title = "Mass spectrometric study of the thermodynamic properties of melts in the Rb2O-B2O3 system",
abstract = "The vaporization and thermodynamic properties (activities of the components and Gibbs energies) (of melts in the Rb2O-B2O3 system at a B2O3 content varying from 66.7 to 92.0 mol % are investigated by high-temperature differential mass spectrometry upon evaporation from molybdenum cells in the temperature range 950-1350 K.",
author = "Stolyarova, {V. L.} and Lopatin, {S. I.}",
year = "2004",
month = mar,
day = "1",
doi = "10.1023/B:GPAC.0000023999.31256.7d",
language = "English",
volume = "30",
pages = "151--156",
journal = "Glass Physics and Chemistry",
issn = "1087-6596",
publisher = "МАИК {"}Наука/Интерпериодика{"}",
number = "2",

}

RIS

TY - JOUR

T1 - Mass spectrometric study of the thermodynamic properties of melts in the Rb2O-B2O3 system

AU - Stolyarova, V. L.

AU - Lopatin, S. I.

PY - 2004/3/1

Y1 - 2004/3/1

N2 - The vaporization and thermodynamic properties (activities of the components and Gibbs energies) (of melts in the Rb2O-B2O3 system at a B2O3 content varying from 66.7 to 92.0 mol % are investigated by high-temperature differential mass spectrometry upon evaporation from molybdenum cells in the temperature range 950-1350 K.

AB - The vaporization and thermodynamic properties (activities of the components and Gibbs energies) (of melts in the Rb2O-B2O3 system at a B2O3 content varying from 66.7 to 92.0 mol % are investigated by high-temperature differential mass spectrometry upon evaporation from molybdenum cells in the temperature range 950-1350 K.

UR - http://www.scopus.com/inward/record.url?scp=3843147468&partnerID=8YFLogxK

U2 - 10.1023/B:GPAC.0000023999.31256.7d

DO - 10.1023/B:GPAC.0000023999.31256.7d

M3 - Article

AN - SCOPUS:3843147468

VL - 30

SP - 151

EP - 156

JO - Glass Physics and Chemistry

JF - Glass Physics and Chemistry

SN - 1087-6596

IS - 2

ER -

ID: 53801306