Title of article
Correlation and Prediction of Thermodynamic Data for Oxide and Silicate Minerals
Author/Authors
G. Grimvall and D. Oberschmidt ، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 1999
Pages
10
From page
353
To page
362
Abstract
Often one needs to estimate heat capacities and related properties such as the
entropy for a particular material through iInterpolation, extrapolation, or comparison
with data for related materials. A scheme is discussed to perform such
estimates, focusing on the vibrational entropy. At iIntermediate and high temperatures,
the entropy depends only on the logarithmic average over the
phonon frequencies. This average can be factorized, so that the atomic masses
separate from the iInteratomic force constants. Thus, one can account for the
mass effect in the vibrational entropy and get a remaining quantity which
depends only on the force constants, i.e., on the electronic structure, and shows
a strong regularity when chemically similar materials are compared. In the
framework of these ideas, estimates based on an additivity rule for the entropy
of a complex system in terms of the entropies of the constituents, and also relations
between the vibrational entropy and sound velocities, are discussed. Oxide
and silicate minerals are used as examples.
Keywords
Debye temperature , Entropy , Lattice vibrations , oxide minerals , phonons , silicate minerals , thermodynamic data.
Journal title
International Journal of Thermophysics
Serial Year
1999
Journal title
International Journal of Thermophysics
Record number
426489
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