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An Intermolecular Vibration Model for Lattice Ice

Yıl 2010, Cilt: 13 Sayı: 2, 51 - 57, 01.06.2010

Öz

Lattice ice with tetrahedral arrangement is studied using a modified Einstein’s model that incorporates the hindered translational and rotational vibration bands into a harmonic oscillation system. The fundamental frequencies for hindered translational and rotational vibrations are assigned based on the intermolecular vibration bands as well as thermodynamic properties from existing experimental data. Analytical forms for thermodynamic properties are available for the modified model, with three hindered translational bands at (65, 229, 229) cm-1 and three effective hindered rotational bands at 560 cm-1. The derived results are good for temperatures higher than 30 K. To improve the model below 30 K, Lorentzian broadening correction is added. This simple model helps unveil the physical picture of ice lattice vibration behavior.

Yıl 2010, Cilt: 13 Sayı: 2, 51 - 57, 01.06.2010

Öz

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Ayrıntılar

Birincil Dil İngilizce
Bölüm Regular Original Research Article
Yazarlar

Kuo-ting Wang Bu kişi benim

Quinn Brewster

Yayımlanma Tarihi 1 Haziran 2010
Yayımlandığı Sayı Yıl 2010 Cilt: 13 Sayı: 2

Kaynak Göster

APA Wang, K.-t., & Brewster, Q. (2010). An Intermolecular Vibration Model for Lattice Ice. International Journal of Thermodynamics, 13(2), 51-57.
AMA Wang Kt, Brewster Q. An Intermolecular Vibration Model for Lattice Ice. International Journal of Thermodynamics. Haziran 2010;13(2):51-57.
Chicago Wang, Kuo-ting, ve Quinn Brewster. “An Intermolecular Vibration Model for Lattice Ice”. International Journal of Thermodynamics 13, sy. 2 (Haziran 2010): 51-57.
EndNote Wang K-t, Brewster Q (01 Haziran 2010) An Intermolecular Vibration Model for Lattice Ice. International Journal of Thermodynamics 13 2 51–57.
IEEE K.-t. Wang ve Q. Brewster, “An Intermolecular Vibration Model for Lattice Ice”, International Journal of Thermodynamics, c. 13, sy. 2, ss. 51–57, 2010.
ISNAD Wang, Kuo-ting - Brewster, Quinn. “An Intermolecular Vibration Model for Lattice Ice”. International Journal of Thermodynamics 13/2 (Haziran 2010), 51-57.
JAMA Wang K-t, Brewster Q. An Intermolecular Vibration Model for Lattice Ice. International Journal of Thermodynamics. 2010;13:51–57.
MLA Wang, Kuo-ting ve Quinn Brewster. “An Intermolecular Vibration Model for Lattice Ice”. International Journal of Thermodynamics, c. 13, sy. 2, 2010, ss. 51-57.
Vancouver Wang K-t, Brewster Q. An Intermolecular Vibration Model for Lattice Ice. International Journal of Thermodynamics. 2010;13(2):51-7.