Glass transition: Difference between revisions

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#[http://dx.doi.org/10.1021/j100596a018 C. A. Angell and J. C. Tucker "Heat capacities and fusion entropies of the tetrahydrates of calcium nitrate, cadmium nitrate, and magnesium acetate. Concordance of calorimetric and relaxational ideal glass transition temperatures", Journal of Physical Chemistry '''78''' pp. 278 - 281 (1974)]
#[http://dx.doi.org/10.1021/j100596a018 C. A. Angell and J. C. Tucker "Heat capacities and fusion entropies of the tetrahydrates of calcium nitrate, cadmium nitrate, and magnesium acetate. Concordance of calorimetric and relaxational ideal glass transition temperatures", Journal of Physical Chemistry '''78''' pp. 278 - 281 (1974)]
#[http://dx.doi.org/10.1063/1.2738471  Prabhat K. Gupta and John C. Mauro "The laboratory glass transition", Journal of Chemical Physics '''126''' 224504 (2007)]
#[http://dx.doi.org/10.1063/1.2738471  Prabhat K. Gupta and John C. Mauro "The laboratory glass transition", Journal of Chemical Physics '''126''' 224504 (2007)]
#[http://dx.doi.org/10.1146/annurev.physchem.58.032806.104653 Vassiliy Lubchenko and ­Peter G. Wolynes "Theory of Structural Glasses and Supercooled Liquids", Annual Review of Physical Chemistry '''58''' pp. 235-266 (2007)]
[[category: Non-equilibrium thermodynamics]]
[[category: Non-equilibrium thermodynamics]]

Revision as of 13:20, 29 February 2008

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In the laboratory the glass transition is not a sharp transition; its properties change smoothly across .

  • increases with a decrease in the observation time, .

Ideal glass transition temperature

See Ref 1.

Observation time

Intrinsic average structural relaxation time

See also

References

  1. C. A. Angell and J. C. Tucker "Heat capacities and fusion entropies of the tetrahydrates of calcium nitrate, cadmium nitrate, and magnesium acetate. Concordance of calorimetric and relaxational ideal glass transition temperatures", Journal of Physical Chemistry 78 pp. 278 - 281 (1974)
  2. Prabhat K. Gupta and John C. Mauro "The laboratory glass transition", Journal of Chemical Physics 126 224504 (2007)
  3. Vassiliy Lubchenko and ­Peter G. Wolynes "Theory of Structural Glasses and Supercooled Liquids", Annual Review of Physical Chemistry 58 pp. 235-266 (2007)