A Non-Equilibrium Nucleation Model to Calculate the Density of State and Its Application to the Heat Capacity of Stoichiometric UO2

Author:

Ferreira Ivaldo LeãoORCID

Funder

cnpq

Publisher

Springer Science and Business Media LLC

Subject

Condensed Matter Physics

Reference36 articles.

1. Thermophysical properties database of materials for light water reactor and heavy waters reactors (Iaea-tecdoc). International Atomic Energy Agency, Vienna (2006)

2. S.G. Popov, J.J. Carbajo, V.K. Ivanov, G.L. Yoder. Thermophysical Properties of MOX and UO2 Fuels Including the Effects of Irradiation. Oak Ridge National Laboratory. US Department of Energy (1996) ORNL/TM-2000/351.

3. J.J. Huntzicker, E.F. Westrum Jr., The magnetic transition, heat capacity and thermodynamic properties of uranium dioxide from 5 to 350 K. J. Chem. Thermodyn. 3, 61–76 (1971)

4. F. Grønvold, N.J. Kveseth, J. Tichý, Thermodynamics of the UO2+x phase I. Heat capacities of UO2.017 and UO2.254 from 300 to 1000 K and electronic contributions. J. Chem. Thermodyn. 5, 665–679 (1970)

5. C. Ronchi, M. Sheindlin, M. Musella, Thermal conductivity of uranium dioxide up to 2900 K from simultaneous measurement of the heat capacity and thermal diffusivity. J. Appl. Phys. 85, 776–789 (1999)

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