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References

1
W.D. Kingery, H.K. Bowen, and D.R. Uhlman, Introduction to Ceramics, 2nd. Ed. (John Wiley and Sons, New York, 1976).
2
C. Herring, "Surface Tension as a Motivation for Sintering," in Physics of Powder Metallurgy, ed. W.E. Kingston (McGraw-Hill, New York, 1951), pp. 143-179.
3
K.L. Scrivener, "The microstructure of concrete," in Materials Science of Concrete vol. 1, ed. J. Skalny (Amer. Ceram. Soc., Westerville, 1989).
4
E.J. Garboczi and D.P. Bentz, "Fundamental Computer Simulation Models for Cement-Based Materials,: in Materials Science of Concrete vol. 2, ed. J. Skalny (Amer. Ceram. Soc., Westerville, 1991).
5
E.J.Garboczi and D.P. Bentz, "Digital Simulation of the Aggregate-Cement Paste Interfacial Zone in Concrete," J. Mater. Res. 6, 196 (1991).
6
D.P. Bentz and E.J. Garboczi, "Percolation of phases in a three-dimensional cement paste microstructure model," Cem. Conc. Res. 21, 325 (1991).
7
E.J. Garboczi and D.P. Bentz, "Computer Simulation of the Diffusivity of Cement-Based Materials," J. Mater. Sci. 27, 2083 (1992).
8
P.B. Visscher and J.E. Cates, J. Mater. res. 5, 2184 (1990).
9
D.J. Srolovitz, M.P. Anderson, G.S. Grest, and P.S. Sahni, Scripta Metall. 17, 241 (1983).
10
G.S. Grest, M.P. Anderson, and D.J. Srolovitz, in Computer Simulations of Microstructural Evolution, ed. D.J. Srolovitz (The Metallurgical Society, 1986).
11
W. Ku, O.J. Gregory, and H.M. Jennings, J. Amer. Ceram. Soc. 73, 286 (1990).
12
L.R. Madhavrao and R. Rajagopalan, J. Mater. Res. 4, 1251 (1989).
13
G.M. Hassold, I.W. Chen, and D.J. Srolovitz, J. Am. Ceram. Soc. 73, 2857 (1990).
14
I.W. Chen, G.M. Hassold, and D.J. Srolovitz, J. Am. Ceram. Soc. 73, 2865 (1990).
15
K.R. Castleman, Digital Image Processing (Prentice-Hall, Englewood Cliffs, New Jersey, 1979).
16
L.M. Schwartz and J.R. Banavar, Phys. Rev. B 39, 11965 (1989).
17
I.C. Kim and S. Torquato, J. Appl. Phys. 69, 2280 (1991).
18
J.W. Cahn and D.W. Hoffman, Acta Metall. 22, 1205 (1974).
19
W.W. Mullins, J. Appl. Phys. 28, 333 (1957); W.W. Mullins, in Metal Surfaces: Structures, Energetics, and Kinetics (Am. Soc. Metals, Metals Park, Ohio, 1962).
20
P. Bross and H.E. Exner, Acta Metall. 27, 1007 (1979).
21
S. Wolfram, Theory and Applications of Cellular Automata (World Scientific, Singapore, 1986); D. Rothman, Geophys. 53, 509 (1988).
22
R. Tao, M.A. Novotny, and K. Kaski, Phys. Rev. A 38, 1019 (1988).
23
T. Vicsek, Phys. Rev. Lett. 53, 2281 (1984).
24
P.J.P. Pimienta, D.P. Bentz, E.J. Garboczi, and W.C. Carter, "Cellular Automaton Simulations of Surface Mass Transport due to Curvature Gradients: Simulations of Sintering in 3-D," Synthesis and Processing of Ceramics: Scientific Issues (Materials Research Society, Pittsburgh, 1992).
25
R.L. Coble, J. Appl. Phys. 32, 787 (1961).
26
A.R. Day, M.F. Thorpe, K.A. Snyder, and E.J. Garboczi, in Mechanical Properties of Cellular and Porous Materials Vol. 207 (Mater. Res. Soc., Pittsburgh, 1991).
27
A.R. Day, K.A. Snyder, E.J. Garboczi, and M.F. Thorpe, J. Phys. and Mech. of Solids 40, 1031 (1992).
28
D.A. Young and E.M. Corey, Phys. Rev. A 41, 7024 (1990).
29
E.A. Ceppi and O.B. Nasello, Scripta Metall. 18, 1221 (1984).

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