Statistical theories of crack propagation

Author:

Vere-Jones D.

Publisher

Springer Science and Business Media LLC

Subject

Earth and Planetary Sciences (miscellaneous),Mathematics (miscellaneous),Earth and Planetary Sciences (miscellaneous),Mathematics (miscellaneous)

Reference73 articles.

1. Aki, K., 1966a. Generation and propagation of G waves from the Niigata earthquake of June 16, 1964, Part I, A statistical analysis: Bull. Earthquake Research Inst. Tokyo, v. 44, no. 1, p. 23–72.

2. Aki, K., 1966a, Generation and propagation of G waves from the Niigata earthquake of June 16, 1964, Part II, Estimation of earthquake moment, released energy, and stress-strain drop from the G wave spectrum: Bull. Earthquake Research Inst. Tokyo, v. 44, no. 1, p. 73–88.

3. Aki, K., 1967, Scaling law of seismic spectrum: Jour. Geophys. Res., v. 72, no. 4, p. 1217–1231.

4. Anderson, D. L., and Whitcomb, J. H., 1973, The dilatancy diffusion model of earthquake prediction: Proc. Conf. Tectonic Earthquakes of the San Andreas Fault, Stanford, Univ. Pub. Geol. Sci., v. 13, p. 417–426.

5. Anderson, O. L., 1959, The Griffith criterion for glass fracture,in Fracture: MIT Press, Cambridge, Mass., 646 p.

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