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John Rundle
John Rundle
Distinguished Professor of Physics, University of California, Davis
Bestätigte E-Mail-Adresse bei ucdavis.edu - Startseite
Titel
Zitiert von
Zitiert von
Jahr
Statistical physics approach to understanding the multiscale dynamics of earthquake fault systems
JB Rundle, DL Turcotte, R Shcherbakov, W Klein, C Sammis
Rev. Geophys 41 (4), 1019, 2003
4732003
Statistical physics approach to understanding the multiscale dynamics of earthquake fault systems
JB Rundle, DL Turcotte, R Shcherbakov, W Klein, C Sammis
Reviews of Geophysics 41 (4), 2003
4732003
The growth of geological structures by repeated earthquakes: 1. Conceptual framework
GCP King, RS Stein, JB Rundle
J. geophys. Res 93 (13,307), 318, 1988
3731988
The growth of geological structures by repeated earthquakes 2. Field examples of continental dip-slip faults
GCP King, RS Stein, J Rundle
J. geophys. Res 93, 13,319-13,331, 1988
2831988
A viscoelastic coupling model for the cyclic deformation due to periodically repeated earthquakes at subduction zones
W Thatcher, JB Rundle
Journal of Geophysical Research: Solid Earth 89 (B9), 7631-7640, 1984
2441984
A physical model for earthquakes 2. Application to Southern California
JB Rundle
Journal of Geophysical Research 93 (B6), 6255-6274, 1988
232*1988
A generalized Omori's law for earthquake aftershock decay
R Shcherbakov, DL Turcotte, JB Rundle
Geophysical Research Letters 31 (11), L11613, 2004
2272004
A simplified spring‐block model of earthquakes
SR Brown, CH Scholz, JB Rundle
Geophysical Research Letters 18 (2), 215-218, 1991
2231991
A model for the earthquake cycle in underthrust zones
W Thatcher, JB Rundle
Journal of Geophysical Research 84 (B10), 5540-5556, 1979
2141979
Derivation of the complete Gutenberg-Richter magnitude-frequency relation using the principle of scale invariance
JB Rundle
Journal of Geophysical Research 94 (B9), 12337-12,342, 1989
2121989
Self-organization in leaky threshold systems: The influence of near-mean field dynamics and its implications for earthquakes, neurobiology, and forecasting
JB Rundle, KF Tiampo, W Klein, JS Sá Martins
Proceedings of the National Academy of Sciences of the United States of …, 2002
2052002
A physical model for earthquakes. 3. Thermodynamical approach and its relation to nonclassical theories
JB Rundle
Journal of Geophysical Research 94, 2839-2855, 1989
197*1989
Viscoelastic-gravitational deformation by a rectangular thrust fault in a layered Earth
JB Rundle
Journal of Geophysical Research 87 (B9), 7787-7796, 1982
1931982
Precursory seismic activation and critical-point phenomena
JB Rundle, W Klein, DL Turcotte, BD Malamud
Pure and Applied Geophysics 157 (11), 2165-2182, 2000
1872000
Aftershock statistics
R Shcherbakov, DL Turcotte, JB Rundle
Pure and Applied Geophysics 162 (6), 1051-1076, 2005
1782005
Lithospheric loading by the 1896 Riku‐u earthquake, northern Japan: Implications for plate flexure and asthenospheric rheology
W Thatcher, T Matsuda, T Kato, JB Rundle
Journal of Geophysical Research: Solid Earth 85 (B11), 6429-6435, 1980
1721980
Self-organized complexity in the physical, biological, and social sciences
DL Turcotte, JB Rundle
Proceedings of the National Academy of sciences 99 (suppl_1), 2463-2465, 2002
1602002
Numerical simulation of earthquake sequences
JB Rundle, DD Jackson
Bull. seismol. soc. am 67 (5), 1363-1377, 0
158*
Static elastic-gravitational deformation of a layered half space by point couple sources
JB Rundle
Journal of Geophysical Research 85 (B10), 5355-5363, 1980
1571980
Earthquake forecasting and its verification
JR Holliday, KZ Nanjo, KF Tiampo, JB Rundle, DL Turcotte
Nonlinear Processes in Geophysics 12 (6), 965-977, 2005
1502005
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