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1.
Heterogeneity of earthquake stress drops, focal mechanisms and active fault zones
by Bailey, Iain W., Ph.D.  University of Southern California. 2009: 142 pages; 3368693.
2.
Kinematic Earthquake Sources of High and Low Frequencies and Their Relation to Earth Structure
by Yano, Tomoko Elizabeth, Ph.D.  University of California, Santa Barbara. 2012: 134 pages; 3553796.
3.
Earthquake source mechanics and wave propagation in sedimentary basins using the finite element method
by Ramirez Guzman, Leonardo, Ph.D.  Carnegie Mellon University. 2008: 141 pages; 3345279.
5.
Factors and Interactions Contributing to the Risk of Fire following Earthquake for Urban Southern California
by Schellhous, William T., M.S.  California State University, Long Beach. 2017: 234 pages; 10690718.
6.
Ionospheric Monitoring by the Global Navigation Satellite System (GNSS)
by Park, Jihye, Ph.D.  The Ohio State University. 2012: 203 pages; 10631341.
7.
Development of sensors and techniques to assess earthquake hazards and submarine slope stability
by Blum, John, Ph.D.  University of California, San Diego. 2010: 193 pages; 3412283.
9.
Post-Seismic Strain and Stress Evolution from Continuous GPS Observations
by Shcherbenko, Gina Nicole, M.S.  State University of New York at Stony Brook. 2014: 80 pages; 1567846.
10.
Deformation and localization in earthquake ruptures and stick-slip instabilities
by Daub, Eric G., Ph.D.  University of California, Santa Barbara. 2009: 258 pages; 3379540.
12.
Performance-based engineering framework for earthquake and fire following earthquake
by Carlton, Aerik, M.S.  Michigan Technological University. 2013: 75 pages; 1552728.
13.
Earthquake Scaling, Simulation and Forecasting
by Sachs, Michael Karl, Ph.D.  University of California, Davis. 2014: 110 pages; 3646390.
15.
Fault properties, rheology and interseismic deformation in Southern California from high-precision space geodesy
by Lindsey, Eric Ostrom, Ph.D.  University of California, San Diego. 2015: 180 pages; 3721663.
18.
Stress Wave Source Characterization: Impact, Fracture, and Sliding Friction
by McLaskey, Gregory Christofer, Ph.D.  University of California, Berkeley. 2011: 85 pages; 3469458.
20.
Using GPS to Rapidly Detect and Model Earthquakes and Transient Deformation Events
by Crowell, Brendan W., Ph.D.  University of California, San Diego. 2013: 168 pages; 3558086.
21.
Computational Studies of Geophysical Systems
by Wilson, John Max, Ph.D.  University of California, Davis. 2018: 116 pages; 10979293.
24.
The influence of small stresses on the dynamics of glaciers and subduction zones
by Walter, Jacob I., Ph.D.  University of California, Santa Cruz. 2012: 175 pages; 3540860.
25.
International Adaptation of the Hazus Earthquake Model Using Global Exposure Datasets
by Rozelle, Jesse Ryan, Master  University of Colorado at Denver. 2018: 92 pages; 10979097.
26.
Bridging scientific model outputs with emergency response needs in catastrophic earthquake responses
by Johannes, Tay W., Ph.D.  The George Washington University. 2010: 161 pages; 3397309.
27.
Optimal wave focusing for seismic source imaging
by Bazargani, Farhad, Ph.D.  Colorado School of Mines. 2014: 150 pages; 3646086.
28.
Towards a theory on the sustainability and performance of FLOSS communities
by AlMarzouq, Mohammad, Ph.D.  Clemson University. 2009: 238 pages; 3389634.
29.
A comparison of two versions of Modified Mercalli Intensity for earthquake exposure assessment
by Ratliff, Jamie L., M.A.  San Jose State University. 2012: 95 pages; 1513665.
30.
Characterizing the deformation of reservoirs using interferometry, gravity, and seismic analyses
by Schiek, Cara Gina, Ph.D.  The University of Texas at El Paso. 2009: 111 pages; 3358974.
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