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1.
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.
2.
Group goals: Their influence on interaction patterns and learning
by Mercier, Emma M., Ph.D.  Stanford University. 2008: 249 pages; 3313824.
4.
Uprooted at the Epicenter: A Bakhtinian Analysis of the Experiences of Adolescents in an Earthquake-Impacted School
by Luther, Tyler Cabell Dickinson, Ed.D.  The George Washington University. 2018: 257 pages; 10686518.
5.
Earthquake Scaling, Simulation and Forecasting
by Sachs, Michael Karl, Ph.D.  University of California, Davis. 2014: 110 pages; 3646390.
8.
Performance-based engineering framework for earthquake and fire following earthquake
by Carlton, Aerik, M.S.  Michigan Technological University. 2013: 75 pages; 1552728.
9.
Interplay Between Modes of Strain Release Along the Shallow Northern Hikurangi Subduction Zone, New Zealand
by Todd, Erin K., Ph.D.  University of California, Santa Cruz. 2017: 242 pages; 10261491.
10.
Evaluation of Seismic Behavior of Intermediate and Fine-Grained Soils
by Dahl, Karina Ruth, Ph.D.  University of California, Davis. 2011: 1119 pages; 3499425.
12.
Improving 6<sup>th</sup> grade earth science instruction: Curriculum design, implementation, and assessment
by Mock, Suzanne Colburn, M.Ed.  State University of New York at Buffalo. 2012: 74 pages; 1506584.
14.
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.
15.
Crowdsourcing for natural disaster response: An evaluation of crisis mapping the 2010 Haitian earthquake
by Feighery, Annie, Ed.D.  Teachers College, Columbia University. 2014: 135 pages; 3621768.
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Seismic loss assessment and mitigation of critical urban infrastructure systems
by Kim, Young Suk, Ph.D.  University of Illinois at Urbana-Champaign. 2007: 157 pages; 3301267.
18.
Nongovernmental organizations in disaster and coordination: A complex adaptive systems view
by Yoder-Bontrager, Daryl, M.S.  University of Delaware. 2014: 160 pages; 1585187.
19.
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.
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.
Centrifuge Modeling, Numerical Analyses, and Displacement-Based Design of Rocking Foundations
by Deng, Lijun, Ph.D.  University of California, Davis. 2012: 232 pages; 3511714.
23.
Moving history: The Great Kanto Earthquake and film and mobile culture in interwar Japan
by Lewis, Diane Wei, Ph.D.  The University of Chicago. 2011: 226 pages; 3472896.
25.
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.
26.
Damage-free seismic-resistant self-centering concentrically-braced frames
by Roke, David Alan, Ph.D.  Lehigh University. 2010: 733 pages; 3419538.
27.
International Adaptation of the <i>Hazus Earthquake Model</i> Using Global Exposure Datasets
by Rozelle, Jesse Ryan, Master  University of Colorado at Denver. 2018: 92 pages; 10979097.
28.
Motivating Private Precaution with Public Programs: Insights from a Local Earthquake Mitigation Ordinance
by Rabinovici, Sharyl Jean Marie, Ph.D.  University of California, Berkeley. 2012: 353 pages; 3555874.
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