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Impact of Ergodic versus Nonergodic Seismic Hazard Estimation on the Risk Assessment of Liquefaction‐Induced Ground Damage
Postseismic Relaxation Following the 2019 Ridgecrest, California, Earthquake Sequence
Considering fault interaction in estimates of absolute stress along faults in the San Gorgonio Pass region, southern California
Dynamic models of earthquake rupture along branch faults of the eastern San Gorgonio Pass region in California using complex fault structure
Regional and temporal variability of melts during a Cordilleran magma pulse: Age and chemical evolution of the Jurassic arc, eastern Mojave Desert, California
Short-term variations in slip rate and size of prehistoric earthquakes during the past 2000 years on the northern San Jacinto fault zone, a major plate-boundary structure in southern California
Straightening of the Northern San Jacinto Fault, California, as Seen in the Fault‐Structure Evolution of the San Jacinto Valley Stepover
Latest Pleistocene and Holocene slip rate for the San Bernardino strand of the San Andreas fault, Plunge Creek, Southern California: Implications for strain partitioning within the southern San Andreas fault system for the last ∼35 k.y.
A New Method for Determining Small Earthquake Source Parameters Using Short-Period P Waves
Timing of Magmatism following Initial Convergence at a Passive Margin, Southwestern U.S. Cordillera, and Ages of Lower Crustal Magma Sources
Active tectonics, tectonic geomorphology, and fault system dynamics: How geoinformatics can help
Active tectonics, tectonic geomorphology, and fault system dynamics investigate deformation of continental crust over late Quaternary to annual time scales. These interdisciplinary endeavors require joint analysis of diverse data sets and model results. Data gathering and analysis driven by EarthScope and other large solid earth science initiatives motivates a discussion of how to apply geoinformatics tools to enhance these efforts. I use three information integration scenarios for earthquake geology site context, basic digital elevation model (DEM) analysis, and tectonic geomorphology (all located in southern California) to show the kinds of analyses, integrations, and visualizations that are commonly employed. Earthquake geology site context along the San Jacinto fault ranges in scale from the San Andreas transform boundary to high-resolution topography and balloon aerial photography. Manipulations of a DEM for the Carrizo Plain illustrate the basic record of deformation and surface processes recorded in the topography. Tectonic geomorphologic investigations at Wheeler Ridge include visualization of imagery and geology with topography, raster calculations to produce a map of local relief, and the integration of fault model calculations for surface uplift. Necessary data sets for these and other scenarios include seismicity; crustal motion; stress; topography; remotely sensed imagery; and maps of Quaternary faults, late Cenozoic subsidence and uplift, and Quaternary geology. Necessary geoinformatics capabilities include visualization and cartography, file format and database conversion, geostatistics, comprehensive data query capability, data capture, field data capture, and physics-based deformation and landscape development models. Collaborations will improve earth scientists' ability to create knowledge, while providing domain challenges for information technologists.