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all geography including DSDP/ODP Sites and Legs
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Africa
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Asia
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iron (1)
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West Pacific
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sediments
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sediments
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clastic sediments
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clay (1)
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drift (1)
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sand (3)
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silt (1)
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GeoRef Categories
Era and Period
Epoch and Age
Date
Availability
Strait of Georgia
Identifying viable financing mechanisms for post-earthquake housing reconstruction in Canada: Case study of a M7 earthquake in British Columbia Open Access
Agent-based model for post-earthquake housing recovery Available to Purchase
An Earthquake Nest in Cascadia Available to Purchase
Seasonal, annual, and inter-annual Spiniferites cyst production: a review of sediment trap studies Open Access
How to recognize crescentic bedforms formed by supercritical turbidity currents in the geologic record: Insights from active submarine channels Open Access
Ground Motions of the December 2015 M 4.7 Vancouver Island Earthquake: Attenuation and Site Response Available to Purchase
Morphology of the Explorer–Juan de Fuca slab edge in northern Cascadia: Imaging plate capture at a ridge-trench-transform triple junction Available to Purchase
Quantifying heterogeneity in variably fractured sedimentary rock using a hydrostructural domain Available to Purchase
Constraining Aquifer Architecture with Electrical Resistivity Imaging in a Fractured Hydrogeological Setting Available to Purchase
The Georgia Basin Digital Library for sustainable development: A digital library approach to addressing the societal relevance of geoscientific knowledge Available to Purchase
Digital libraries extend traditional library tools, collections, and metaphors in new and sometimes radical directions. Geoscience information, traditionally found in libraries in the form of maps, reports, books, and journal articles, can potentially gain enormous benefits from digital interfaces that allow geospatial information to be effectively searched and displayed in context. However, to many users of such a collection, the concepts within geoscience represent a barrier to use and understanding. The Georgia Basin Digital Library (GBDL) Project examines community-based decision support for sustainable development, using digital geoscience information as a fundamental component. The context and relevance of geoscientific and other information in the GBDL is explained and represented through the use of semistructured representations based on architectural pattern languages, where a web of connected concepts are each contextualized using storytelling with supporting graphics. The GBDL allows multiple coexisting pattern networks, so that multiple perspectives on an idea, a situation, or a region are possible and in fact preferable. The GBDL interface makes use of geographic information systems (GIS) components to show maps, such that the point of engagement for a user might alternatively be a story, a map, a photo, or a text heading. Linking the mapping component directly to the pattern framework allows for community-level contextualization of ideas and stories. For geoscientists, the ideas in the GBDL are relevant both as novel approaches to sharing geoscience information with the public and as approaches that can be applied to specialized scientific discourse in the future. As the Web evolves, geoscience information systems and communication must evolve along with it; the GBDL shows one such evolutionary pathway.