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  2. Earthquake environmental effects - Wikipedia

    en.wikipedia.org/wiki/Earthquake_environmental...

    Both surface deformation and faulting and shaking-related geological effects (e.g., soil liquefaction, landslides) not only leave permanent imprints in the environment, but also dramatically affect human structures. Moreover, underwater fault ruptures and seismically triggered landslides can generate tsunami waves.

  3. Fracture (geology) - Wikipedia

    en.wikipedia.org/wiki/Fracture_(geology)

    This causes them to behave in the semi-brittle and plastic regimes which result in significantly different fracture mechanisms. In the plastic regime cracks acts like a plastic bag being torn. In this case stress at crack tips goes to two mechanisms, one which will drive propagation of the crack and the other which will blunt the crack tip. [6]

  4. Geological hazard - Wikipedia

    en.wikipedia.org/wiki/Geological_hazard

    A geologic hazard or geohazard is an adverse geologic condition capable of causing widespread damage or loss of property and life. [1] These hazards are geological and environmental conditions and involve long-term or short-term geological processes.

  5. Active fault - Wikipedia

    en.wikipedia.org/wiki/Active_fault

    Active faulting is considered to be a geologic hazard – one related to earthquakes as a cause. Effects of movement on an active fault include strong ground motion, surface faulting, tectonic deformation, landslides and rockfalls, liquefaction, tsunamis, and seiches. [2]

  6. Landslide - Wikipedia

    en.wikipedia.org/wiki/Landslide

    The factors that have been used for landslide hazard analysis can usually be grouped into geomorphology, geology, land use/land cover, and hydrogeology. Since many factors are considered for landslide hazard mapping, GIS is an appropriate tool because it has functions of collection, storage, manipulation, display, and analysis of large amounts ...

  7. Surface rupture - Wikipedia

    en.wikipedia.org/wiki/Surface_rupture

    Surface rupture caused by normal faulting along the Lost River Fault, during the 1983 Borah Peak earthquake. In seismology, surface rupture (or ground rupture, or ground displacement) is the visible offset of the ground surface when an earthquake rupture along a fault affects the Earth's surface.

  8. Tectonic subsidence - Wikipedia

    en.wikipedia.org/wiki/Tectonic_subsidence

    Tectonic subsidence is the sinking of the Earth's crust on a large scale, relative to crustal-scale features or the geoid. [1] The movement of crustal plates and accommodation spaces produced by faulting [2] brought about subsidence on a large scale in a variety of environments, including passive margins, aulacogens, fore-arc basins, foreland basins, intercontinental basins and pull-apart basins.

  9. Glacial lake outburst flood - Wikipedia

    en.wikipedia.org/wiki/Glacial_lake_outburst_flood

    The cause of the breach is not known but may have been caused by an earthquake or simply the build-up of water pressure in the lake. As well as destroying the isthmus that connected Britain to continental Europe, the flood carved a large bedrock-floored valley down the length of the English Channel, leaving behind streamlined islands and ...

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