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DEPENDENCIA POR EDAD (OTCA)
Proyecto de Atlas de vulnerabilidad hiroclimática de la cuenca Amazonica -
SUSCEPTIBILIDAD BIOFÍSICA POR PENDIENTE ANTE SEQUÍAS (OTCA)
Proyecto"Atlas de vulnerabilidad hidroclimática de la cuenca amazónica" -
EQ-SAR-GEM-975
This dataset, providing Peak Ground Acceleration (pga, units: g) was computed by the Global Earthquake Model Foundation using the OpenQuake-engine implementation of the Hazard... -
EQ-SAR-GEM-475
This dataset, providing Peak Ground Acceleration (pga, units: g) was computed by the Global Earthquake Model Foundation using the OpenQuake-engine implementation of the Hazard... -
EQ-SOA-GEM-475
This dataset, providing Peak Ground Acceleration (pga, units: g) was computed by the Global Earthquake Model Foundation using the OpenQuake-engine implementation of the 2010... -
EQ-SAR-GEM-100
This dataset, providing Peak Ground Acceleration (pga, units: g) was computed by the Global Earthquake Model Foundation using the OpenQuake-engine implementation of the Hazard... -
EQ-SOA-GEM-2475
This dataset, providing Peak Ground Acceleration (pga, units: g) was computed by the Global Earthquake Model Foundation using the OpenQuake-engine implementation of the 2010... -
EQ-SAR-GEM-2475
This dataset, providing Peak Ground Acceleration (pga, units: g) was computed by the Global Earthquake Model Foundation using the OpenQuake-engine implementation of the Hazard... -
EQ-SOA-GEM-100
This dataset, providing Peak Ground Acceleration (pga, units: g) was computed by the Global Earthquake Model Foundation using the OpenQuake-engine implementation of the 2010... -
EQ-SOA-GEM-975
This dataset, providing Peak Ground Acceleration (pga, units: g) was computed by the Global Earthquake Model Foundation using the OpenQuake-engine implementation of the 2010... -
Comparison with the 1999 Global Seismic Hazard Assessment (GSHAP) model
A comparison of the 2017 USGS South America seismic hazard model and the 2010 USGS South America seismic hazard model was made to see how the models differ. The comparison was... -
Subduction zone boundaries used in the 2017 USGS seismic hazard model for Sou...
A seismic hazard model for South America, based on a smoothed (gridded) seismicity model, a subduction model, a crustal fault model, and a ground motion model, has been produced... -
Modified Mercalli Intensity based on peak ground acceleration, with a 10% pro...
A seismic hazard model for South America, based on a smoothed (gridded) seismicity model, a subduction model, a crustal fault model, and a ground motion model, has been produced... -
Comparison with the 1999 Global Seismic Hazard Assessment (GSHAP) model
A comparison of the 2017 USGS South America seismic hazard model and the Global Seismic Hazard Assessment Program (GSHAP) model was made to see how the models differ. The... -
Ground motion models
A seismic hazard model for South America, based on a smoothed (gridded) seismicity model, a subduction model, a crustal fault model, and a ground motion model, has been produced... -
Modified Mercalli Intensity based on peak ground acceleration, with a 10% pro...
A seismic hazard model for South America, based on a smoothed (gridded) seismicity model, a subduction model, a crustal fault model, and a ground motion model, has been produced... -
Chance of slight (MMI = VI) damaging earthquake shaking in 100 years
This data set portrays the spatial potential for damaging earthquake ground shaking quantified as slight (MMI = VI) in 100 years. The maps and data are based on the average of... -
Chance of slight (MMI = VI) damaging earthquake shaking in 100 years
This data set portrays the spatial potential for damaging earthquake ground shaking quantified as slight (MMI = VI) in 100 years. The maps and data are based on the average of... -
1.0-second spectral response acceleration (5% of critical damping) with a 50%...
A seismic hazard model for South America, based on a smoothed (gridded) seismicity model, a subduction model, a crustal fault model, and a ground motion model, has been produced... -
Gridded earthquake rates (a-grids)
A seismic hazard model for South America, based on a smoothed (gridded) seismicity model, a subduction model, a crustal fault model, and a ground motion model, has been produced...
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