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Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale.

Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

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Page 1: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Earth from space (©NASA)

The earth is dynamic.

The processes that have shaped the earth as we know it today are perpetual on a geologic time scale.

Page 2: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Earth cross-section

Page 3: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Geologic history• Continental drift

Page 4: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Geologic history• Plate tectonics

Page 5: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Divergent boundaries

Page 6: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Convergent boundaries

Page 7: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Transform boundary

Page 8: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Hotspots

Page 9: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Lithospheric (tectonic) plates

Page 10: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Earthquakes

• Defined as the shaking of ground caused by a sudden release of energy from rocks underneath

• A fault is a break between two rock masses

Page 11: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Earthquakes• Average length of time: 10-30 seconds• Measured using the Richter Scale

• May cause tsunami waves– Submarine earthquakes– Explosive volcanic eruptions– Submarine landslides– Terrestrial landslides that enter water bodies– Impacts of large extraterrestrial objects (e.g. asteroids or comets) in the ocean

Page 12: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Tectonic Setting of Earthquake of 26 December 2004 from United States Geological Survey(http://earthquake.usgs.gov/eqinthenews/2004/usslav/)

Earthquake caused by subduction of Indian plate beneath the Burma microplate

Relative motion of Indian plate to Burma microplate = 0.06 m per year (2.4 inches per year)

Page 13: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Areas potentially affected by tsunami inundation and run-up in yellow(i.e. shore zones < 20 m above sea-level)

Areas Potentially Affected by Tsunami of 26 December 2004 from UNOSAT(www.unosat.org)

Page 14: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Volcanoes

Page 15: Earth from space ( © NASA) The earth is dynamic. The processes that have shaped the earth as we know it today are perpetual on a geologic time scale

Ring of Fire