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Volcanic Activity on the Earth’s Surface Simplified Revision Notes

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Volcanic Activity on the Earth's Surface

Key Terms

TermDefinition
Pyroclast/Pyroclastic MaterialAny material ejected from a volcano including ash, dust and rocks
SubductionWhen one plate is brought underneath the other
VolcanologistStudies volcanoes
PlutonsGranite structures
CalderaCauldron like volcano
SilicaThe name given to a group of minerals composed of silicon and oxygen, the two most abundant elements in the earth's crust

Introduction to Volcanoes

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  • A volcano forms when molten magma forces its way to the Earth's surface through a narrow tube called a vent and reaches the surface through an opening called a crater.
  • Once magma reaches the surface it is called lava.
  • Magma is stored underground in a magma chamber – it can reach 1,000°C here so the rock is in a molten state.
  • During an eruption hot ash, volcanic rock bombs, dust and lava erupt – collectively known as pyroclastic material.

Location of Volcanoes

1. Most Famous Example: Pacific Ring of Fire

  • Contains 75% of the world's volcanoes, making it the most volcanic region globally.
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2. Divergent Plate Boundaries

What happens?

  • Two tectonic plates pull apart, creating a fissure in the Earth's crust.

  • Magma rises through the fissure to the surface. Characteristics:

  • Gentle eruptions, as magma has a larger opening to escape. Example: Mid-Atlantic Ridge – a prominent divergent boundary.

3. Convergent Plate Boundaries

What happens?

  • Two tectonic plates collide, and one plate is subducted beneath the other.

  • Magma forms due to intense pressure and reaches the surface through a narrow opening. Characteristics:

  • Violent eruptions, as magma escapes under extreme pressure.

  • Example: The Nazca Plate subducting beneath the South American Plate, forming the Andes with 2,000 active volcanoes.

4. Hotspots

What happens?

  • Weaknesses in the middle of tectonic plates allow magma to rise due to superheated plumes.

  • Hotspots are stationary, but as plates move over them, new volcanic islands form. Characteristics:

  • Volcanoes at hotspots eventually become less active and extinct, leaving behind a trail of volcanic islands. Examples: The Hawaiian Islands.

5. Silica Content and Eruption Type

  • Silica content in magma determines the type of eruption:
  • High silica content: Thick magma traps gases, causing explosive eruptions.
  • Low silica content: Magma flows more easily, leading to gentler eruptions.
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