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Zorluk: OrtaIdentifying Core Claims and Hypotheses

### Deep-Focus Earthquakes

Most earthquakes occur at shallow depths (less than 70 km70\text{ km}) where rocks are cold and brittle. However, deep-focus earthquakes occur at depths of 300 to 700 km300\text{ to }700\text{ km}, where high temperatures and pressures should cause rocks to deform plastically rather than fracture. Two scientists propose different mechanisms for how these deep-focus earthquakes occur.

*Scientist 1*
Deep-focus earthquakes are caused by dehydration embrittlement. As a subducting oceanic slab sinks, hydrous minerals (such as serpentine) within the slab break down under increasing temperature and pressure, releasing liquid water. This high-pressure fluid fills pre-existing micro-fractures in the surrounding rock, reducing the effective normal stress and allowing frictional sliding along fault planes that would otherwise be locked by extreme pressure.

*Scientist 2*
Deep-focus earthquakes are caused by transformational faulting associated with a metastable phase change. At depths of 300 to 700 km300\text{ to }700\text{ km}, the mineral olivine in the subducting slab is thermodynamically unstable and should transform into the denser polymorph ringwoodite. However, the cold interior of the slab keeps olivine in a metastable state. As stress increases, micro-shear zones form where olivine rapidly transforms to ringwoodite. This sudden volume change creates localized shear instability, triggering the earthquake.

According to Scientist 2, deep-focus earthquakes are initiated primarily by which of the following processes?

  1. A
    The release of high-pressure liquid water from the breakdown of hydrous minerals
  2. B
    The brittle fracturing of dry rock along fault lines caused by tectonic shear stress
  3. The rapid phase transformation of metastable olivine to a denser mineral polymorphCevap
  4. D
    The localized melting of silicate rocks due to friction along fault zones

Cevap

The correct answer is that deep-focus earthquakes are initiated by the rapid phase transformation of metastable olivine to a denser mineral polymorph.
The correct answer describes Scientist 2's core claim. Scientist 2 states that deep-focus earthquakes are caused by transformational faulting, which occurs when metastable olivine rapidly transforms into the denser polymorph ringwoodite, causing localized instability.

Adım Adım Çözüm

1
Identify the scientist whose viewpoint is being questioned.
The question asks about the mechanism proposed by Scientist 2.
This focuses the analysis on the second paragraph of the passage.
2
Locate and summarize Scientist 2's core claim regarding how deep-focus earthquakes are triggered.
Scientist 2 claims that the earthquakes are caused by transformational faulting where olivine rapidly transforms to the denser polymorph ringwoodite, creating shear instability.
This direct citation provides the criteria to evaluate the options.
3
Evaluate the given options to find the one that matches Scientist 2's claim.
The option describing the phase transformation of metastable olivine to a denser polymorph matches Scientist 2's hypothesis, whereas the other options describe Scientist 1's claim, shallow earthquakes, or unrelated processes.
This identifies the correct option and eliminates the distractors.

Anahtar Kavram

Identifying the central hypothesis of a scientific viewpoint in a debate
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