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Zorluk: ZorExplicit Detail Retrieval

In studying Holocene marine climate shifts, oceanographers have historically relied on shallow-water reef corals as proxies for sea-surface temperature variations. However, recent analyses of deep-sea scleractinian corals—specifically *Lophelia pertusa* harvested from bathyal depths along the North Atlantic margin—have challenged the assumption that deep-ocean thermal regimes remained stagnant throughout these epochal shifts. Unlike surface-dwelling corals, whose skeletal strontium-to-calcium (Sr/CaSr/Ca) ratios correlate directly with ambient surface temperatures, *Lophelia pertusa* incorporates barium (Ba/CaBa/Ca) into its aragonite skeleton in proportion to localized nutrient upwelling and sub-thermocline oceanic mixing rather than ambient temperature alone. Notably, during the 8.2-kiloyear cold event, while North Atlantic sea-surface temperatures registered marked cooling, deep-coral Ba/CaBa/Ca ratios exhibited a sharp transient reduction, whereas skeletal Sr/CaSr/Ca ratios in the same deep-sea specimens remained invariant. Researchers attribute this localized Ba/CaBa/Ca decline not to temperature fluctuations, but to the suppression of deep-water convective overturn caused by meltwater pulses flooding the subpolar gyre. Consequently, deep-sea coral skeletal geochemistry provides a precise record of vertical hydrographic reorganization independent of surface thermodynamic trends.

According to the passage, the temporary reduction in barium-to-calcium (Ba/CaBa/Ca) ratios observed in *Lophelia pertusa* during the 8.2-kiloyear event was directly caused by which of the following?

  1. The suppression of deep-water convective overturn resulting from meltwater entering the subpolar gyreCevap
  2. B
    A marked cooling in ambient sea-surface temperatures across the North Atlantic margin
  3. C
    A structural transformation in the coral aragonite skeleton induced by surface thermodynamic trends
  4. D
    A rapid transient increase in skeletal strontium-to-calcium (Sr/CaSr/Ca) ratios within deep-sea specimens
  5. E
    An intensification of localized nutrient upwelling along the bathyal North Atlantic margin

Cevap

The temporary reduction in barium-to-calcium (Ba/CaBa/Ca) ratios in *Lophelia pertusa* was directly caused by the suppression of deep-water convective overturn resulting from meltwater entering the subpolar gyre.
The correct answer accurately paraphrases the explicit detail provided in the passage: 'Researchers attribute this localized Ba/CaBa/Ca decline not to temperature fluctuations, but to the suppression of deep-water convective overturn caused by meltwater pulses flooding the subpolar gyre.'

Adım Adım Çözüm

1
Locate the explicit mention of the 8.2-kiloyear event and Ba/CaBa/Ca ratios in the passage.
Identified the sentence: 'Researchers attribute this localized Ba/CaBa/Ca decline not to temperature fluctuations, but to the suppression of deep-water convective overturn caused by meltwater pulses flooding the subpolar gyre.'
Explicit detail retrieval requires matching the exact factual attribution provided by the author.
2
Evaluate the causal factors cited in the text against the statement options.
The text directly links the Ba/CaBa/Ca decline to meltwater pulses flooding the subpolar gyre and suppressing convective overturn.
To select the correct choice, the paraphrase must accurately reflect the specific cause identified in the text without altering conditions or introducing external assumptions.
3
Eliminate distractors that misstate explicit facts or make unwarranted extrapolations.
Discarded choices citing temperature fluctuations, invariant Sr/CaSr/Ca ratio increases, skeletal structural shifts, or upwelling intensification.
The text specifically disconfirms temperature as the cause and notes Sr/CaSr/Ca remained invariant, while upwelling intensification contradicts a ratio drop.

Anahtar Kavram

Explicit Detail Retrieval
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