Command of Evidence: Quantitative

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Marine biologist Dr. Sofia Rossi and her team investigated the resilience of two key Caribbean reef-building coral species, *Acropora cervicornis* and *Porites astreoides*, under elevated sea surface temperatures. Corals rely on calcification to build their calcium carbonate skeletons, a process that is often impaired by thermal stress. Rossi hypothesized that while both species would exhibit reduced calcification rates when exposed to heat stress, the structurally denser *Porites astreoides* would demonstrate greater thermal tolerance, maintaining a significantly higher calcification rate than *Acropora cervicornis* at elevated temperatures.

Mean Calcification Rates of Two Coral Species at Different Temperatures:

Coral speciesCalcification rate at 27C27^\circ\text{C} (mg CaCO3 cm2 day1\text{mg CaCO}_3\text{ cm}^{-2}\text{ day}^{-1})Calcification rate at 31C31^\circ\text{C} (mg CaCO3 cm2 day1\text{mg CaCO}_3\text{ cm}^{-2}\text{ day}^{-1})
*Acropora cervicornis*1.851.850.450.45
*Porites astreoides*1.151.150.950.95

Which choice most effectively uses data from the table to support Dr. Rossi's hypothesis?

Cevabı ve açıklamayı göster

Cevap: At 31C31^\circ\text{C}, the calcification rate of *Porites astreoides* was 0.95 mg CaCO3 cm2 day10.95\text{ mg CaCO}_3\text{ cm}^{-2}\text{ day}^{-1}, whereas the rate for *Acropora cervicornis* was 0.45 mg CaCO3 cm2 day10.45\text{ mg CaCO}_3\text{ cm}^{-2}\text{ day}^{-1}.

Cevap

At 31C31^\circ\text{C}, the calcification rate of *Porites astreoides* was 0.95 mg CaCO3 cm2 day10.95\text{ mg CaCO}_3\text{ cm}^{-2}\text{ day}^{-1}, whereas the rate for *Acropora cervicornis* was 0.45 mg CaCO3 cm2 day10.45\text{ mg CaCO}_3\text{ cm}^{-2}\text{ day}^{-1}.
The correct answer accurately states the data from the table for the elevated temperature of 31C31^\circ\text{C}. At this temperature, the calcification rate of *Porites astreoides* (0.95 mg CaCO3 cm2 day10.95\text{ mg CaCO}_3\text{ cm}^{-2}\text{ day}^{-1}) is indeed higher than that of *Acropora cervicornis* (0.45 mg CaCO3 cm2 day10.45\text{ mg CaCO}_3\text{ cm}^{-2}\text{ day}^{-1}), which directly supports Dr. Rossi's hypothesis that *Porites astreoides* maintains a higher rate under thermal stress.

Adım Adım Çözüm

1
Identify Dr. Rossi's hypothesis in the passage.
The hypothesis is that under heat stress, the structurally denser *Porites astreoides* will maintain a higher calcification rate than *Acropora cervicornis*.
This establishes what evidence is required: a comparison of calcification rates between the two species at the elevated temperature.
2
Locate the elevated temperature data in the table.
The elevated temperature is 31C31^\circ\text{C}. Under this column, the rate for *Acropora cervicornis* is 0.45 mg CaCO3 cm2 day10.45\text{ mg CaCO}_3\text{ cm}^{-2}\text{ day}^{-1}, and the rate for *Porites astreoides* is 0.95 mg CaCO3 cm2 day10.95\text{ mg CaCO}_3\text{ cm}^{-2}\text{ day}^{-1}.
This extracts the correct quantitative parameters needed to evaluate the claim.
3
Select the option that accurately states these figures and compares them in a way that supports the hypothesis.
The correct option states that the rate of *Porites astreoides* (0.950.95) is higher than that of *Acropora cervicornis* (0.450.45) at 31C31^\circ\text{C}.
This directly confirms the prediction that *Porites astreoides* is more thermally tolerant.

Anahtar Kavram

Command of Evidence: Quantitative
Command of Evidence: Quantitative Alıştırma Soruları — SAT | Examkin