Reading comp PrepTest 133 · Section 4 · Question 19

Passage

Questions 16-21  .        Until the 1950s, most scientists believed that the  . geology of the ocean floor had remained Remaining source text redacted.
Passage walkthrough
Passage Summary

Topic: Science


Paragraph 1

  • Paragraph note
    • Old belief (ocean floor unchanged) and the first in a list of discoveries that made old belief unsupportable (variations in basalt's polarity)
  • Views, minor Meta-Structures, and the author's attitude
    • Old belief:
      • The geology of ocean floor has been unchanged for millions of years (first sentence)
    • New belief (post-1950):
      • Based on new discoveries, it's clear that the ocean floor's geology has changed (second sentence)
    • List of new discoveries:
      • Odd magnetic variations in the basalt on the ocean floor; some align with Earth's magnetic field; others reversed (third through sixth sentences)
    • Definition of magnetite: strongly magnetic mineral (fourth sentence)
    • Definition of "normal" polarity: polarity that is aligned with Earth's current magnetic field (fifth sentence)
    • Definition of "reversed" polarity: polarity that is the opposite of Earth's current magnetic field (fifth sentence)
    • Cause-and-effect relationship, according to the author:
      • Earth's current magnetic field causes magnetite to possess a normal or reversed polarity, which is "locked in" as magnetite cools to form basalt (sixth through last sentences)
    • Author's attitude: "insupportable" (second sentence); "not entirely surprising" (fourth sentence)

Paragraph 2

  • Paragraph note
    • The second in a list of discoveries that made old belief unsupportable (stripes of rock with different polarities along mid-ocean ridge, ocean floor spreading)
  • Views, minor Meta-Structures, and the author's attitude
    • Definition of "mid-ocean ridge": Underwater mountain range that winds around the Earth (first sentence)
    • Scientists' view:
      • The mid-ocean ridge is a structurally weak zone where the ocean floor gets pulled apart, and new rock forms from magma that emerges in this zone; this process is called ocean floor spreading (third through last sentences)
    • Author's attitude: "great oceanic discovery" (first sentence)

Paragraph 3

  • Paragraph note
    • Evidence that supports ocean floor spreading theory (stripes of rocks match the polarity of Earth's magnetic reversals)
  • Views, minor Meta-Structures, and the author's attitude
    • List of evidence that supports ocean floor spreading theory, according to the author:
      • The rocks are young at peak and older as you move away (second sentence)
      • The oungest rocks all have normal polarity (third sentence)
      • If we assume the ocean spreads 1 cm/year, the striping pattern matches when Earth's magnetic reversals occurred (last sentence)
    • Author's attitude: "was supported" (first sentence); "remarkable correlation" (last sentence)

Main Point: Following new discoveries on the ocean floor, scientists in the 1950s adopted the new belief that the geology of the ocean floor has been changing over the past millions of years.

Meta-Structure?

Correcting the Record: This passage best fits the Correcting the Record Meta-Structure.* In such a passage, the author typically begins by describing a common misconception or false belief. Often, this false belief is based on a lack of information. Then, the author explains why this past belief is false or misleading, occasionally offering an alternative belief. In this passage, we learn that scientists used to the false belief that the ocean floor didn't change over millions of years. The author corrects this belief in light of recent evidence. The new belief holds that the ocean floor has changed considerably, especially through the ocean floor spreading along the mid-ocean ridge.

In a passage that uses a Correcting the Record Meta-Structure, the main point is often the author’s explanation of why the misconception is false. However, if the author provides an alternative belief, the main point will be the author’s opinion about that belief. Since the author provides the new belief on ocean floor spreading, we made the crux of our anticipated main point.

*As is often the case with passages that use a Critical Meta-Structure, several other Meta-Structures from this family could also describe this passage. Certainly, we could call this an Old Approach/New Approach passage (or perhaps more precisely, an Old Theory/New Theory passage). The passage brings up an old approach and the new one that replaced it. We wouldn't call this a Criticizing a Viewpoint or Rebutting Critics passage — the author spends far more time discussing evidence supporting the new theory than criticizing the old theory — but these Meta-Structures wouldn't be entirely off-base either. We could even call this a Phenomenon/Explanation passage (phenomenon: rocks of different polarities along mid-ocean ridge; explanation: ocean floor spreading) or Proposing a Hypothesis passage.

Lists: The passage has two sets of lists, making the list the most prominent minor Meta-Structure. First, it provides two new discoveries that led to the development of the new belief (P1, S3; P2, S1). Second, it provides three lines of evidence that support a theory related to the second new discovery (P3, S2-S4). These lists and their elements will likely feature heavily in the questions.

Last Thoughts?

The description of polarity, magnetite, ocean peaks, structurally weak zones, magnetic variations, etc … there is a lot of science in this passage. As such, we're going to have to rely heavily on the passage and our notes to help us answer questions asking about those details, as there's no way we can digest it all in the time we have to read the passage itself.

Question prompt

If the time intervals Remaining source text redacted.
Why the credited answer is right

Credited answer: C

The notes below walk through why it fits the stem and how to eliminate the rest.

Question Type

Science

Strategy Overview

Review the main point and any relevant parts of the passage and notes, if necessary, to anticipate what might happen in the scenario described

Answer Anticipation

For questions that ask us to infer, from a few details in the passage, what must be true in a novel situation, we can start by quickly finding and reviewing those details. Once we review that part of the passage, we can anticipate what might happen in the hypothetical situation described. We should consider how the hypothetical situation applies to what we reviewed and whether it might follow a similar or distinct pattern to that described in the passage.This question asks us what would be true if the "time intervals between the earth's magnetic field reversals fluctuate[d] greatly." So, we should first review what the passage says about the reversals in the Earth's polarity. Our note for the first paragraph mentions "variations in basalt's polarity," while our note for the third paragraph mentions "stripes of rocks [that] match the polarity of Earth's magnetic reversals." So, we should review these parts of the passage to form an anticipation of what would happen if the intervals between the reversals fluctuated greatly.In the first paragraph, we learn that magnetite in basalt "locks in" the polarity of the Earth's magnetic field when that basalt cools (P1, S6). In the third paragraph, we learn that scientists used the magnetic striping of the ocean floor to find a correlation between that striping and the magnetic reversals (P3, S4). So, if the time intervals on the reversals fluctuate greatly, then there would be great fluctuations in those striping patterns. If it took a long time for the Earth's polarity to reverse, we'd see a comparatively wide stripe of rocks "locked in" with a given polarity. Inversely, if it took very little time for the Earth's polarity to reverse, we'd see a comparatively thin stripe of rocks "locked in" with that polarity.In other words, we could expect the stripes of rocks locked in with a given polarity to vary in width. Let's look for that in the answer choices.

Answer choices

  1. A
    Compass readings are most Remaining source text redacted.
    Why choice A is not credited

    (A) Does this say that the stripes of rocks locked in with a given polarity would vary in width?

    Nope, so we can cross (A) off. Besides, there's no support for this claim. The passage says that magnetite distorts compass readings (P1, S4). However, there's no indication that magnetite is most likely present, or present in greatest quantities, at the peaks of the mid-ocean ridge. Magma erupts from the crest of ridges (P2, S4), but there's no reason to believe this magma is more magnetic than magma that cooled and became basalt and was then pulled away from the peak (according to the ocean floor spreading theory).

  2. B
    It is this fluctuation Remaining source text redacted.
    Why choice B is not credited

    (B) Does this say that the stripes of rocks locked in with a given polarity would vary in width?

    No, so we can eliminate (B). Besides, the passage doesn't provide any support for this claim. While the passage does describe the range as winding around the Earth like the seams of a baseball (P2, S1), it doesn't attribute this to any specific phenomenon.

  3. C
    Some of the magnetic Remaining source text redacted.
    Why choice C matches the stem

    (C) Does this say that the stripes of rocks locked in with a given polarity would vary in width?

    Yes! Some magnetic stripes of basalt will be wider than others if the time intervals between the Earth's magnetic field reversals fluctuate greatly. After all, the stripes follow the polarity reversals. Each stripe corresponds to a different polarity. As such, if those polarity reversals have different time intervals, then some stripes would be wider than others (and the "much" wider matches up with the question stem's "fluctuate greatly").

  4. D
    Continental rock is a Remaining source text redacted.
    Why choice D is not credited

    (D) Does this say that the stripes of rocks locked in with a given polarity would vary in width?

    Nope. So, we can toss out (D). Besides, the passage notes that the timeline of reversals was calculated using continental volcanic rocks and that similar calculations using oceanic rock showed a "remarkable correlation" P4, S1), so there's no indication the former is more reliable than the latter.

  5. E
    Within any given magnetic Remaining source text redacted.
    Why choice E is not credited

    (E) Does this say that the stripes of rocks locked in with a given polarity would vary in width?

    No. So, let's eliminate (E). Besides, this isn't a true statement — in this or any hypothetical. We learn that basalt forms when magma erupts from the mid-ocean ridge and eventually cools (P2, S4). We also learn that the rocks closest to the ridge are the youngest, and they become progressively older as they move away from the crest (P3, S2). Finally, stripes are formed based on the Earth's magnetic field reversals (P4, S4). So, different basalt rocks in the same stripe can be of different ages. One closer to the ridge is younger than one farther away from the ridge. They just happened to have both emerged and cooled when the Earth's polarity was oriented in the same direction.

What this tests

Question analytics

Based on historical answer selection rates for this question.

Answer choice distribution

  1. A 15%
  2. B 15%
  3. C Credited 60%
  4. D 6%
  5. E 4%

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