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OE

3. Which of the following is not mentioned as a characteristic of bosons?

The author states that fermions, not bosons, are the constituents of ordinary matter. All other answers are mentioned in the second paragraph of the passage. Thus, (C) is the correct choice.

Answer: C
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OE

4. Which of the following can be properly inferred from the passage?

The second paragraph states that Cooper pairs of electrons will “flow in precise harmony and with zero resistance through the metal.” As an example of the same phenomenon, the second paragraph also states that a “swirl in a cup of superfluid helium will, amazingly, never dissipate.” Therefore, it is correct to infer that “a current through a superconducting wire will never dissipate,” as in choice (D). As for (A), the passage states that an even number of fermions (which, according to the first paragraph, “include electrons, protons, and neutrons”) constitute a boson, but not an odd number (1⁄2 integer times an odd will not give an integer). The last paragraph states that “scientists argue for the existence of skyrmions” in a medium that might permit them to be formed, implying that they have not yet been discovered, so eliminate (B). In (C), the author states that two electrons cannot circle a nucleus in the same orbit, but they could spin in different orbits that are the same distance from the nucleus. Finally, in (E), the author gives two examples of fermions becoming bosons at cooled temperatures but does not say this is the only situation in which this can occur.


Answer: D
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5. According to the passage, which of the following describes a difference between fermions and bosons?

The first paragraph states that fermions obey the Pauli principle, according to which no two particles can occupy the same fundamental state. The second paragraph states that bosons tend to bunch together in exactly the same state. This supports choice (A) and is the opposite of (E); thus, (E) is incorrect. Choice (D) is also the opposite of what the passage claims. Bosons have integral spin values and fermions have “half-integral” spin. Answer (B) is incorrect because the passage does not discuss the total number of particle types for bosons or fermions, and answer (C) is incorrect because the passage explicitly states that both fermions and bosons can exist in groups.


Answer: A
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6. Based on the information in the passage about the Pauli exclusion principle, to which one of the following situations would this principle be most relevant?

The passage states that the Pauli principle prohibits any two particles from inhabiting the same fundamental state. Further, the Pauli principle should be applied to fermions, “which include electrons, protons, and neutrons,” but not bosons (from the second paragraph). Answer choice (A) discusses electrons, which are fermions, avoiding occupation of identical energy levels, so (A) is relevant and thus the correct answer. As for (B), a charged particle in a magnetic field neither provides the criteria for a fermion nor references inhabitance of the same state. Answer (C) does not specify the type of particle. Answer (D) is about photons, which are described in the passage as bosons, to which the Pauli principle does not apply. Regarding (E), the passage explicitly states that the Higgs particle is a boson, so the Pauli exclusion principle doesn’t apply here.

Answer: A