CAT 2018 Slot 2 — VARC Question 9
Answer the following question based on the information given below.
NOT everything looks lovelier the longer and closer its inspection. But Saturn does. It is gorgeous through Earthly telescopes. However, the 13 years of close observation provided by Cassini, an American spacecraft, showed the planet, its moons and its remarkable rings off better and better, revealing finer structures, striking novelties and greater drama. . . .
By and large the big things in the solar system—planets and moons—are thought of as having been around since the beginning. The suggestion that rings and moons are new is, though, made even more interesting by the fact that one of those moons, Enceladus, is widely considered the most promising site in the solar system on which to look for alien life. If Enceladus is both young and bears life, that life must have come into being quickly. This is also believed to have been the case on Earth. Were it true on Enceladus, that would encourage the idea that life evolves easily when conditions are right.
One reason for thinking Saturn’s rings are young is that they are bright. The solar system is suffused with comet dust, and comet dust is dark. Leaving Saturn’s ring system (which Cassini has shown to be more than 90% water ice) out in such a mist is like leaving laundry hanging on a line downwind from a smokestack: it will get dirty. The lighter the rings are, the faster this will happen, for the less mass they contain, the less celestial pollution they can absorb before they start to discolour. . . . Jeff Cuzzi, a scientist at America’s space agency, NASA, who helped run Cassini, told the Lunar and Planetary Science Conference in Houston that combining the mass estimates with Cassini’s measurements of the density of comet-dust near Saturn suggests the rings are no older than the first dinosaurs, nor younger than the last of them—that is, they are somewhere between 200m and 70m years old.
That timing fits well with a theory put forward in 2016, by Matija Cuk of the SETI Institute, in California and his colleagues. They suggest that at around the same time as the rings came into being an old set of moons orbiting Saturn destroyed themselves, and from their remains emerged not only the rings but also the planet’s current suite of inner moons— Rhea, Dione, Tethys, Enceladus and Mimas. . . .
Dr Cuk and his colleagues used computer simulations of Saturn’s moons’ orbits as a sort of time machine. Looking at the rate at which tidal friction is causing these orbits to lengthen they extrapolated backwards to find out what those orbits would have looked like in the past. They discovered that about 100m years ago the orbits of two of them, Tethys and Dione, would have interacted in a way that left the planes in which they orbit markedly tilted. But their orbits are untilted. The obvious, if unsettling, conclusion was that this interaction never happened—and thus that at the time when it should have happened, Dione and Tethys were simply not there. They must have come into being later. . . .
The phrase “leaving laundry hanging on a line downwind from a smokestack” is used to explain how the ringed planet's:
Answer & solution
Correct answer: rings discolour and darken over time.
- A
atmosphere absorbs comet dust.
- B
moons create a gap between the rings.
rings discolour and darken over time.
- D
rings lose mass over time.
Easy
Locate the smokestack analogy in paragraph 3 and read it in context. The point of the image is the consequence of leaving something out in dust-laden air. Match each option to what the analogy is actually illustrating about Saturn's rings.
Atmosphere absorbs comet dust. The analogy is about the rings, not Saturn's atmosphere. The passage never says the atmosphere absorbs dust; it discusses the ring system getting dirty. Off-topic, so wrong.
Moons create a gap between the rings. Moons and gaps are nowhere connected to the laundry image. This idea is imported from outside the analogy. Wrong.
Rings discolour and darken over time. The passage says the solar system is "suffused with comet dust, and comet dust is dark," and leaving the icy rings in such a mist "is like leaving laundry hanging on a line downwind from a smokestack: it will get dirty." Bright rings that sit in this dusty environment must gradually darken — exactly the laundry image. Correct.
Rings lose mass over time. Mass is mentioned only to say that lighter rings discolour faster — mass governs the rate of dirtying, it is not what the rings lose. The analogy is about getting dirty, not shedding mass. Wrong.
Correct answer: Option C — the laundry-by-the-smokestack image explains how the rings, like clean washing in dirty air, discolour and darken over time as they absorb dark comet dust.
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