If a Supernova (the explosion of a massive star) Triggered Star Formation from Dense Clouds of Gas and Dust

Reading Passage Question

If a supernova (the explosion of a massive star) triggered star formation from dense clouds of gas and dust, and if the most massive star to be formed from the cloud evolved into a supernova and triggered a new round of star formation, and so on, then a chain of star-forming regions would result. If many such chains were created in a differentially rotating galaxy, the distribution of stars would resemble the observed distribution in a spiral galaxy.

This line of reasoning underlies an exciting new theory of spiral-galaxy structure. A computer simulation based on this theory has reproduced the appearance of many spiral galaxies without assuming an underlying density wave, the hallmark of the most widely accepted theory of the large-scale structure of spiral galaxies. That theory maintains that a density wave of spiral form sweeps through the central plane of a galaxy, compressing clouds of gas and dust, which collapse into stars that form a spiral pattern.

“If a supernova (the explosion of a massive star) triggered star formation from dense clouds of gas and dust”- is a GMAT reading comprehension passage with answers. Candidates need a strong knowledge of English GMAT reading comprehension.

This GMAT Reading Comprehension consists of 4 comprehension questions. The GMAT Reading Comprehension questions are designed for the purpose of testing candidates’ abilities in understanding, analyzing, and applying information or concepts. Candidates can actively prepare with the help of GMAT Reading Comprehension Practice Questions.

Solution and Explanation

Question1
The primary purpose of the passage is to

(A) describe what results when a supernova triggers the creation of chains of star-forming regions
(B) propose a modification in the most widely accepted theory of spiral-galaxy structure
(C) compare and contrast the roles of clouds of gas and dust in two theories of spiral-galaxy structure
(D) describe a new theory of spiral-galaxy structure and contrast it with the most widely accepted theory
(E) describe a new theory of spiral-galaxy structure and discuss a reason why it is inferior to the most widely accepted theory

Answer: D
Explanation:
As we read the paragraph, we become aware of its main goal. In comparison to the most commonly recognised hypothesis, the author compares and contrasts the new explanation of spiral galaxy structure. The author contrasted the new theory without DM with the previous theory with DM at the conclusion of the section.

Question 2
The passage implies that, according to the new theory of spiral-galaxy structure, a spiral galaxy can be created by supernovas when the supernovas are

(A) producing an underlying density wave
(B) affected by a density wave of spiral form
(C) distributed in a spiral pattern
(D) located in the central plane of a galaxy
(E) located in a differentially rotating galaxy

Answer: E
Explanation:
A chain of star-forming areas would develop if a supernova caused star formation from thick clouds of gas and dust and sparked a fresh phase of star formation. The distribution of stars in a differentially rotating galaxy would mirror the observed distribution in a spiral galaxy if several such chains were formed.

Question 3
Which of the following, if true, would most discredit the new theory as described in the passage?

(A) The exact mechanism by which a star becomes a supernova is not yet completely known and may even differ for different stars.
(B) Chains of star-forming regions like those postulated in the new theory have been observed in the vicinity of dense clouds of gas and dust.
(C) The most massive stars formed from supernova explosions are unlikely to evolve into supernovas.
(D) Computer simulations of supernovas provide a poor picture of what occurs just before a supernova explosion.
(E) A density wave cannot compress clouds of gas and dust to a density high enough to create a star.

Answer: C
Explanation:
As mentioned in the passage, a chain of star-forming areas would develop if a supernova sparked the star creation of thick clouds of gas and dust, and if the most massive star to emerge from the cloud later developed into a supernova and triggered more star formation

Question 4
The author's attitude toward the new theory of spiral-galaxy structure can best be described as

(A) euphoric
(B) enthusiastic
(C) concerned
(D) critical
(E) disputatious

Answer: B
Explanation:
The author's behaviour is demonstrated by the statement in the second paragraph, "the line of reasoning underlying a "exciting" new theory of spiral galaxy structure."According to the theory, a spiral-shaped density wave passes through a galaxy's centre plane, compressing clouds of gas and dust that then collapse into spiral-shaped stars.

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