Cosmic Black Holes - IELTS Reading Answers & Explanations
From Barrons IELTS Practice Exams Academic Reading Test 3 · Part 3 · Questions 28–40
Reading Passage
You should spend about 20 minutes on Questions 28–40, which are based on Reading Passage 3 below.
Cosmic Black Holes
In 1687, the English scientist Isaac Newton published his monumental work, Philosophiae Naturalis Principia Mathematica (Mathematical Principles of Natural Philosophy), containing his theory of gravitation and the mathematics to support it. In essence, Newton’s law of gravitation stated that the gravitational force between two objects, for example, two astronomical bodies, is directly proportional to their masses. Astronomers found that it accurately predicted all the observable data that science at that time was able to collect, with one exception—a very slight variation in the orbit of the planet Mercury around the sun.
It was 228 years before anyone was able to offer a refinement of Newton’s law that accounted for the shape of Mercury’s orbit. In 1915, Albert Einstein’s general theory of relativity was published. Using the equations of general relativity, he calculated the shape of Mercury’s orbit. The results predicted astronomical observations exactly and provided the first proof of his theory. Expressing it very simplistically, the general theory of relativity presumes that both matter and energy can distort space—time and cause it to curve. What we commonly call gravity is in fact the effect of that curvature.
Among other phenomena, Einstein’s theory predicted the existence of black holes, although initially he had doubts about their existence. Black holes are areas in space where the gravitational field is so strong that nothing can escape them. Because of the immense gravitational pull, they consume all the light that comes near them, and thus they are “black.” In fact, neither emitting nor reflecting light, they are invisible. Due to this, they can be studied only by inference based on observations of their effect on the matter—both stars and gases—around them and by computer simulation. In particular, when gases are being pulled into a black hole, they can reach temperatures up to 1,000 times the heat of the sun and become an intensely glowing source of X rays.
Surrounding each black hole is an “event horizon,” which defines the area over which the gravitational force of the black hole operates. Anything passing over the lip of the event horizon is pulled into the black hole. Because observations of event horizons are difficult due to their relatively small size, even less is known about them than about black holes themselves.
Black holes exist in three sizes. Compact ones, called star-mass black holes and which have been known to exist for some time, are believed to be the result of the death of a single star. When a star has consumed itself to the point that it no longer has the energy to support its mass, the core collapses and forms a black hole. Shock waves then bounce out, causing the shell of the star to explode. In a way that is not yet understood, the black hole may then reenergize and create multiple explosions within the first few minutes of its existence. So-called super-massive black holes, also well documented, contain the mass of millions or even billions of stars. And just recently one intermediate black hole, with about 500 times the mass of the sun, has been discovered. Scientists have postulated that the intermediate black hole may provide a “missing link” in understanding the evolution of black holes.
Current scientific data suggest that black holes are fairly common and lie at the center of most galaxies. Based on indirect evidence gained using X-ray telescopes, thousands of black holes have been located in our galaxy and beyond. The black hole at the center of the Milky Way, known as Sagittarius A* (pronounced “A-star”), is a supermassive one, containing roughly four million times the mass of our sun. Astronomers suggest that orbiting around Sagittarius A*, 26,000 light years from Earth, may be as many as tens of thousands of smaller black holes. One possible theory to explain this is that a process called “dynamical friction” is causing stellar black holes to sink toward the center of the galaxy.
It is thought that the first black holes came into existence not long after the big bang. Newly created clouds of gases slowly coalesced into the first stars. As these early stars collapsed, they gave rise to the first black holes. A number of theories proposed that the first black holes were essentially “seeds,” which then gravitationally attracted and consumed enormous quantities of matter found in adjacent gas clouds and dust. This allowed them to grow into the super-massive black holes that now sit in the centers of galaxies. However, a new computer simulation proposes that such growth was minimal. When the simulated star collapsed and formed a black hole, there was very little matter anywhere near the black hole’s event horizon. Being in essence “starved,” it grew by less than 1 percent over the course of its first hundred million years. The new simulations do not definitively invalidate the seed theory, but they make it far less likely. On the other hand, it is known that black holes a billion times more massive than our sun did exist in the early universe. Researchers have yet to discover how these super-massive black holes were formed in such a short time, and the origin of these giants poses one of the most fundamental questions in astrophysics.
It has become practically a hallmark of the research on black holes that with each new study, more is known, more theories are generated, and yet more questions are raised than answered.
Questions
Questions 28–34 Matching Sentence Endings
Complete each sentence with the correct ending, A–N, below. Write the correct letter, A–N.
A. by observing the matter around them.
B. suggested the presence of black holes in outer space.
C. when a single star collapses.
D. difficult to study.
E. barely visible light.
F. an inescapable gravitational pull.
G. did not apply to most astronomical bodies.
H. by direct observation.
I. could not explain Mercury’s path around the sun.
J. caused doubt about the existence of black holes.
K. lose visibility.
L. become very hot.
M. with large event horizons.
N. at the center of each black hole.
Questions 35–36 One Choice
Choose the correct letter, A, B, or C.
Questions 37–40 True / False / Not Given
Do the following statements agree with the information given in the passage? Write:
TRUE if the statement agrees with the information
FALSE if the statement contradicts the information
NOT GIVEN if there is no information on this
Answers & Explanations Summary
| # | Answer | Evidence | Explanation |
|---|---|---|---|
| Q28 | I | Astronomers found that it accurately predicted all the observable data that science at that time was able to collect, with one exception—a very slight variation in the orbit of the planet Mercury around the sun | Excerpt/Passage Explanation: The passage explains that science back then could predict everything using Newton's law except for one thing, which was a small change in how Mercury travels around the sun. Answer Explanation: The answer choice I means that Newton's rules about gravity failed to explain the movement or track of the planet Mercury around the sun. Reason For Correctness: The correct answer is I because the passage states that Newton's law predicted almost all data correctly, with one exception: a small variation in Mercury's orbit around the sun. Here, "orbit" means "path around the sun", and having an "exception" means the law could not explain this specific movement. |
| Q29 | B | Among other phenomena, Einstein’s theory predicted the existence of black holes, although initially he had doubts about their existence | Excerpt/Passage Explanation: The passage explains that Einstein's theory showed that black holes exist, even though he was not completely sure about them at first. Answer Explanation: The answer means that Einstein's theory hinted that black holes exist in space. Reason For Correctness: The correct answer is B because the passage states that Einstein's theory predicted that black holes exist. In the sentence options, "suggested the presence of" means the same as "predicted the existence of", and "in outer space" refers to where black holes are found. |
| Q30 | F | Black holes are areas in space where the gravitational field is so strong that nothing can escape them | Excerpt/Passage Explanation: The passage explains that black holes are places in space where gravity is so powerful that nothing can get away from them. Answer Explanation: The answer means that black holes have gravity so strong that nothing can get away from them. Reason For Correctness: The correct answer is F because the text defines black holes as places where gravity is so strong that nothing can escape. The phrase 'nothing can escape them' matches the description of having an 'inescapable gravitational pull' in option F. |
| Q31 | A | Due to this, they can be studied only by inference based on observations of their effect on the matter—both stars and gases—around them and by computer simulation | Excerpt/Passage Explanation: The passage explains that because black holes cannot be seen, scientists must study them by watching how they affect the stars and gases that are close to them, or by using computer programs. Answer Explanation: The answer choice A means that scientists learn about black holes by watching the materials and objects surrounding them. Reason For Correctness: The correct answer is A because the passage states that black holes are invisible and do not reflect or give off light. Therefore, scientists can only study them by looking at how they affect the matter around them, such as nearby stars and gases. The phrase 'observations of their effect on the matter... around them' in the text directly corresponds to 'observing the matter around them'. |
| Q32 | L | In particular, when gases are being pulled into a black hole, they can reach temperatures up to 1,000 times the heat of the sun and become an intensely glowing source of X rays | Excerpt/Passage Explanation: The passage explains that when gases get sucked into a black hole, their heat can rise to 1,000 times the heat of the sun. Answer Explanation: The answer choice 'L' means that something gets extremely warm or reaches high temperatures. Reason For Correctness: The correct answer is L because the text states that when gases are drawn into a black hole, they can reach temperatures up to 1,000 times hotter than the sun. The phrase 'reach temperatures up to 1,000 times the heat of the sun' matches the meaning of 'become very hot.' |
| Q33 | D | Because observations of event horizons are difficult due to their relatively small size, even less is known about them than about black holes themselves | Excerpt/Passage Explanation: The passage explains that watching or studying event horizons is hard because they are small, so scientists know even less about event horizons than they do about black holes. Answer Explanation: The answer means that event horizons are hard to observe and learn about. Reason For Correctness: The correct answer is D because the text directly states that observing event horizons is "difficult" because of their small size. Since observing them is hard, studying them is also difficult, leaving scientists with very little information about them. |
| Q34 | C | Compact ones, called star-mass black holes and which have been known to exist for some time, are believed to be the result of the death of a single star | Excerpt/Passage Explanation: The passage explains that compact black holes (also known as star-mass black holes) come from the end of life of a single star. Answer Explanation: The answer choice C means that small black holes are formed when one star dies and breaks down. Reason For Correctness: The correct answer is C because the text states that compact black holes are formed from the death of one star when it collapses. In the text, the phrase 'death of a single star' matches the option 'when a single star collapses.' |
| Q35 | B | Current scientific data suggest that black holes are fairly common and lie at the center of most galaxies | Excerpt/Passage Explanation: The passage explains that modern science shows black holes are very common and are found in the middle of most galaxies. Answer Explanation: The answer B means that black holes are located in most of the galaxies in space. Reason For Correctness: The correct answer is B because the text explicitly states that black holes are common and exist at the middle of most galaxies. The key phrase to look for is "lie at the center of most galaxies," which directly matches option B ("in most galaxies"). |
| Q36 | A | The black hole at the center of the Milky Way, known as Sagittarius A* (pronounced “A-star”), is a supermassive one, containing roughly four million times the mass of our sun. Astronomers suggest that orbiting around Sagittarius A*, 26,000 light years from Earth, may be as many as tens of thousands of smaller black holes | Excerpt/Passage Explanation: The passage explains that Sagittarius A* is a very large black hole at the center of our galaxy, which is located 26,000 light years from Earth. Answer Explanation: The answer choice A means that Sagittarius A* is a black hole that is situated 26,000 light years away from Earth. Reason For Correctness: The correct answer is A because the text directly names Sagittarius A* as a supermassive black hole and notes that it is 26,000 light years from Earth. The other options are incorrect because Sagittarius A* is not orbiting Earth, nor is it a compact black hole. |
| Q37 | NOT GIVEN | It is thought that the first black holes came into existence not long after the big bang | Excerpt/Passage Explanation: The passage says that people think black holes started soon after the big bang, but it does not state if the time when the big bang happened is known or unknown. Answer Explanation: The answer means that the text does not say whether scientists know the exact time when the big bang happened or not. Reason For Correctness: The correct answer is NOT GIVEN because the passage mentions "the big bang" only to explain when the first black holes were formed. It does not provide any information about whether the time of the big bang itself is certain or uncertain. |
| Q38 | TRUE | A number of theories proposed that the first black holes were essentially “seeds,” which then gravitationally attracted and consumed enormous quantities of matter found in adjacent gas clouds and dust. This allowed them to grow into the super-massive black holes that now sit in the centers of galaxies | Excerpt/Passage Explanation: The passage explains that under the seed theories, the very first black holes acted like seeds by eating a lot of gas and dust nearby, which helped them grow into super-massive black holes. Answer Explanation: The answer "TRUE" means that the statement correctly matches the information given in the reading passage. Reason For Correctness: The correct answer is TRUE because the passage explicitly describes the "seed" idea, explaining that the earliest black holes acted like "seeds" that pulled in gas and dust, which allowed them to grow and turn into super-massive black holes. Key words like "first black holes", "seeds", "grow", and "super-massive black holes" match the ideas presented in the question. |
| Q39 | FALSE | The new simulations do not definitively invalidate the seed theory, but they make it far less likely | Excerpt/Passage Explanation: The passage explains that computer models (simulations) show the seed theory is much less probable (far less likely) to be correct, which contradicts the idea that simulations proved it true. Answer Explanation: The answer "FALSE" means that the given statement disagrees with or contradicts the information in the reading passage. Reason For Correctness: The correct answer is FALSE because the statement claims that computer simulations proved the "seed" theory to be true, but the passage states the opposite. According to the text, the new computer simulations make the seed theory "far less likely," meaning they cast doubt on it rather than proving it true. |
| Q40 | FALSE | On the other hand, it is known that black holes a billion times more massive than our sun did exist in the early universe | Excerpt/Passage Explanation: The passage states that scientists know giant black holes—a billion times heavier than the sun—existed a long time ago when the universe was young. Answer Explanation: The answer "FALSE" means that the statement does not agree with the text because not all black holes in the early universe were compact; huge ones existed then as well. Reason For Correctness: The correct answer is FALSE because the sentence says that *all* black holes in the early universe were compact. However, the passage tells us that black holes "a billion times more massive than our sun" existed in the early universe. Since these very large black holes are super-massive black holes rather than small or compact ones, the statement is incorrect. |
