Music: Language We All Speak - IELTS Reading Answers & Explanations
From IELTS Past Papers Academic Reading Test 21 · Part 3 · Questions 27–40
Reading Passage
Music: Language We All Speak
Section A: Music is one of the human specie's relatively few universal abilities. Without formal training, any individual, from Stone Age tribesman to suburban teenager has the ability to recognize music and, in some fashion, to make it. Why this should be so is a mystery. After all, music isn't necessary for getting through the day, and if it aids in reproduction, it does so only in highly indirect ways. Language, by contrast, is also everywhere- but for reasons that are more obvious. With language, you and the members of your tribe can organize a migration across Africa, build reed boats and cross the seas, and communicate at night even when you can't see each other. Modem culture, in all its technological extravagance, springs directly from the human talent for manipulating symbols and syntax. Scientists have always been intrigued by the connection between music and language. Yet over the years, words and melody have acquired a vastly different status in the lab and the seminar room. While language has long been considered essential to unlocking the mechanisms of human intelligence, music is generally treated as an evolutionary frippery - mere"auditory cheesecake,” as the Harvard cognitive scientist Steven Pinker puts it.
Section B: But thanks to a decade-long wave of neuroscience research, that tune is changing. A flurry of recent publications suggests that language and music may equally be able to tell US who we are and where we're from - not just emotionally, but biologically. In July, the journal Nature Neuroscience devoted a special issue to the topic. And in an article in the August 6 issue of the Journal of Neuroscience, David Schwartz, Catherine Howe, and Dale Purves of Duke University argued that the sounds of music and the sounds of language are intricately connected. To grasp the originality of this idea, it's necessary to realize two things about how music has traditionally been understood. First, musicologists have long emphasized that while each culture stamps a special identity onto its music; music itself has some universal qualities. For example, in virtually all cultures sound is divided into some or all of the 12 intervals that make up the chromatic scale - that is, the scale represented by the keys on a piano. For centuries, observers have attributed this preference for certain combinations of tones to the mathematical properties of sound itself. Some 2,500 years ago, Pythagoras was the first to note a direct relationship between the harmoniousness of a tone combination and the physical dimensions of the object that produced it. For example, a plucked string will always play an octave lower than a similar string half its size, and a fifth lower than a similar string two-thirds its length. This link between simple ratios and harmony has influenced music theory ever since.
Section C: This music-is-moth idea is often accompanied by the notion that music formally speaking at least, exists apart from the world in which it was created. Writing recently in The New York Review of Books, pianist and critic Charles Rosen discussed the long-standing notion that while painting and sculpture reproduce at least some aspects of the natural world, and writing describes thoughts and feelings we are all familiar with, music is entirely abstracted from the world in which we live. Neither idea is right, according to David Schwartz and his colleagues. Human musical preferences are fundamentally shaped not by elegant algorithms or ratios but by the messy sounds of real life, and of speech in particular -which in turn is shaped by our evolutionary heritage." The explanation of music, like the explanation of any product of the mind, must be rooted in biology, not in numbers per se," says Schwartz. Schwartz, Howe, and Purves analyzed a vast selection of speech sounds from a variety of languages to reveal the underlying patterns common to all utterances. In order to focus only on the raw sound, they discarded all theories about speech and meaning and sliced sentences into random bites. Using a database of over 100,000 brief segments of speech, they noted which frequency had the greatest emphasis in each sound. The resulting set of frequencies, they discovered, corresponded closely to the chromatic scale. In short, the building blocks of music are to be found in speech. Far from being abstract, music presents a strange analog to the patterns created by the sounds of speech. "Music, like the visual arts, is rooted in our experience of the natural world," says Schwartz. " It emulates our sound environment in the way that visual arts emulate the visual environment. " In music we hear the echo of our basic sound-making instrument- the vocal tract. The explanation for human music is simple; still than Pythagoras's mathematical equations. We like the sounds that are familiar to us-specifically, we like sounds that remind us of us. This brings up some chicken-or-egg evolutionary questions. It may be that music imitates speech directly, the researchers say, in which case it would seem that language evolved first. It's also conceivable that music came first and language is in effect an Imitation of song - that in everyday speech we hit the musical notes we especially like. Alternately, it may be that music imitates the general products of the human sound-making system, which just happens to be mostly speech. "We can't know this," says Schwartz. "What we do know is that they both come from the same system, and it is this that shapes our preferences."
Section D: Schwartz's study also casts light on the long-running question of whether animals understand or appreciate music. Despite the apparent abundance of "music" in the natural world- birdsong, whalesong, wolf howls, synchronized chimpanzee hooting previous studies have found that many laboratory animals don't show a great affinity for the human variety of music making. Marc Hauser and Josh McDermott of Harvard argued in the July issue of Nature Neuroscience that animals don't create or perceive music the way we do. The act that laboratory monkeys can show recognition of human tunes is evidence, they say, of shared general features of the auditory system, not any specific chimpanzee musical ability. As for birds, those most musical beasts, they generally recognize their own tunes - a narrow repertoire - but don't generate novel melodies like we do. There are no avian Mozarts. But what's been played to the animals, Schwartz notes, is human music. If animals evolve preferences for sound as we do - based upon the soundscape in which they live -then their "music" would be fundamentally different from ours. In the same way our scales derive from human utterances, a cat's idea of a good tune would derive from yowls and meows. To demonstrate that animals don't appreciate sounds the way we do, we'd need evidence that they don't respond to "music" constructed from their own sound environment.
Section E: No matter how the connection between language and music is parsed, what is apparent is that our sense of music, even our love for it, is as deeply rooted in our biology and in our brains as language is. This is most obvious with babies, says Sandra Trehub at the University of Toronto, who also published a paper in the Nature Neuroscience special issue. For babies, music and speech are on a continuum. Mothers use musical speech to "regulate infants' emotional states." Trehub says. Regardless of what language they speak, the voice all mothers use with babies is the same: "something between speech and song." This kind of communication "puts the baby in a trance-like state, which may proceed to sleep or extended periods of rapture." So if the babies of the world could understand the latest research on language and music, they probably wouldn't be very surprised. The upshot, says Trehub, is that music may be even more of a necessity than we realize.
Questions
Questions 27–31 Matching Headings
Reading Passage 3 has five sections A-E.
Choose the correct heading for each section from the of headings below.
i. Animal sometimes make music.
ii. Recent research on music
iii. Culture embedded in music
iv. Historical theories review
v. Communication in music with animals
vi. Contrast between music and language
vii. Questions on a biological link with human and music
viii. Music is good for babies.
Questions 32–38 Matching Features
Look at the following people and list of statements below.
Match each person with the correct statement.
A. Music exists outside of the world in which it is created.
B. Music has a common feature though cultural influences affect
c. Humans need music.
D. Music priority connects to the disordered sound around.
E. Discovery of mathematical musical foundation.
F. Music is not treated equally well compared with language
G. Humans and monkeys have similar traits in perceiving sound.
Questions 39–40 One Choice
Choose the correct letter A, B, c or D
Answers & Explanations Summary
| # | Answer | Evidence | Explanation |
|---|---|---|---|
| Q27 | vi | While language has long been considered essential to unlocking the mechanisms of human intelligence, music is generally treated as an evolutionary frippery - mere"auditory cheesecake,” as the Harvard cognitive scientist Steven Pinker puts it | Excerpt/Passage Explanation: The passage explains that researchers view language as very important for understanding human thinking, while music has often been viewed as just an unnecessary decoration. Answer Explanation: The answer "vi" means comparing the differences between music and spoken language. Reason For Correctness: The correct answer is vi because Section A directly compares and contrasts music and language. The text explains that while both are found everywhere in human life, language has clear practical purposes for survival and building culture, whereas the purpose of music is more mysterious. Additionally, scientists have given them different values, treating language as essential to human intelligence and music as merely an unimportant extra. |
| Q28 | iv | To grasp the originality of this idea, it's necessary to realize two things about how music has traditionally been understood. First, musicologists have long emphasized that while each culture stamps a special identity onto its music; music itself has some universal qualities. For example, in virtually all cultures sound is divided into some or all of the 12 intervals that make up the chromatic scale - that is, the scale represented by the keys on a piano. For centuries, observers have attributed this preference for certain combinations of tones to the mathematical properties of sound itself. Some 2,500 years ago, Pythagoras was the first to note a direct relationship between the harmoniousness of a tone combination and the physical dimensions of the object that produced it. For example, a plucked string will always play an octave lower than a similar string half its size, and a fifth lower than a similar string two-thirds its length. This link between simple ratios and harmony has influenced music theory ever since | Excerpt/Passage Explanation: The passage explains that for a very long time in history, people believed musical harmony came from math and physical measurements. It highlights Pythagoras from 2,500 years ago, showing how past thinkers developed traditional theories about music. Answer Explanation: The answer "iv" means that the most suitable heading for Section B is "Historical theories review", which refers to looking back at past explanations and ideas about music. Reason For Correctness: The correct answer is heading iv because Section B explains the past ways people thought about and analyzed music. The text mentions how music has "traditionally been understood" over history, specifically discussing theories from centuries ago, such as the ancient ideas of Pythagoras 2,500 years ago linking musical harmony to math and physical ratios. Therefore, the section reviews historical theories of music. |
| Q29 | ii | Schwartz, Howe, and Purves analyzed a vast selection of speech sounds from a variety of languages to reveal the underlying patterns common to all utterances. In order to focus only on the raw sound, they discarded all theories about speech and meaning and sliced sentences into random bites. Using a database of over 100,000 brief segments of speech, they noted which frequency had the greatest emphasis in each sound. The resulting set of frequencies, they discovered, corresponded closely to the chromatic scale | Excerpt/Passage Explanation: The passage explains how a team of researchers tested thousands of speech clips and discovered that the basic notes used in music match the natural sound patterns of human speech. Answer Explanation: The answer "ii" means that Section C focuses on new scientific studies and findings about music. Reason For Correctness: The correct answer is heading ii because Section C describes the scientific experiment conducted by David Schwartz, Catherine Howe, and Dale Purves. In this study, the researchers analyzed more than 100,000 speech sounds across different languages to discover how musical notes and human speech are directly linked. |
| Q30 | i | Despite the apparent abundance of "music" in the natural world- birdsong, whalesong, wolf howls, synchronized chimpanzee hooting previous studies have found that many laboratory animals don't show a great affinity for the human variety of music making | Excerpt/Passage Explanation: The passage explains that there are many musical sounds found in nature created by different animals (like birds singing, whales singing, wolves howling, and chimpanzees hooting), but these animals might not enjoy human music because their idea of music is based on their own sounds. Answer Explanation: The answer means that heading i ("Animal sometimes make music.") best summarizes the main idea of Section D, which talks about animals and whether they produce or understand music in nature. Reason For Correctness: The correct answer is heading i because Section D explores the idea of music in the animal world. The paragraph discusses examples of sounds made by creatures in the wild—such as "birdsong, whalesong, wolf howls, synchronized chimpanzee hooting"—and debates whether and how animals produce and perceive music based on their own environments and natural sounds. |
| Q31 | vii | No matter how the connection between language and music is parsed, what is apparent is that our sense of music, even our love for it, is as deeply rooted in our biology and in our brains as language is | Excerpt/Passage Explanation: The passage explains that our ability to feel and love music is a natural part of human biology and the human brain, just like language. Answer Explanation: The answer "vii" means that the section discusses how human music is connected to human biology and the human brain. Reason For Correctness: The correct answer is vii because Section E summarizes the idea that our appreciation and understanding of music are biologically built into humans, just like language is. The author uses words like "rooted in our biology and in our brains" and shows how even human infants naturally respond to musical communication from their mothers. |
| Q32 | F | While language has long been considered essential to unlocking the mechanisms of human intelligence, music is generally treated as an evolutionary frippery - mere"auditory cheesecake,” as the Harvard cognitive scientist Steven Pinker puts it | Excerpt/Passage Explanation: The passage explains that language is viewed as very important for understanding human thinking, but scientist Steven Pinker sees music as just a minor pleasure rather than something necessary. Answer Explanation: The answer "F" means that Steven Pinker is associated with the idea that music is considered less important than language. Reason For Correctness: The correct answer is F because Section A mentions that language has always been seen as vital for human intelligence, whereas music is viewed as an unimportant extra (an "evolutionary frippery"). Steven Pinker famously described music as mere "auditory cheesecake," showing that music has not been given equal status or treated as seriously as language. |
| Q33 | B | First, musicologists have long emphasized that while each culture stamps a special identity onto its music; music itself has some universal qualities | Excerpt/Passage Explanation: The passage explains that experts who study music have noted that every culture makes music uniquely its own, but all music still shares basic, shared elements everywhere. Answer Explanation: The answer B means that music shares universal, similar characteristics across the world, even though different cultures give music their own unique style. Reason For Correctness: The correct answer is B because Section B clearly states the viewpoint of musicologists. The text mentions that "musicologists have long emphasized that while each culture stamps a special identity onto its music; music itself has some universal qualities." Here, "universal qualities" matches "a common feature" in option B, and "each culture stamps a special identity" matches "though cultural influences affect". |
| Q34 | E | Some 2,500 years ago, Pythagoras was the first to note a direct relationship between the harmoniousness of a tone combination and the physical dimensions of the object that produced it | Excerpt/Passage Explanation: The passage explains that Pythagoras discovered that how good musical notes sound together depends directly on the physical measurements of the objects making those sounds. Answer Explanation: The answer "E" means that Pythagoras discovered how music is based on math and physical measurements. Reason For Correctness: The correct answer is E because Section B explains that around 2,500 years ago, Pythagoras was the first person to find a direct link between musical harmony and physical sizes or mathematical ratios (such as string lengths). This matches statement E, which talks about the "Discovery of mathematical musical foundation." |
| Q35 | D | Human musical preferences are fundamentally shaped not by elegant algorithms or ratios but by the messy sounds of real life, and of speech in particular -which in turn is shaped by our evolutionary heritage | Excerpt/Passage Explanation: The passage explains that people's musical choices and tastes come from the messy, everyday sounds of life and human speech, rather than from neat mathematical rules. Answer Explanation: The answer 'D' means that what we like in music is linked to the random, natural, and everyday sounds around us. Reason For Correctness: The correct answer is D because Section C discusses the research and findings of David Schwartz and his colleagues (Howe and Purves). The text states that human musical preferences are shaped by the "messy sounds of real life" rather than abstract mathematical formulas. In choice D, "disordered sound around" directly matches the "messy sounds of real life," and "Music priority connects to" corresponds to "Human musical preferences are fundamentally shaped... by". |
| Q36 | G | The act that laboratory monkeys can show recognition of human tunes is evidence, they say, of shared general features of the auditory system, not any specific chimpanzee musical ability | Excerpt/Passage Explanation: The passage explains that when monkeys recognize human melodies, it shows that humans and monkeys share general features in how their ears and brains hear sound. Answer Explanation: The answer "G" means that humans and monkeys have similar hearing abilities and process sounds in some of the same ways. Reason For Correctness: The correct answer is G because in Section D, researchers Marc Hauser and Josh McDermott explain that monkeys can recognize human tunes because they share general hearing characteristics with humans. The keywords "shared general features of the auditory system" correspond directly to "similar traits in perceiving sound." |
| Q37 | A | Writing recently in The New York Review of Books, pianist and critic Charles Rosen discussed the long-standing notion that while painting and sculpture reproduce at least some aspects of the natural world, and writing describes thoughts and feelings we are all familiar with, music is entirely abstracted from the world in which we live | Excerpt/Passage Explanation: The passage explains that Charles Rosen talked about the old idea that music is completely separate and detached from the real world around us, unlike other forms of art. Answer Explanation: The answer "A" means that Charles Rosen discussed the idea that music is completely separate from the real world. Reason For Correctness: The correct answer is A because Section C mentions pianist and critic Charles Rosen discussing the traditional view of music. In this discussion, he talks about the idea that while other arts copy the natural world, music is "entirely abstracted from the world in which we live," which matches statement A's description that music "exists outside of the world in which it is created." |
| Q38 | C | The upshot, says Trehub, is that music may be even more of a necessity than we realize | Excerpt/Passage Explanation: The passage explains that, according to Trehub, music is something essential that people truly require more than they currently think. Answer Explanation: The answer "C" means that Sandra Trehub is linked to the idea that humans need music in their lives. Reason For Correctness: The correct answer is C because, in Section E, the passage mentions Sandra Trehub and her research on mothers and babies. She concludes by stating that "music may be even more of a necessity than we realize." The word "necessity" means something that is needed or essential, directly matching statement C ("Humans need music."). |
| Q39 | B | But what's been played to the animals, Schwartz notes, is human music. If animals evolve preferences for sound as we do - based upon the soundscape in which they live -then their "music" would be fundamentally different from ours. In the same way our scales derive from human utterances, a cat's idea of a good tune would derive from yowls and meows. To demonstrate that animals don't appreciate sounds the way we do, we'd need evidence that they don't respond to "music" constructed from their own sound environment | Excerpt/Passage Explanation: The passage explains that researchers have only played human music to animals during tests. Because animal musical preferences would come from their own animal sounds, the current tests do not give a complete picture unless animals are tested with music based on their own sound environment. Answer Explanation: The answer "B" means that previous research and tests done on animals' music are incomplete or limited because scientists only tested animals with human music instead of sounds made from the animals' own environment. Reason For Correctness: The correct answer is B because the passage in Section D explains that past studies testing whether animals appreciate music only played "human music" to them. Schwartz points out that an animal's music would be based on its own sounds (like meows for cats), not human speech. Therefore, to truly test whether animals appreciate music, researchers would need to test them with sounds made from their own natural environment, meaning previous experiments on animals are limited. |
| Q40 | C | Music is one of the human specie's relatively few universal abilities. Without formal training, any individual, from Stone Age tribesman to suburban teenager has the ability to recognize music and, in some fashion, to make it | Excerpt/Passage Explanation: The passage explains that music is a special ability shared by all people across different times and cultures, showing its universal presence and importance in human society. Answer Explanation: The answer means that the entire reading text is mainly about the importance, presence, and function of music in the lives of human beings. Reason For Correctness: The correct answer is **C** because the whole passage focuses on why music is a universal human ability, how it is deeply connected to human speech, and why it plays such an essential role in human life and biology from infancy to adulthood. Other choices only mention minor details or narrow topics discussed within individual sections. |
