PLAY IS A SERIOUS BUSINESS Does Play Help Develop Bigger, Better Brains? Bryant Furlow Investigates - IELTS Reading Answers & Explanations
From Cambridge IELTS 04 Academic Reading Test 2 · Part 3 · Questions 27–40
Reading Passage
You should spend about 20 minutes on Questions 27-40 which are based on Reading Passage 3 below.
PLAY IS A SERIOUS BUSINESS Does play help develop bigger, better brains? Bryant Furlow investigates
A Playing is a serious business. Children engrossed in a make-believe world, fox cubs play-fighting or kittens teasing a ball of string aren't just having fun. Play may look like a carefree and exuberant way to pass the time before the hard work of adulthood comes along, but there's much more to it than that. For a start, play can even cost animals their lives. Eighty per cent of deaths among juvenile fur seals occur because playing pups fail to spot predators approaching. It is also extremely expensive in terms of energy. Playful young animals use around two or three per cent of their energy cavorting, and in children that figure can be closer to fifteen per cent. 'Even two or three per cent is huge,' says John Byers of Idaho University. 'You just don't find animals wasting energy like that,' he adds. There must be a reason.
B But if play is not simply a developmental hiccup, as biologists once thought, why did it evolve? The latest idea suggests that play has evolved to build big brains. In other words, playing makes you intelligent. Playfulness, it seems, is common only among mammals, although a few of the larger-brained birds also indulge. Animals at play often use unique signs - tail-wagging in dogs, for example - to indicate that activity superficially resembling adult behaviour is not really in earnest. A popular explanation of play has been that it helps juveniles develop the skills they will need to hunt, mate and socialise as adults. Another has been that it allows young animals to get in shape for adult life by improving their respiratory endurance. Both these ideas have been questioned in recent years.
C Take the exercise theory. If play evolved to build muscle or as a kind of endurance training, then you would expect to see permanent benefits. But Byers points out that the benefits of increased exercise disappear rapidly after training stops, so any improvement in endurance resulting from juvenile play would be lost by adulthood. 'If the function of play was to get into shape,' says Byers, 'the optimum time for playing would depend on when it was most advantageous for the young of a particular species to do so. But it doesn't work like that.' Across species, play tends to peak about halfway through the suckling stage and then decline.
D Then there's the skills-training hypothesis. At first glance, playing animals do appear to be practising the complex manoeuvres they will need in adulthood. But a closer inspection reveals this interpretation as too simplistic. In one study, behavioural ecologist Tim Caro, from the University of California, looked at the predatory play of kittens and their predatory behaviour when they reached adulthood. He found that the way the cats played had no significant effect on their hunting prowess in later life.
E Earlier this year, Sergio Pellis of Lethbridge University, Canada, reported that there is a strong positive link between brain size and playfulness among mammals in general. Comparing measurements for fifteen orders of mammal, he and his team found larger brains (for a given body size) are linked to greater playfulness. The converse was also found to be true. Robert Barton of Durham University believes that, because large brains are more sensitive to developmental stimuli than smaller brains, they require more play to help mould them for adulthood. 'I concluded it's to do with learning, and with the importance of environmental data to the brain during development,' he says.
F According to Byers, the timing of the playful stage in young animals provides an important clue to what's going on. If you plot the amount of time a juvenile devotes to play each day over the course of its development, you discover a pattern typically associated with a 'sensitive period' - a brief development window during which the brain can actually be modified in ways that are not possible earlier or later in life. Think of the relative ease with which young children - but not infants or adults - absorb language. Other researchers have found that play in cats, rats and mice is at its most intense just as this 'window of opportunity' reaches its peak.
G 'People have not paid enough attention to the amount of the brain activated by play,' says Marc Bekoff from Colorado University. Bekoff studied coyote pups at play and found that the kind of behaviour involved was markedly more variable and unpredictable than that of adults. Such behaviour activates many different parts of the brain, he reasons. Bekoff likens it to a behavioural kaleidoscope, with animals at play jumping rapidly between activities. 'They use behaviour from a lot of different contexts - predation, aggression, reproduction,' he says. 'Their developing brain is getting all sorts of stimulation.'
H Not only is more of the brain involved in play than was suspected, but it also seems to activate higher cognitive processes. 'There's enormous cognitive involvement in play,' says Bekoff. He points out that play often involves complex assessments of playmates, ideas of reciprocity and the use of specialised signals and rules. He believes that play creates a brain that has greater behavioural flexibility and improved potential for learning later in life. The idea is backed up by the work of Stephen Siviy of Gettysburg College. Siviy studied how bouts of play affected the brain's levels of a particular chemical associated with the stimulation and growth of nerve cells. He was surprised by the extent of the activation. 'Play just lights everything up,' he says. By allowing link-ups between brain areas that might not normally communicate with each other, play may enhance creativity.
I What might further experimentation suggest about the way children are raised in many societies today? We already know that rat pups denied the chance to play grow smaller brain components and fail to develop the ability to apply social rules when they interact with their peers. With schooling beginning earlier and becoming increasingly exam-orientated, play is likely to get even less of a look-in. Who knows what the result of that will be?
Questions
Questions 27–32 Matching Information
Reading Passage 3 has nine paragraphs labelled A-I.
Which paragraph contains the following information?
NB You may use any letter more than once.
Questions 33–35 Three Choices
Choose THREE letters A-F.
The list below gives some ways of regarding play.
Questions 36–40 Matching Features
Look at the following researchers (Questions 36-40) and the list of findings below.
Match each researcher with the correct finding.
A. There is a link between a specific substance in the brain and playing.
B. Play provides input concerning physical surroundings.
C. Varieties of play can be matched to different stages of evolutionary history.
D. There is a tendency for mammals with smaller brains to play less.
E. Play is not a form of fitness training for the future.
F. Some species of larger-brained birds engage in play.
G. A wide range of activities are combined during play.
H. Play is a method of teaching survival techniques.
Answers & Explanations Summary
| # | Answer | Evidence | Explanation |
|---|---|---|---|
| Q27 | H | By allowing link-ups between brain areas that might not normally communicate with each other, play may enhance creativity | Excerpt/Passage Explanation: The passage explains that play helps join together parts of the brain that don't usually talk to one another. Doing this can help a person or animal have better, more original ideas. Answer Explanation: The answer H refers to the eighth paragraph of the text, which discusses how play helps the brain work better by creating new paths between different areas. Reason For Correctness: The correct answer is Paragraph H because it describes how play allows different sections of the brain to connect in ways they usually do not. This process is beneficial because it can make an individual more creative and better at learning. The passage uses the term 'link-ups' to describe these connections and mentions that they occur between 'brain areas that might not normally communicate,' which explains why they are considered 'unusual.' |
| Q28 | F | If you plot the amount of time a juvenile devotes to play each day over the course of its development, you discover a pattern typically associated with a 'sensitive period' - a brief development window during which the brain can actually be modified in ways that are not possible earlier or later in life | Excerpt/Passage Explanation: The passage explains that if you record how much time a young animal plays every day, you see a special pattern. This pattern shows a short, important time during the animal's growth when its brain can change and learn things that it cannot learn when it is older. Answer Explanation: The answer is paragraph F because it discusses what researchers learned by tracking and mapping how many hours young animals spend playing as they grow up. Reason For Correctness: The correct answer is paragraph F because it describes the process of 'plotting' (recording and graphing) the specific amount of time young animals play each day. This data provides the 'insight' that there is a 'sensitive period' in development. This period acts as a 'window' where the brain is uniquely capable of being changed or improved, a discovery made possible by observing the timing and duration of play. The word 'plot' serves as a synonym for recording data over time. |
| Q29 | A | Eighty per cent of deaths among juvenile fur seals occur because playing pups fail to spot predators approaching. It is also extremely expensive in terms of energy | Excerpt/Passage Explanation: The passage explains that most young fur seals die because they are busy playing and do not see enemies coming, and it also notes that playing takes a lot of physical strength from their bodies. Answer Explanation: The answer means that the information about the dangers of playing is found in paragraph A. Reason For Correctness: The correct answer is Paragraph A because it describes the dangers, or "hazards," that animals face when they play. It mentions that playing can lead to death if the animals are not careful about predators and that it uses up a lot of their physical energy. Keywords like "deaths" and "expensive in terms of energy" clearly describe the physical risks involved in play. |
| Q30 | H | He points out that play often involves complex assessments of playmates, ideas of reciprocity and the use of specialised signals and rules | Excerpt/Passage Explanation: The passage explains that when animals or children play, they are doing mentally difficult tasks like judging the behavior of those they are playing with, understanding how to give and take, and following a set of signals or rules. Answer Explanation: The answer is paragraph H, which explains how playing involves complex thinking and helps the brain grow in several ways. Reason For Correctness: The correct answer is H because it specifically mentions that play involves "higher cognitive processes" and "cognitive involvement," which are synonyms for mental activities. It provides detailed examples of these activities, such as evaluating others (assessments of playmates), understanding fairness (reciprocity), and using specific rules. The paragraph explains that these thinking tasks help the brain become more flexible and better at learning. Keywords like "cognitive involvement" and "assessments" directly link to the "mental activities" mentioned in the question. |
| Q31 | I | With schooling beginning earlier and becoming increasingly exam-orientated, play is likely to get even less of a look-in. Who knows what the result of that will be | Excerpt/Passage Explanation: The passage explains that since children start school younger and spend more time studying for exams, they have less time to play. It then asks what the outcome of this situation will be for them. Answer Explanation: The answer means that paragraph I talks about what might happen to people if they do not get enough time to play. Reason For Correctness: The correct answer is found in paragraph I because it discusses how modern life affects children's development. It mentions that because school starts very early and focuses a lot on tests, children have less time for play. The paragraph ends by asking what the result or effect of this change might be, which matches the idea of possible effects from a reduction in play. |
| Q32 | B | Playfulness, it seems, is common only among mammals, although a few of the larger-brained birds also indulge | Excerpt/Passage Explanation: The passage states that play is usually done by mammals and some birds that have large brains. Answer Explanation: The answer identifies Paragraph B as the section that names the specific groups or types of animals that engage in play. Reason For Correctness: The correct answer is B because this paragraph lists the specific types (classes) of animals where play is found. It mentions that play is mainly seen in mammals and some types of birds with bigger brains. These are the "classes" mentioned in the question. |
| Q33 | — | — | |
| Q34 | — | — | |
| Q35 | A / C / F | The latest idea suggests that play has evolved to build big brains. In other words, playing makes you intelligent. Playfulness, it seems, is common only among mammals, although a few of the larger-brained birds also indulge. Animals at play often use unique signs - tail-wagging in dogs, for example - to indicate that activity superficially resembling adult behaviour is not really in earnest. A popular explanation of play has been that it helps juveniles develop the skills they will need to hunt, mate and socialise as adults. Another has been that it allows young animals to get in shape for adult life by improving their respiratory endurance | Excerpt/Passage Explanation: The passage explains that play serves several functions, including growing bigger brains, learning important skills needed for adulthood, and improving physical fitness or stamina. Answer Explanation: The answer identifies three specific reasons for play mentioned in the text: it helps young ones practice for adult life, get physically fit, and helps the brain (an organ) grow. Reason For Correctness: The correct answer is supported by the text's discussion of why animals and humans play. The writer highlights three main theories: one suggests play helps build larger brains (organ growth), another explains it as a way to practice skills like hunting and mating (rehearsal), and a third suggests it helps young ones get in 'good shape' by improving their endurance (strength). |
| Q36 | B | 'I concluded it's to do with learning, and with the importance of environmental data to the brain during development,' he says | Excerpt/Passage Explanation: The passage says that play is helping the brain learn by collecting important information about the world during the time an animal is growing. Answer Explanation: The answer means that play gives the brain information about the world and things around it. Reason For Correctness: The correct answer is B because Robert Barton explains that play is connected to learning and the importance of 'environmental data' while an animal grows. In this context, 'environmental data' acts as a synonym for 'input concerning physical surroundings,' which means information about the world around the animal. |
| Q37 | G | Bekoff likens it to a behavioural kaleidoscope, with animals at play jumping rapidly between activities. 'They use behaviour from a lot of different contexts - predation, aggression, reproduction,' he says | Excerpt/Passage Explanation: The passage explains that researcher Marc Bekoff thinks play is like a colorful, changing pattern because animals move quickly from one activity to another. During play, they use many kinds of actions that are normally used for hunting, fighting, or having babies. Answer Explanation: The answer means that when animals play, they do many different types of actions or behaviors mixed together. Reason For Correctness: The correct answer is G because Marc Bekoff describes play as having many different parts that are not easily predicted. In the passage, he compares play to a 'kaleidoscope' because animals quickly switch between different types of movements. Instead of doing just one thing, they mix 'different contexts,' such as moves used for hunting (predation), fighting (aggression), or mating (reproduction). This variety of activities helps stimulate their growing brains. |
| Q38 | E | But Byers points out that the benefits of increased exercise disappear rapidly after training stops, so any improvement in endurance resulting from juvenile play would be lost by adulthood. 'If the function of play was to get into shape,' says Byers, 'the optimum time for playing would depend on when it was most advantageous for the young of a particular species to do so. But it doesn't work like that.' | Excerpt/Passage Explanation: The passage explains that Byers does not think play is for exercise. He says being fit or having 'endurance' from playing when you are young will not stay with you until you are an adult. Answer Explanation: The answer means that John Byers believes playing is not used to help animals or children get physically strong or fit for when they grow up. Reason For Correctness: The correct answer is E because John Byers argues against the 'exercise theory.' He explains that physical benefits, like having stamina or being in good 'shape,' disappear quickly after a person or animal stops training. Therefore, he believes that the physical strength gained from playing as a child would not last until they are an adult. This means play is not a way to do fitness training for the future. |
| Q39 | D | Comparing measurements for fifteen orders of mammal, he and his team found larger brains (for a given body size) are linked to greater playfulness. The converse was also found to be true | Excerpt/Passage Explanation: The passage explains that when researchers checked many different types of animals, they found that those with big brains for their size are very playful. It also says that the opposite is also a fact, meaning smaller brains are connected to playing less. Answer Explanation: The answer D means that animals with smaller brains usually do not play as much as animals with larger brains. Reason For Correctness: The correct answer is D because Sergio Pellis discovered a clear connection between brain size and how much animals play. He found that animals with bigger brains play more. He also found the 'converse' was true, which means the opposite is also true: animals with smaller brains play less. Key words to notice are 'linked,' which means connected, and 'converse,' which means the opposite situation. |
| Q40 | A | Siviy studied how bouts of play affected the brain's levels of a particular chemical associated with the stimulation and growth of nerve cells | Excerpt/Passage Explanation: The passage says that Siviy tested how playing changes the amount of a special chemical in the brain that helps parts of the brain grow and stay active. Answer Explanation: The answer means that the researcher Stephen Siviy discovered a connection between playing and a special material or chemical found in the brain. Reason For Correctness: The correct answer is A because the passage explains that Stephen Siviy studied how playing changes the amount of a "particular chemical" in the brain. In English, a "chemical" is a type of "substance." By studying how playing changes the levels of this substance, he showed there is a "link" or a strong connection between the activity of playing and how the brain functions physically. |
