Cambridge IELTS 19 Academic Reading Test 2
3 passages · 40 questions · 60 minutes
The Industrial Revolution in Britain
The Industrial Revolution began in Britain in the mid-1700s and by the 1830s and 1840s had spread to many other parts of the world, including the United States. In Britain, it was a period when a largely rural, agrarian society was transformed into an industrialised, urban one. Goods that had once been crafted by hand started to be produced in mass quantities by machines in factories, thanks to the invention of steam power and the introduction of new machines and manufacturing techniques in textiles, iron-making and other industries.
The foundations of the Industrial Revolution date back to the early 1700s, when the English inventor Thomas Newcomen designed the first modern steam engine. Called the "atmospheric steam engine", Newcomen's invention was originally used to power machines that pumped water out of mines. In the 1760s, the Scottish engineer James Watt started to adapt one of Newcomen's models, and succeeded in making it far more efficient. Watt later worked with the English manufacturer Matthew Boulton to invent a new steam engine driven by both the forward and backward strokes of the piston, while the gear mechanism it was connected to produced rotary motion. It was a key innovation that would allow steam power to spread across British industries.
The demand for coal, which was a relatively cheap energy source, grew rapidly during the Industrial Revolution, as it was needed to run not only the factories used to produce manufactured goods, but also steam-powered transportation. In the early 1800s, the English engineer Richard Trevithick built a steam-powered locomotive, and by 1830 goods and passengers were being transported between the industrial centres of Manchester and Liverpool. In addition, steam-powered boats and ships were widely used to carry goods along Britain's canals as well as across the Atlantic.
Britain had produced textiles like wool, linen and cotton, for hundreds of years, but prior to the Industrial Revolution, the British textile business was a true "cottage industry", with the work performed in small workshops or even homes by individual spinners, weavers and dyers. Starting in the mid-1700s, innovations like the spinning jenny and the power loom made weaving cloth and spinning yarn and thread much easier. With these machines, relatively little labour was required to produce cloth, and the new, mechanised textile factories that opened around the country were quickly able to meet customer demand for cloth both at home and abroad.
The British iron industry also underwent major change as it adopted new innovations. Chief among the new techniques was the smelting of iron ore with coke (a material made by heating coal) instead of the traditional charcoal. This method was cheaper and produced metals that were of a higher quality, enabling Britain's iron and steel production to expand in response to demand created by the Napoleonic Wars (1803-15) and the expansion of the railways from the 1830s.
The latter part of the Industrial Revolution also saw key advances in communication methods, as people increasingly saw the need to communicate efficiently over long distances. In 1837, British inventors William Cooke and Charles Wheatstone patented the first commercial telegraphy system. In the 1830s and 1840s, Samuel Morse and other inventors worked on their own versions in the United States. Cooke and Wheatstone's system was soon used for railway signalling in the UK. As the speed of the new locomotives increased, it was essential to have a fast and effective means of avoiding collisions.
The impact of the Industrial Revolution on people's lives was immense. Although many people in Britain had begun moving to the cities from rural areas before the Industrial Revolution, this accelerated dramatically with industrialisation, as the rise of large factories turned smaller towns into major cities in just a few decades. This rapid urbanisation brought significant challenges, as overcrowded cities suffered from pollution and inadequate sanitation.
Although industrialisation increased the country's economic output overall and improved the standard of living for the middle and upper classes, many poor people continued to struggle. Factory workers had to work long hours in dangerous conditions for extremely low wages. These conditions along with the rapid pace of change fuelled opposition to industrialisation. A group of British workers who became known as "Luddites" were British weavers and textile workers who objected to the increased use of mechanised looms and knitting frames. Many had spent years learning their craft, and they feared that unskilled machine operators were robbing them of their livelihood. A few desperate weavers began breaking into factories and smashing textile machines. They called themselves Luddites after Ned Ludd, a young apprentice who was rumoured to have wrecked a textile machine in 1779.
The first major instances of machine breaking took place in 1811 in the city of Nottingham, and the practice soon spread across the country. Machine-breaking Luddites attacked and burned factories, and in some cases they even exchanged gunfire with company guards and soldiers. The workers wanted employers to stop installing new machinery, but the British government responded to the uprisings by making machine-breaking punishable by death. The unrest finally reached its peak in April 1812, when a few Luddites were shot during an attack on a mill near Huddersfield. In the days that followed, other Luddites were arrested, and dozens were hanged or transported to Australia. By 1813, the Luddite resistance had all but vanished.
Questions 1–7
Complete the notes below. Choose ONE WORD ONLY from the passage for each answer.
Britain's Industrial Revolution
Steam power
Newcomen's steam engine was used in mines to remove water.
In Watt and Boulton's steam engine, the movement of the (1) ………………………… was linked to a gear system.
A greater supply of (2) ………………………… was required to power steam engines.
Textile industry
Before the Industrial Revolution, spinners and weavers worked at home and in (3) ………………………….
Not as much (4) ………………………… was needed to produce cloth once the spinning jenny and power loom were invented.
Iron industry
Smelting of iron ore with coke resulted in material that was better (5) ………………………….
Demand for iron increased with the growth of the (6) ………………………….
Communications
Cooke and Wheatstone patented the first telegraphy system.
The telegraphy system was used to prevent locomotives colliding.
Urbanisation
Small towns turned into cities very quickly.
The new cities were dirty, crowded and lacked sufficient (7) ………………………….
Questions 8–13
Do the following statements agree with the information given in the passage?
TRUEif the statement agrees with the information
FALSEif the statement contradicts the information
NOT GIVENif there is no information on this
8. Britain's canal network grew rapidly so that more goods could be transported around the country.
9. Costs in the iron industry rose when the technique of smelting iron ore with coke was introduced.
10. Samuel Morse's communication system was more reliable than that developed by William Cooke and Charles Wheatstone.
11. The economic benefits of industrialisation were limited to certain sectors of society.
12. Some skilled weavers believed that the introduction of the new textile machines would lead to job losses.
13. There was some sympathy among local people for the Luddites who were arrested near Huddersfield.
Athletes and stress
[A] It isn't easy being a professional athlete. Not only are the physical demands greater than most people could handle, athletes also face intense psychological pressure during competition. This is something that British tennis player Emma Raducanu wrote about on social media following her withdrawal from the 2021 Wimbledon tournament. Though the young player had been doing well in the tournament, she began having difficulty regulating her breathing and heart rate during a match, which she later attributed to "the accumulation of the excitement and the buzz".
[B] For athletes, some level of performance stress is almost unavoidable. But there are many different factors that dictate just how people's minds and bodies respond to stressful events. Typically, stress is the result of an exchange between two factors: demands and resources. An athlete may feel stressed about an event if they feel the demands on them are greater than they can handle. These demands include the high level of physical and mental effort required to succeed, and also the athlete's concerns about the difficulty of the event, their chance of succeeding, and any potential dangers such as injury. Resources, on the other hand, are a person's ability to cope with these demands. These include factors such as the competitor's degree of confidence, how much they believe they can control the situation's outcome, and whether they're looking forward to the event or not.
[C] Each new demand or change in circumstances affects whether a person responds positively or negatively to stress. Typically, the more resources a person feels they have in handling the situation, the more positive their stress response. This positive stress response is called a challenge state. But should the person feel there are too many demands placed on them, the more likely they are to experience a negative stress response - known as a threat state. Research shows that the challenge states lead to good performance, while threat states lead to poorer performance. So, in Emma Raducanu's case, a much larger audience, higher expectations and facing a more skilful opponent, may all have led her to feel there were greater demands being placed on her at Wimbledon - but she didn't have the resources to tackle them. This led to her experiencing a threat response.
[D] Our challenge and threat responses essentially influence how our body responds to stressful situations, as both affect the production of adrenaline and cortisol - also known as "stress hormones". During a challenge state, adrenaline increases the amount of blood pumped from the heart and expands the blood vessels, which allows more energy to be delivered to the muscles and brain. This increase of blood and decrease of pressure in the blood vessels has been consistently related to superior sport performance in everything from cricket batting, to golf putting and football penalty taking. But during a threat state, cortisol inhibits the positive effect of adrenaline, resulting in tighter blood vessels, higher blood pressure, slower psychological responses, and a faster heart rate. In short, a threat state makes people more anxious - they make worse decisions and perform more poorly. In tennis players, cortisol has been associated with more unsuccessful serves and greater anxiety.
[E] That said, anxiety is also a common experience for athletes when they're under pressure. Anxiety can increase heart rate and perspiration, cause heart palpitations, muscle tremors and shortness of breath, as well as headaches, nausea, stomach pain, weakness and a desire to escape in more extreme cases. Anxiety can also reduce concentration and self-control and cause overthinking. The intensity with which a person experiences anxiety depends on the demands and resources they have. Anxiety may also manifest itself in the form of excitement or nervousness depending on the stress response. Negative stress responses can be damaging to both physical and mental health - and repeated episodes of anxiety coupled with negative responses can increase risk of heart disease and depression.
[F] But there are many ways athletes can ensure they respond positively under pressure. Positive stress responses can be promoted through the language that they and others - such as coaches or parents - use. Psychologists can also help athletes change how they see their physiological responses - such as helping them see a higher heart rate as excitement, rather than nerves. Developing psychological skills, such as visualisation, can also help decrease physiological responses to threat. Visualisation may involve the athlete recreating a mental picture of a time when they performed well, or picturing themselves doing well in the future. This can help create a feeling of control over the stressful event. Recreating competitive pressure during training can also help athletes learn how to deal with stress. An example of this might be scoring athletes against their peers to create a sense of competition. This would increase the demands which players experience compared to a normal training session, while still allowing them to practise coping with stress.
Questions 14–18
Reading Passage 2 has six paragraphs, A–F. Which paragraph contains the following information? You may use any letter more than once.
14. a reference to two chemical compounds which impact on performance
15. examples of strategies for minimising the effects of stress
16. how a sportsperson accounted for their own experience of stress
17. study results indicating links between stress responses and performance
18. mention of people who can influence how athletes perceive their stress responses
Questions 19–22
Complete the sentences below. Choose ONE WORD ONLY from the passage for each answer.
19. Performance stress involves many demands on the athlete, for example, coping with the possible risk of ………………………….
20. Cortisol can cause tennis players to produce fewer good ………………………….
21. Psychologists can help athletes to view their physiological responses as the effect of a positive feeling such as ………………………….
22. ………………………… is an example of a psychological technique which can reduce an athlete's stress responses.
Questions 23–24
Choose TWO letters, A–E. Which TWO facts about Emma Raducanu's withdrawal from the Wimbledon tournament are mentioned in the text?
23. Fact about Raducanu's withdrawal (lower letter)
A the stage at which she dropped out of the tournament
B symptoms of her performance stress at the tournament
C measures which she had taken to manage her stress levels
D aspects of the Wimbledon tournament which increased her stress levels
E reactions to her social media posts about her experience at Wimbledon
24. Fact about Raducanu's withdrawal (higher letter)
A the stage at which she dropped out of the tournament
B symptoms of her performance stress at the tournament
C measures which she had taken to manage her stress levels
D aspects of the Wimbledon tournament which increased her stress levels
E reactions to her social media posts about her experience at Wimbledon
Questions 25–26
Choose TWO letters, A–E. Which TWO facts about anxiety are mentioned in Paragraph E of the text?
25. Fact about anxiety (lower letter)
A the factors which determine how severe it may be
B how long it takes for its effects to become apparent
C which of its symptoms is most frequently encountered
D the types of athletes who are most likely to suffer from it
E the harm that can result if athletes experience it too often
26. Fact about anxiety (higher letter)
A the factors which determine how severe it may be
B how long it takes for its effects to become apparent
C which of its symptoms is most frequently encountered
D the types of athletes who are most likely to suffer from it
E the harm that can result if athletes experience it too often
An inquiry into the existence of the gifted child
Let us start by looking at a modern "genius", Maryam Mirzakhani, who died at the early age of 40. She was the only woman to win the Fields Medal - the mathematical equivalent of a Nobel prize. It would be easy to assume that someone as special as Mirzakhani must have been one of those "gifted" children, those who have an extraordinary ability in a specific sphere of activity or knowledge. But look closer and a different story emerges. Mirzakhani was born in Tehran, Iran. She went to a highly selective girls' school but maths wasn't her interest - reading was. She loved novels and would read anything she could lay her hands on. As for maths, she did rather poorly at it for the first couple of years in her middle school, but became interested when her elder brother told her about what he'd learned. He shared a famous maths problem from a magazine that fascinated her - and she was hooked.
In adult life it is clear that she was curious, excited by what she did and also resolute in the face of setbacks. One of her comments sums it up. "Of course, the most rewarding part is the 'Aha' moment, the excitement of discovery and enjoyment of understanding something new... But most of the time, doing mathematics for me is like being on a long hike with no trail and no end in sight." That trail took her to the heights of original research into mathematics.
Is her background unusual? Apparently not. Most Nobel prize winners were unexceptional in childhood. Einstein was slow to talk as a baby. He failed the general part of the entry test to Zurich Polytechnic - though they let him in because of high physics and maths scores. He struggled at work initially, but he kept plugging away and eventually rewrote the laws of Newtonian mechanics with his theory of relativity.
There has been a considerable amount of research on high performance over the last century that suggests it goes way beyond tested intelligence. On top of that, research is clear that brains are flexible, new neural pathways can be created, and IQ isn't fixed. For example, just because you can read stories with hundreds of pages at the age of five doesn't mean you will still be ahead of your contemporaries in your teens.
While the jury is out on giftedness being innate and other factors potentially making the difference, what is certain is that the behaviours associated with high levels of performance are replicable and most can be taught - even traits such as curiosity.
According to my colleague Prof Deborah Eyre, with whom I've collaborated on the book Great Minds and How to Grow Them, the latest neuroscience and psychological research suggests most individuals can reach levels of performance associated in school with the gifted and talented. However, they must be taught the right attitudes and approaches to their learning and develop the attributes of high performers - curiosity, persistence and hard work, for example - an approach Eyre calls "high performance learning". Critically, they need the right support in developing those approaches at home as well as at school.
Prof Anders Ericsson, an eminent education psychologist at Florida State University, US, is the co-author of Peak: Secrets from the New Science of Expertise. After research going back to 1980 into diverse achievements, from music to memory to sport, he doesn't think unique and innate talents are at the heart of performance. Deliberate practice, that stretches you every step of the way, and around 10,000 hours of it, is what produces the goods. It's not a magic number - the highest performers move on to doing a whole lot more, of course. Ericsson's memory research is particularly interesting because random students, trained in memory techniques for the study, went on to outperform others thought to have innately superior memories - those who you might call gifted.
But it is perhaps the work of Benjamin Bloom, another distinguished American educationist working in the 1980s, that gives the most pause for thought. Bloom's team looked at a group of extraordinarily high achieving people in disciplines as varied as ballet, swimming, piano, tennis, maths, sculpture and neurology. He found a pattern of parents encouraging and supporting their children, often in areas they enjoyed themselves. Bloom's outstanding people had worked very hard and consistently at something they had become hooked on when at a young age, and their parents all emerged as having strong work ethics themselves.
Eyre says we know how high performers learn. From that she has developed a high performing learning approach. She is working on this with a group of schools, both in Britain and abroad. Some spin-off research, which looked in detail at 24 of the 3,000 children being studied who were succeeding despite difficult circumstances, found something remarkable. Half were getting free school meals because of poverty, more than half were living with a single parent, and four in five were living in disadvantaged areas. Interviews uncovered strong evidence of an adult or adults in the child's life who valued and supported education, either in the immediate or extended family or in the child's wider community. Children talked about the need to work hard at school, to listen in class and keep trying.
Let us end with Einstein, the epitome of a genius. He clearly had curiosity, character and determination. He struggled against rejection in early life but was undeterred. Did he think he was a genius or even gifted? He once wrote: "It's not that I'm so smart, it's just that I stay with problems longer. Most people say it is the intellect which makes a great scientist. They are wrong: it is character."
Questions 27–32
Complete the summary using the list of words or phrases below.
List of Words
A appeal
B determined
C intrigued
D single
E achievement
F devoted
G involved
H unique
I innovative
J satisfaction
K intent
27. Maryam Mirzakhani Maryam Mirzakhani is regarded as ………………………… in the field of mathematics because she was the only female holder of the prestigious Fields Medal - a record that she retained at the time of her death.
28. However, maths held little ………………………… for her as a child and in fact her performance was below average until she was
29. ………………………… by a difficult puzzle that one of her siblings showed her.
30. Later, as a professional mathematician, she had an inquiring mind and proved herself to be ………………………… when things did not go smoothly.
31. She said she got the greatest ………………………… from making ground-breaking discoveries
32. and in fact she was responsible for some extremely ………………………… mathematical studies.
Questions 33–37
Do the following statements agree with the views of the writer?
YESif the statement agrees with the views of the writer
NOif the statement contradicts the views of the writer
NOT GIVENif it is impossible to say what the writer thinks about this
33. Many people who ended up winning prestigious intellectual prizes only reached an average standard when young.
34. Einstein's failures as a young man were due to his lack of confidence.
35. It is difficult to reach agreement on whether some children are actually born gifted.
36. Einstein was upset by the public's view of his life's work.
37. Einstein put his success down to the speed at which he dealt with scientific questions.
Questions 38–40
Choose the correct letter.
38. What does Eyre believe is needed for children to equal 'gifted' standards?
A strict discipline from the teaching staff
B assistance from their peers in the classroom
C the development of a spirit of inquiry towards their studies
D the determination to surpass everyone else's achievements
39. What is the result of Ericsson's research?
A Very gifted students do not need to work on improving memory skills.
B Being born with a special gift is not the key factor in becoming expert.
C Including time for physical exercise is crucial in raising performance.
D 10,000 hours of relevant and demanding work will create a genius.
40. In the penultimate paragraph, it is stated the key to some deprived children's success is
A a regular and nourishing diet at home.
B the loving support of more than one parent.
C a community which has well-funded facilities for learning.
D the guidance of someone who recognises the benefits of learning.
Answers
1. piston
2. coal
3. workshops
4. labour
5. quality
6. railway
7. sanitation
8. Not Given
9. False
10. Not Given
11. True
12. True
13. Not Given
14. D
15. F
16. A
17. C
18. F
19. injury
20. serves
21. excitement
22. visualisation
23. symptoms of her performance stress at the tournament
24. aspects of the Wimbledon tournament which increased her stress levels
25. the factors which determine how severe it may be
26. the harm that can result if athletes experience it too often
27. unique
28. appeal
29. intrigued
30. determined
31. satisfaction
32. innovative
33. Yes
34. Not Given
35. Yes
36. Not Given
37. No
38. the development of a spirit of inquiry towards their studies
39. Being born with a special gift is not the key factor in becoming expert.
40. the guidance of someone who recognises the benefits of learning.
Explanations
- 1. piston
- The note claims a specific engine part's movement was 'linked to a gear system'. The passage explains Watt and Boulton's engine was 'driven by both the forward and backward strokes of the piston, while the gear mechanism it was connected to produced rotary motion' — the pronoun 'it' refers back to the piston, so the piston's back-and-forth movement is what the gear mechanism was connected to. No other engine part is described as moving in this sentence, so 'piston' is the only word that completes the logical chain from movement → gear system.Common trap: None significant — direct lift of the keyword
- 2. coal
- The note asks what needed to be supplied in greater quantity to power steam engines. The passage states 'the demand for coal... grew rapidly during the Industrial Revolution, as it was needed to run not only the factories... but also steam-powered transportation'. 'Demand... grew rapidly' paraphrases 'a greater supply... was required', and coal is explicitly the substance whose demand rose to meet steam power's needs.Common trap: None significant — direct lift of the keyword
- 3. workshops
- The note asks where spinners and weavers worked besides home. The passage says the textile business 'was a true "cottage industry", with the work performed in small workshops or even homes by individual spinners, weavers and dyers'. 'Homes' in the note matches 'even homes', so the other location named alongside it — 'workshops' — is the missing word.Common trap: None significant — direct lift of the keyword
- 4. labour
- The note describes a reduced requirement after these two machines appeared. The passage states 'With these machines, relatively little labour was required to produce cloth' immediately after introducing 'the spinning jenny and the power loom'. 'Relatively little... required' matches 'not as much... was needed', and 'labour' is the resource being described.Common trap: None significant — direct lift of the keyword
- 5. quality
- The note asks in what respect the resulting material was 'better'. The passage says smelting with coke 'was cheaper and produced metals that were of a higher quality'. 'Better' in the note maps to 'higher', and the attribute being compared is explicitly 'quality'.Common trap: None significant — direct lift of the keyword
- 6. railway
- The note asks what growing industry drove up demand for iron. The same sentence that describes the higher-quality metal also states that iron and steel production expanded 'in response to demand created by the Napoleonic Wars (1803-15) and the expansion of the railways from the 1830s'. The Napoleonic Wars are a war, not something that 'grows', so the thing whose growth increased iron demand is 'railways'.Common trap: List-position trap — two separate demand drivers (the Napoleonic Wars and the railways) are named in the same sentence; only 'railways' fits 'the growth of the ___'
- 7. sanitation
- The note describes cities as 'dirty, crowded and lacked sufficient ___'. The passage states 'this rapid urbanisation brought significant challenges, as overcrowded cities suffered from pollution and inadequate sanitation'. 'Dirty' paraphrases 'pollution', 'crowded' matches 'overcrowded', and 'lacked sufficient' paraphrases 'inadequate' — leaving 'sanitation' as the missing noun.Common trap: None significant — direct lift of the keyword
- 8. Not Given
- The passage confirms steam-powered boats and ships used the canals ('steam-powered boats and ships were widely used to carry goods along Britain's canals as well as across the Atlantic'), but this only describes what travelled on the canals — it never states that the canal network itself 'grew rapidly' or expanded in size. Since the claim about the network's growth is never addressed, the answer is NOT GIVEN rather than TRUE or FALSE.Common trap: Unaddressed-claim trap — the canals themselves are mentioned, but their 'rapid growth' is never stated
- 9. False
- The statement claims costs 'rose'. The passage says the opposite: smelting iron ore with coke 'was cheaper and produced metals that were of a higher quality'. 'Cheaper' directly contradicts 'costs... rose', so the statement is FALSE.Common trap: Reversed-truth (antonym substitution) trap — 'cheaper' in the passage is reversed to 'rose' in the statement
- 10. Not Given
- The passage confirms both systems existed — Cooke and Wheatstone 'patented the first commercial telegraphy system' while 'Samuel Morse and other inventors worked on their own versions in the United States' — but it never compares the two for reliability. No judgement of which system was 'more reliable' is made anywhere in the passage, so the answer is NOT GIVEN.Common trap: Unsupported-comparison trap — both parties are mentioned, but no comparison between them is made
- 11. True
- The passage states industrialisation 'increased the country's economic output overall and improved the standard of living for the middle and upper classes, many poor people continued to struggle'. Naming specifically the middle and upper classes as beneficiaries, while poor people 'continued to struggle', confirms that the benefits were restricted to particular groups rather than shared across all of society — matching 'limited to certain sectors of society'.Common trap: None significant — direct paraphrase match
- 12. True
- The passage describes the Luddites as weavers who 'had spent years learning their craft' (i.e. skilled) and states 'they feared that unskilled machine operators were robbing them of their livelihood'. 'Robbing them of their livelihood' is the paraphrase of 'job losses', and 'feared' confirms this was their belief — matching the statement exactly.Common trap: None significant — direct paraphrase match
- 13. Not Given
- The passage describes the arrests factually — 'other Luddites were arrested, and dozens were hanged or transported to Australia' — but never mentions how local people felt about these arrests, whether sympathetic or not. Since public sympathy is never addressed, the answer is NOT GIVEN.Common trap: Unaddressed-claim trap — the arrests are described, but local people's feelings about them are never mentioned
- 14. D
- The question asks for two named chemical compounds affecting performance. Paragraph D states 'both affect the production of adrenaline and cortisol - also known as "stress hormones"', and goes on to describe how each of the two hormones affects sport performance. Adrenaline and cortisol are the only two named chemical compounds anywhere in the passage, so D is the only paragraph that fits.Common trap: General-topic-overlap trap — paragraph C also discusses the challenge/threat framework linked to hormones, but never names the compounds themselves; only D does
- 15. F
- The question asks for examples of strategies (plural) that reduce stress's effects. Paragraph F lists several concrete methods: using particular language from coaches/parents, psychologists reframing physiological responses, developing 'visualisation' skills, and 'recreating competitive pressure during training'. This is the only paragraph offering multiple named coping strategies, so F is correct.Common trap: Symptom-vs-strategy trap — paragraph E lists physical effects of anxiety, which could be mistaken for the 'effects' being minimised, but it describes symptoms, not strategies to reduce them
- 16. A
- The question asks how an athlete explained their own stress in their own words. Paragraph A introduces Emma Raducanu, who 'began having difficulty regulating her breathing and heart rate during a match, which she later attributed to "the accumulation of the excitement and the buzz"'. 'Attributed to' is her own account/explanation of what caused her stress response, matching 'accounted for their own experience'.Common trap: None significant
- 17. C
- The question asks for the paragraph presenting a general research finding connecting stress responses to performance outcomes. Paragraph C states plainly, 'Research shows that the challenge states lead to good performance, while threat states lead to poorer performance.' This is the general study-level claim linking the two stress responses to performance.Common trap: Specific-example-vs-general-finding trap — paragraph D gives concrete sporting examples of the same underlying research, but the general 'research shows' statement linking stress states to performance is made in C
- 18. F
- The question asks for named people (not internal factors) who shape an athlete's perception of stress. Paragraph F names 'coaches or parents' (through the language they use) and 'Psychologists' (who 'can also help athletes change how they see their physiological responses'). Both are external people influencing perception, matching the question exactly.Common trap: Internal-resource-vs-external-person trap — paragraph B lists an athlete's own internal resources (confidence, sense of control), which could be confused with outside 'people' who influence perception; only F names actual people
- 19. injury
- The sentence asks for a specific risk among the demands placed on athletes. Paragraph B lists these demands as including 'the athlete's concerns about the difficulty of the event, their chance of succeeding, and any potential dangers such as injury'. 'Potential dangers' matches 'possible risk', and the example given is 'injury'.Common trap: None significant — direct lift of the keyword
- 20. serves
- The sentence asks what cortisol causes tennis players to produce fewer of. Paragraph D states directly, 'In tennis players, cortisol has been associated with more unsuccessful serves and greater anxiety.' 'More unsuccessful serves' is the inverse-phrasing of 'fewer good serves' — same underlying fact, different polarity of wording.Common trap: None significant — antonym-flip paraphrase ('more unsuccessful' rephrased as 'fewer good')
- 21. excitement
- The sentence asks for a positive feeling psychologists reframe a physiological response as. Paragraph F states psychologists help athletes 'see a higher heart rate as excitement, rather than nerves'. 'Excitement' is explicitly the positive reframing offered, contrasted directly against the negative alternative, 'nerves'.Common trap: Opposite-pole trap — the passage names both the correct positive feeling ('excitement') and its negative counterpart ('nerves') in the same clause
- 22. visualisation
- The sentence asks for a named psychological technique. Paragraph F states, 'Developing psychological skills, such as visualisation, can also help decrease physiological responses to threat.' 'Such as' explicitly flags visualisation as the example being asked for, and 'decrease physiological responses to threat' matches 'reduce an athlete's stress responses'.Common trap: None significant — direct lift of the keyword
- 23. symptoms of her performance stress at the tournament
- B is supported because the passage describes exactly what happened to Raducanu physically: 'she began having difficulty regulating her breathing and heart rate during a match'. Difficulty with breathing and heart rate are physical symptoms of her performance stress, matching option B directly.Common trap: A: unsupported — the passage never states which round/stage she withdrew at, only that she withdrew; C: unsupported — no stress-management measures she personally took are mentioned; E: half-true trap — her social media post itself is mentioned, but reactions to it are never discussed
- 24. aspects of the Wimbledon tournament which increased her stress levels
- D is supported because paragraph C states 'a much larger audience, higher expectations and facing a more skilful opponent, may all have led her to feel there were greater demands being placed on her at Wimbledon'. These three factors (audience size, expectations, opponent skill) are specific aspects of the tournament itself that raised her stress, matching option D directly.Common trap: A: unsupported — no stage/round is named; C: unsupported — no personal coping measures are described; E: half-true trap — the post is mentioned, reactions to it are not
- 25. the factors which determine how severe it may be
- A is supported because paragraph E states, 'The intensity with which a person experiences anxiety depends on the demands and resources they have.' 'Intensity' matches 'how severe it may be', and 'depends on the demands and resources' identifies the determining factors — exactly what option A describes.Common trap: B: unsupported — no timeframe for anxiety's effects is given; C: list-without-ranking trap — many symptoms are named but none is identified as 'most frequently encountered'; D: unsupported — no athlete-type distinction is made
- 26. the harm that can result if athletes experience it too often
- E is supported because paragraph E ends by stating 'repeated episodes of anxiety coupled with negative responses can increase risk of heart disease and depression'. 'Repeated episodes... too often' matches 'experience it too often', and 'increase risk of heart disease and depression' is the harm that results — exactly what option E describes.Common trap: B: unsupported — no timeframe given; C: list-without-ranking trap — many symptoms named, none ranked by frequency; D: unsupported — no athlete-type distinction made
- 27. unique
- The summary claims Mirzakhani is regarded as something 'because she was the only female holder' of the Fields Medal. The passage states 'She was the only woman to win the Fields Medal - the mathematical equivalent of a Nobel prize.' Being the sole woman to achieve this makes her one-of-a-kind, matching 'unique' from the word bank rather than 'achievement' (which describes the medal itself, not how she is 'regarded').Common trap: Near-synonym word-bank trap ('achievement' describes the medal itself and is grammatically tempting, but the summary asks how she is 'regarded' as a person, which matches 'unique')
- 28. appeal
- The summary says maths held 'little ___' for her as a child. The passage states 'maths wasn't her interest - reading was'. 'Wasn't her interest' paraphrases to 'held little appeal', confirming that as a child she was not drawn to mathematics.Common trap: None significant — paraphrase match
- 29. intrigued
- The summary describes what happened when her sibling showed her a puzzle. The passage says she 'did rather poorly at it for the first couple of years in her middle school, but became interested when her elder brother told her about what he'd learned. He shared a famous maths problem from a magazine that fascinated her - and she was hooked.' 'Fascinated her... hooked' is the paraphrase target for 'intrigued'.Common trap: Near-synonym word-bank trap ('involved' is grammatically plausible but describes participation, not the fascination/curiosity the passage actually describes)
- 30. determined
- The summary describes her attitude 'when things did not go smoothly'. The passage states she was 'curious, excited by what she did and also resolute in the face of setbacks'. 'Setbacks' matches 'things did not go smoothly', and 'resolute' is the paraphrase target for 'determined'.Common trap: Near-synonym word-bank trap ('intent' is a plausible-sounding distractor from the same word family as 'determined', but describes a fixed purpose, not resilience through setbacks)
- 31. satisfaction
- The summary asks what she got the greatest amount of from making discoveries. Her own quoted words state, 'the most rewarding part is the "Aha" moment, the excitement of discovery and enjoyment of understanding something new'. 'Enjoyment' and 'the most rewarding part' both paraphrase to 'satisfaction'.Common trap: None significant — paraphrase match
- 32. innovative
- The summary describes the nature of her mathematical studies. The passage states 'That trail took her to the heights of original research into mathematics.' 'Original research' is the paraphrase target for 'innovative' studies.Common trap: None significant — paraphrase match ('original' → 'innovative')
- 33. Yes
- The writer states plainly, 'Most Nobel prize winners were unexceptional in childhood.' 'Unexceptional' directly matches 'only reached an average standard', and 'Most Nobel prize winners' matches 'many people who ended up winning prestigious intellectual prizes' — the statement agrees with the writer's claim.Common trap: None significant — direct paraphrase match
- 34. Not Given
- The passage describes Einstein's early failures factually — he 'failed the general part of the entry test to Zurich Polytechnic' and 'struggled at work initially' — but never attributes these failures to a lack of confidence, or to any cause at all. Since the reason behind his struggles is never discussed, the answer is NOT GIVEN.Common trap: Unaddressed-cause trap — the failures themselves are described, but no reason ('lack of confidence' or otherwise) is ever given for them
- 35. Yes
- The writer states, 'While the jury is out on giftedness being innate and other factors potentially making the difference...' 'The jury is out' is an idiom meaning no consensus has been reached, which directly matches 'difficult to reach agreement', and 'giftedness being innate' matches 'born gifted'.Common trap: None significant — idiom paraphrase ('the jury is out' → 'difficult to reach agreement')
- 36. Not Given
- The passage quotes Einstein's own view of what makes a great scientist — 'Most people say it is the intellect which makes a great scientist. They are wrong: it is character.' This shows he disagreed with the popular view, but disagreement is not the same as being 'upset', and no emotional reaction is described anywhere in the passage. Since his feelings about public perception are never addressed, the answer is NOT GIVEN.Common trap: Disagreement-vs-emotion trap — the passage shows Einstein disagreeing with a popular view, which could be mistaken for being 'upset', but no emotional reaction is ever stated
- 37. No
- Einstein's own quoted words directly contradict this claim: 'It's not that I'm so smart, it's just that I stay with problems longer.' 'Stay with problems longer' is the opposite of dealing with questions quickly, so the statement contradicts what the writer reports Einstein as saying.Common trap: Reversed-truth (antonym substitution) trap — 'stay with problems longer' is reversed into 'the speed at which he dealt with' questions
- 38. the development of a spirit of inquiry towards their studies
- The passage states Eyre believes children 'must be taught the right attitudes and approaches to their learning and develop the attributes of high performers - curiosity, persistence and hard work, for example'. 'Curiosity' is the key attribute named first and matches 'a spirit of inquiry towards their studies', which is exactly what option C describes.Common trap: Unsupported-claim trap (A, B — plausible-sounding ideas with no textual basis) and partial-match trap (D — 'persistence and hard work' is real, but 'surpassing everyone else' is not)
- 39. Being born with a special gift is not the key factor in becoming expert.
- The passage states Ericsson 'doesn't think unique and innate talents are at the heart of performance', concluding instead that 'deliberate practice... is what produces the goods'. 'Innate talents are not at the heart of performance' is a direct match for 'being born with a special gift is not the key factor'.Common trap: Reversed-inference trap (A — the memory study shows the opposite of the option) and overreach trap (D — the passage explicitly denies 10,000 hours is a fixed, sufficient number)
- 40. the guidance of someone who recognises the benefits of learning.
- The passage states, 'Interviews uncovered strong evidence of an adult or adults in the child's life who valued and supported education, either in the immediate or extended family or in the child's wider community.' 'Valued and supported education' matches 'recognises the benefits of learning', and 'an adult or adults' matches 'the guidance of someone'.Common trap: Reversed-truth trap (B, C — the passage states the opposite of what these options claim) and unsupported-detail trap (A — poverty is mentioned, but diet specifically is not)
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