Cambridge IELTS 20 Academic Reading Test 3
3 passages · 40 questions · 60 minutes
Frozen Food
A US perspective on the development of the frozen food industry
At some point in history, humans discovered that ice preserved food. There is evidence that winter ice was stored to preserve food in the summer as far back as 10,000 years ago. Two thousand years ago, the inhabitants of South America's Andean mountains had a unique means of conserving potatoes for later consumption. They froze them overnight, then trampled them to squeeze out the moisture, then dried them in the sun. This preserved their nutritional value - if not their aesthetic appeal.
Natural ice remained the main form of refrigeration until late in the 19th century. In the early 1800s, ship owners from Boston, USA, had enormous blocks of Arctic ice towed all over the Atlantic for the purpose of food preservation. In 1851, railroads first began putting blocks of ice in insulated rail cars to send butter from Ogdensburg, New York, to Boston.
Finally, in 1870, Australian inventors found a way to make 'mechanical ice'. They used a compressor to force a gas - ammonia at first and later Freon - through a condenser. The compressed gas gave up some of its heat as it moved through the condenser. Then the gas was released quickly into a low-pressure evaporator coil where it became liquid and cold. Air was blown over the evaporator coil and then this cooled air passed into an insulated compartment, lowering its temperature to freezing point.
Initially, this process was invented to keep Australian beer cool even in hot weather. But Australian cattlemen were quick to realize that, if they could put this new invention on a ship, they could export meat across the oceans. In 1880, a shipment of Australian beef and mutton was sent, frozen, to England. While the food frozen this way was still palatable, there was some deterioration. During the freezing process, crystals formed within the cells of the food, and when the ice expanded and the cells burst, this spoilt the flavor and texture of the food.
The modern frozen food industry began with the indigenous Inuit people of Canada. In 1912, a biology student in Massachusetts, USA, named Clarence Birdseye, ran out of money and went to Labrador in Canada to trap and trade furs. While he was there, he became fascinated with how the Inuit would quickly freeze fish in the Arctic air. The fish looked and tasted fresh even months later.
Birdseye returned to the USA in 1917 and began developing mechanical freezers capable of quick-freezing food. Birdseye methodically kept inventing better freezers and gradually built a business selling frozen fish from Gloucester, Massachusetts. In 1929, his business was sold and became General Foods, but he stayed with the company as director of research, and his division continued to innovate.
Birdseye was responsible for several key innovations that made the frozen food industry possible. He developed quick-freezing techniques that reduced the damage that crystals caused, as well as the technique of freezing the product in the package it was to be sold in. He also introduced the use of cellophane, the first transparent material for food packaging, which allowed consumers to see the quality of the product. Birdseye products also came in convenient size packages that could be prepared with a minimum of effort.
But there were still obstacles. In the 1930s, few grocery stores could afford to buy freezers for a market that wasn't established yet. So, Birdseye leased inexpensive freezer cases to them. He also leased insulated railroad cars so that he could ship his products nationwide. However, few consumers had freezers large enough or efficient enough to take advantage of the products.
Sales increased in the early 1940s, when World War II gave a boost to the frozen food industry because tin was being used for munitions. Canned foods were rationed to save tin for the war effort, while frozen foods were abundant and cheap. Finally, by the 1950s, refrigerator technology had developed far enough to make these appliances affordable for the average family. By 1953, 33 million US families owned a refrigerator, and manufacturers were gradually increasing the size of the freezer compartments in them.
1950s families were also looking for convenience at mealtimes, so the moment was right for the arrival of the 'TV Dinner'. Swanson Foods was a large, nationally recognized producer of canned and frozen poultry. In 1954, the company adapted some of Birdseye's freezing techniques, and with the help of a clever name and a huge advertising budget, it launched the first 'TV Dinner'. This consisted of frozen turkey, potatoes and vegetables served in the same segmented aluminum tray that was used by airlines. The product was an instant success. Within a year, Swanson had sold 13 million TV dinners. American consumers couldn't resist the combination of a trusted brand name, a single-serving package and the convenience of a meal that could be ready after only 25 minutes in a hot oven. By 1959, Americans were spending $2.7 billion annually on frozen foods, and half a billion of that was spent on ready-prepared meals such as the TV Dinner.
Today, the US frozen food industry has a turnover of over $67 billion annually, with $26.6 billion of that sold to consumers for home consumption. The remaining $40 billion in frozen food sales come through restaurants, cafeterias, hospitals and schools, and that represents a third of the total food service sales.
Questions 1–7
Complete the notes below. Choose ONE WORD ONLY from the passage for each answer.
The history of frozen food
2,000 years ago, South America
• People conserved the nutritional value of (1) …………………………, using a method of freezing then drying.
1851, USA
• (2) ………………………… was kept cool by ice during transportation in specially adapted trains.
1880, Australia
• Two kinds of (3) ………………………… were the first frozen food shipped to England.
1917 onwards, USA
• Clarence Birdseye introduced innovations including:
• quick-freezing methods, so that (4) ………………………… did not spoil the food.
• packaging products with (5) ………………………… so the product was visible.
Early 1940s, USA
• Frozen food became popular because of a shortage of (6) …………………………
1950s, USA
• A large number of homes now had a (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. The ice transportation business made some Boston ship owners very wealthy in the early 1800s.
9. A disadvantage of the freezing process invented in Australia was that it affected the taste of food.
10. Clarence Birdseye travelled to Labrador in order to learn how the Inuit people froze fish.
11. Swanson Foods invested a great deal of money in the promotion of the TV Dinner.
12. Swanson Foods developed a new style of container for the launch of the TV Dinner.
13. The US frozen food industry is currently the largest in the world.
Can the planet's coral reefs be saved?
[A] Conservationists have put the final touches to a giant artificial reef they have been assembling at the world-renowned Zoological Society of London (London Zoo). Samples of the planet's most spectacular corals - vivid green branching coral, yellow scroll, blue ridge and many more species - have been added to the giant tank along with fish that thrive in their presence: blue tang, clownfish and many others. The reef is in the zoo's new gallery, Tiny Giants, which is dedicated to the minuscule invertebrate creatures that sustain life across the planet. The coral reef tank and its seven-metre-wide window form the core of the exhibition.
'Coral reefs are the most diverse ecosystems on Earth and we want to show people how wonderful they are,' said Paul Pearce-Kelly, senior curator of invertebrates and fish at the Zoological Society of London. 'However, we also want to highlight the research and conservation efforts that are now being carried out to try to save them from the threat of global warming.' They want people to see what is being done to try to save these wonders.
[B] Corals are composed of tiny animals, known as polyps, with tentacles for capturing small marine creatures in the sea water. These polyps are transparent but get their brilliant tones of pink, orange, blue, green, etc. from algae that live within them, which in turn get protection, while their photosynthesising of the sun's rays provides nutrients for the polyps. This comfortable symbiotic relationship has led to the growth of coral reefs that cover 0.1% of the planet's ocean bed while providing homes for more than 25% of marine species, including fish, molluscs, sponges and shellfish.
[C] As a result, coral reefs are often described as the 'rainforests of the sea', though the comparison is dismissed by some naturalists, including David Attenborough. 'People say you cannot beat the rainforest,' Attenborough has stated. 'But that is simply not true. You go there and the first thing you think is: where are the birds? Where are the animals? They are hiding in the trees, of course. No, if you want beauty and wildlife, you want a coral reef. Put on a mask and stick your head under the water. The sight is mind-blowing.'
[D] Unfortunately, these majestic sights are now under very serious threat, with the most immediate problem coming in the form of thermal stress. Rising ocean temperatures are triggering bleaching events that strip reefs of their colour and eventually kill them. And that is just the start. Other menaces include ocean acidification, sea level increase, pollution by humans, deoxygenation and ocean current changes, while the climate crisis is also increasing habitat destruction. As a result, vast areas - including massive chunks of Australia's Great Barrier Reef - have already been destroyed, and scientists advise that more than 90% of reefs could be lost by 2050 unless urgent action is taken to tackle global heating and greenhouse gas emissions.
Pearce-Kelly says that coral reefs have to survive really harsh conditions - wave erosion and other factors. And 'when things start to go wrong in the oceans, then corals will be the first to react. And that is exactly what we are seeing now. Coral reefs are dying and they are telling us that all is not well with our planet.'
[E] However, scientists are trying to pinpoint hardy types of coral that could survive our overheated oceans, and some of this research will be carried out at London Zoo. 'Behind our ... coral reef tank we have built laboratories where scientists will be studying coral species,' said Pearce-Kelly. One aim will be to carry out research on species to find those that can survive best in warm, acidic waters. Another will be to try to increase coral breeding rates. 'Coral spawn just once a year,' he added. 'However, aquarium-based research has enabled some corals to spawn artificially, which can assist coral reef restoration efforts. And if this can be extended for all species, we could consider the launching of coral-spawning programmes several times a year. That would be a big help in restoring blighted reefs.'
[F] Research in these fields is being conducted in laboratories around the world, with the London Zoo centre linked to this global network. Studies carried out in one centre can then be tested in others. The resulting young coral can then be displayed in the tank in Tiny Giants. 'The crucial point is that the progress we make in making coral better able to survive in a warming world can be shown to the public and encourage them to believe that we can do something to save the planet's reefs,' said Pearce-Kelly. 'Saving our coral reefs is now a critically important ecological goal.'
Questions 14–19
Choose the correct heading for each paragraph from the list of headings below.
List of Headings:
i. Tried and tested solutions
ii. Cooperation beneath the waves
iii. Working to lessen the problems
iv. Disagreement about the accuracy of a certain phrase
v. Two clear educational goals
vi. Promoting hope
vii. A warning of further trouble ahead
14. Paragraph A:
15. Paragraph B:
16. Paragraph C:
17. Paragraph D:
18. Paragraph E:
19. Paragraph F:
Questions 20–21
Choose TWO letters, A–E. Which TWO of these causes of damage to coral reefs are mentioned by the writer of the text?
20. Cause (lower letter)
A a rising number of extreme storms
B the removal of too many fish from the sea
C the contamination of the sea from waste
D increased disease among marine species
E alterations in the usual flow of water in the seas
21. Cause (higher letter)
A a rising number of extreme storms
B the removal of too many fish from the sea
C the contamination of the sea from waste
D increased disease among marine species
E alterations in the usual flow of water in the seas
Questions 22–23
Choose TWO letters, A–E. Which TWO of the following statements are true of the researchers at London Zoo?
22. Statement (lower letter)
A They are hoping to expand the numbers of different corals being bred in laboratories.
B They want to identify corals that can cope well with the changed sea conditions.
C They are looking at ways of creating artificial reefs that corals could grow on.
D They are trying out methods that would speed up reproduction in some corals.
E They are investigating materials that might protect reefs from higher temperatures.
23. Statement (higher letter)
A They are hoping to expand the numbers of different corals being bred in laboratories.
B They want to identify corals that can cope well with the changed sea conditions.
C They are looking at ways of creating artificial reefs that corals could grow on.
D They are trying out methods that would speed up reproduction in some corals.
E They are investigating materials that might protect reefs from higher temperatures.
Questions 24–26
Complete the sentences below. Choose ONE WORD ONLY from the passage for each answer.
24. Corals have a number of ………………………… which they use to collect their food.
25. Algae gain ………………………… from being inside the coral.
26. Increases in the warmth of the sea water can remove the ………………………… from coral.
Robots and us
Three leaders in their fields answer questions about our relationships with robots.
When asked 'Should robots be used to colonise other planets?', cosmology and astrophysics Professor Martin Rees said he believed the solar system would be mapped by robotic craft by the end of the century. 'The next step would be mining of asteroids, enabling fabrication of large structures in space without having to bring all the raw materials from Earth.... I think this is more realistic and benign than the ... "terraforming"* of planets.' He maintains that colonised planets 'should be preserved with a status that is analogous to Antarctica here on Earth.'
On the question of using robots to colonise other planets and exploit mineral resources, engineering Professor Daniel Wolpert replied, 'I don't see a pressing need to colonise other planets unless we can bring [these] resources back to Earth. The vast majority of Earth is currently inaccessible to us. Using robots to gather resources nearer to home would seem to be a better use of our robotic tools.'
Meanwhile, for anthropology Professor Kathleen Richardson, the idea of 'colonisation' of other planets seemed morally dubious: 'I think whether we do something on Earth or on Mars we should always do it in the spirit of a genuine interest in "the Other", not to impose a particular model, but to meet "the Other".'
In response to the second question, 'How soon will machine intelligence outstrip human intelligence?', Rees mentions robots that are advanced enough to beat humans at chess, but then goes on to say, 'Robots are still limited in their ability to sense their environment: they can't yet recognise and move the pieces on a real chessboard as cleverly as a child can. Later this century, however, their more advanced successors may relate to their surroundings, and to people, as adeptly as we do. Moral questions then arise. ... Should we feel guilty about exploiting [sophisticated robots]? Should we fret if they are underemployed, frustrated, or bored?'
Wolpert's response to the question about machine intelligence outstripping human intelligence was this: 'In a limited sense it already has. Machines can already navigate, remember and search for items with an ability that far outstrips humans. However, there is no machine that can identify visual objects or speech with the reliability and flexibility of humans.... Expecting a machine close to the creative intelligence of a human within the next 50 years would be highly ambitious.'
Richardson believes that our fear of machines becoming too advanced has more to do with human nature than anything intrinsic to the machines themselves. In her view, it stems from humans' tendency to personify inanimate objects: we create machines based on representations of ourselves, imagine that machines think and behave as we do, and therefore see them as an autonomous threat. 'One of the consequences of thinking that the problem lies with machines is that we tend to imagine they are greater and more powerful than they really are and subsequently they become so.'
This led on to the third question, 'Should we be scared by advances in artificial intelligence?' To this question, Rees replied, 'Those who should be worried are the futurologists who believe in the so-called "singularity".** ... And another worry is that we are increasingly dependent on computer networks, and that these could behave like a single "brain" with a mind of its own, and with goals that may be contrary to human welfare. I think we should ensure that robots remain as no more than "idiot savants" lacking the capacity to outwit us, even though they may greatly surpass us in the ability to calculate and process information.'
Wolpert's response was to say that we have already seen the damaging effects of artificial intelligence in the form of computer viruses. 'But in this case,' he says, 'the real intelligence is the malicious designer. Critically, the benefits of computers outweigh the damage that computer viruses cause. Similarly, while there may be misuses of robotics in the near future, the benefits that they will bring are likely to outweigh these negative aspects.'
Richardson's response to this question was this: 'We need to ask why fears of artificial intelligence and robots persist; none have in fact risen up and challenged human supremacy.' She believes that as robots have never shown themselves to be a threat to humans, it seems unlikely that they ever will. In fact, she went on, 'Not all fear [robots]; many people welcome machine intelligence.'
In answer to the fourth question, 'What can science fiction tell us about robotics?', Rees replied, 'I sometimes advise students that it's better to read first-rate science fiction than second-rate science - more stimulating, and perhaps no more likely to be wrong.'
As his response, Wolpert commented, 'Science fiction has often been remarkable at predicting the future. Science fiction has painted a vivid spectrum of possible futures, from cute and helpful robots to dystopian robotic societies. Interestingly, almost no science fiction envisages a future without robots.'
Finally, on the question of science fiction, Richardson pointed out that in modern society, people tend to think there is reality on the one hand, and fiction and fantasy on the other. She then explained that the division did not always exist, and that scientists and technologists made this separation because they wanted to carve out the sphere of their work. 'But the divide is not so clear cut, and that is why the worlds seem to collide at times,' she said. 'In some cases, we need to bring these different understandings together to get a whole perspective. Perhaps then, we won't be so frightened that something we create as a copy of ourselves will be a [threat] to us.'
* terraforming: modifying a planet's atmosphere to suit human needs ** singularity: the point when robots will be able to start creating ever more sophisticated versions of themselves
Questions 27–33
Look at the following statements and the list of experts below. Match each statement with the correct expert, A, B, or C. You may use any letter more than once.
List of Experts
A Martin Rees
B Daniel Wolpert
C Kathleen Richardson
27. For our own safety, humans will need to restrict the abilities of robots.
28. The risk of robots harming us is less serious than humans believe it to be.
29. It will take many decades for robot intelligence to be as imaginative as human intelligence.
30. We may have to start considering whether we are treating robots fairly.
31. Robots are probably of more help to us on Earth than in space.
32. The ideas in high-quality science fiction may prove to be just as accurate as those found in the work of mediocre scientists.
33. There are those who look forward to robots developing greater intelligence.
Questions 34–36
Complete each sentence with the correct ending. Choose the correct answer and move it into the gap.
34. Richardson and Rees express similar views regarding the ethical aspect of
A robots to explore outer space.
B advances made in machine intelligence so far.
C changes made to other planets for our own benefit.
D the harm already done by artificial intelligence.
35. Rees and Wolpert share an opinion about the extent of
A robots to explore outer space.
B advances made in machine intelligence so far.
C changes made to other planets for our own benefit.
D the harm already done by artificial intelligence.
36. Wolpert disagrees with Richardson on the question of
A robots to explore outer space.
B advances made in machine intelligence so far.
C changes made to other planets for our own benefit.
D the harm already done by artificial intelligence.
Questions 37–40
Choose the correct letter.
37. What point does Richardson make about fear of machines?
A It has grown alongside the development of ever more advanced robots.
B It is the result of our inclination to attribute human characteristics to non-human entities.
C It has its origins in basic misunderstandings about how inanimate objects function.
D It demonstrates a key difference between human intelligence and machine intelligence.
38. What potential advance does Rees see as a cause for concern?
A robots outnumbering people
B robots having abilities which humans do not
C artificial intelligence developing independent thought
D artificial intelligence taking over every aspect of our lives
39. What does Wolpert emphasise in his response to the question about science fiction?
A how science fiction influences our attitudes to robots
B how fundamental robots are to the science fiction genre
C how the image of robots in science fiction has changed over time
D how reactions to similar portrayals of robots in science fiction may vary
40. What is Richardson doing in her comment about reality and fantasy?
A warning people not to confuse one with the other
B outlining ways in which one has impacted on the other
C recommending a change of approach in how people view them
D explaining why scientists have a different perspective on them from other people
Answers
1. potatoes
2. butter
3. meat
4. crystals
5. cellophane
6. tin
7. refrigerator
8. Not Given
9. True
10. False
11. True
12. False
13. Not Given
14. v
15. ii
16. iv
17. vii
18. iii
19. vi
20. the contamination of the sea from waste
21. alterations in the usual flow of water in the seas
22. They want to identify corals that can cope well with the changed sea conditions.
23. They are trying out methods that would speed up reproduction in some corals.
24. tentacles
25. protection
26. colour
27. A
28. C
29. B
30. A
31. B
32. A
33. C
34. changes made to other planets for our own benefit.
35. advances made in machine intelligence so far.
36. the harm already done by artificial intelligence.
37. It is the result of our inclination to attribute human characteristics to non-human entities.
38. artificial intelligence developing independent thought
39. how fundamental robots are to the science fiction genre
40. recommending a change of approach in how people view them
Explanations
- 1. potatoes
- The passage describes a specific ancient Andean preservation method — freezing, trampling to remove moisture, then sun-drying — applied specifically to potatoes, explicitly stated to preserve their nutritional value even at the cost of appearance. The note's phrasing ("conserved the nutritional value of... freezing then drying") mirrors the passage's own wording almost exactly, making this a direct, low-ambiguity lift.Common trap: None significant
- 2. butter
- The passage names one specific food product transported via ice-cooled insulated rail cars in 1851 — butter, shipped from Ogdensburg to Boston. This is a direct, single-item lift.Common trap: None significant
- 3. meat
- The 1880 shipment consisted of two specific products — beef and mutton — both of which fall under the broader category "meat." Since the note asks for the CATEGORY covering both items ("two kinds of ___"), the answer must be the general term, not either specific product name.Common trap: Specific-vs-category trap (two specific product names are given; the note asks for the broader category term covering both)
- 4. crystals
- The passage explains that ice crystals forming within food cells during slow freezing were what caused spoilage (bursting cells, ruining flavour/texture); Birdseye's quick-freezing innovation specifically reduced this crystal-related damage.Common trap: None significant
- 5. cellophane
- The passage names the specific transparent packaging material Birdseye introduced, explicitly noting its purpose was to let consumers see the product's quality — directly matching "so the product was visible."Common trap: None significant
- 6. tin
- The passage explains that WWII rationing of tin (needed for munitions) restricted canned food availability, which by contrast made frozen food more attractive since it didn't rely on tin packaging. The "shortage" specifically refers to tin, not to food itself.Common trap: Cause-vs-symptom trap (canned food rationing is the visible EFFECT; tin shortage is the actual underlying CAUSE the note is asking about)
- 7. refrigerator
- The passage states that by 1953, 33 million US families owned this appliance, directly matching "a large number of homes now had a ___."Common trap: None significant
- 8. Not Given
- The passage confirms the activity took place (Boston ship owners towing Arctic ice blocks across the Atlantic for food preservation) but never mentions any financial outcome — profit, wealth, or otherwise — resulting from this business. The statement introduces a claim about wealth that the passage simply doesn't address.Common trap: Unaddressed-outcome trap (an activity is described, but its financial result — which the statement asks about — is never mentioned)
- 9. True
- The passage directly states that food frozen using this Australian-invented mechanical process suffered "deterioration" — specifically, ice crystals bursting cells and spoiling "the flavor and texture of the food." "Spoilt the flavor" is a direct match for "affected the taste."Common trap: None significant
- 10. False
- The passage gives Birdseye's actual, stated reason for travelling to Labrador — he had run out of money and went there "to trap and trade furs," a livelihood decision. His fascination with Inuit fish-freezing techniques is described as something that happened only AFTER he arrived ("While he was there, he became fascinated..."), not as his original purpose for the trip. The statement inverts cause and coincidence into a stated goal.Common trap: Incidental-discovery-vs-stated-purpose trap (something learned during a trip is mistaken for the trip's original motivation)
- 11. True
- The passage explicitly states the product launch involved "a huge advertising budget" — "huge" directly supports "invested a great deal of money," and "advertising" directly supports "promotion."Common trap: None significant
- 12. False
- The statement claims Swanson created something NEW, but the passage says the opposite — the TV Dinner was served in "the same segmented aluminum tray that was used by airlines," meaning the container was borrowed/adapted from an existing use, not newly designed for this product.Common trap: Reversed-truth trap (new vs. pre-existing/borrowed container)
- 13. Not Given
- The passage provides detailed figures on the SIZE of the US frozen food industry ($67 billion turnover) but never compares this to any other country's frozen food industry. Without an international comparison, there's no basis in the text to confirm the US industry is the world's largest — the claim of being "largest in the world" requires a comparison the passage doesn't make.Common trap: Unaddressed-comparison trap (a large figure is given for the US alone, but no international ranking or comparison is provided)
- 14. v
- Pearce-Kelly's quote explicitly lays out two distinct aims for the exhibition: first, to show visitors how "wonderful" coral reefs are, and second, to "highlight the research and conservation efforts" underway to save them. These are two separate, clearly stated educational objectives, matching "two clear educational goals" precisely.Common trap: None significant
- 15. ii
- The paragraph describes the symbiotic relationship between coral polyps and algae — the algae provide colour and nutrients through photosynthesis, while the polyps provide protection in return. This mutual, cooperative exchange between two different organisms living together underwater is the direct match for "cooperation beneath the waves."Common trap: None significant
- 16. iv
- The paragraph centres on David Attenborough directly disputing the common comparison of coral reefs to "rainforests of the sea," arguing coral reefs are actually more visually spectacular than rainforests. This is a clear case of someone challenging the accuracy of a specific descriptive phrase.Common trap: None significant
- 17. vii
- The paragraph lists multiple escalating threats (thermal stress, acidification, sea level rise, pollution, deoxygenation, current changes) and ends with a stark forward-looking prediction — over 90% of reefs could be lost by 2050 without urgent action. This is a clear warning about future, worsening danger.Common trap: None significant
- 18. iii
- The paragraph describes active research efforts aimed at reducing the impact of the threats named in Section D — finding heat/acid-tolerant coral species and increasing breeding rates through artificial spawning — concrete steps aimed at mitigating the damage already described.Common trap: None significant
- 19. vi
- The paragraph's closing point is explicitly about using visible progress to inspire public belief that reef restoration is achievable — directly framing the exhibit's purpose as encouraging hope and confidence, rather than despair.Common trap: None significant
- 20. the contamination of the sea from waste
- The passage lists five threats together in one sentence: ocean acidification, sea level increase, pollution by humans, deoxygenation, and ocean current changes. Matching these against the five answer options: "pollution by humans" directly matches C ("the contamination of the sea from waste"), and "ocean current changes" directly matches E ("alterations in the usual flow of water in the seas"). The other three named threats (acidification, sea level rise, deoxygenation) don't correspond to any of the five given options, and none of the passage's threats involve storm frequency (A), overfishing (B), or disease (D) — these three options are never mentioned anywhere in the passage.Common trap: Unsupported-claim trap (A, B, D — plausible-sounding environmental threats that simply aren't part of this passage's list)
- 21. alterations in the usual flow of water in the seas
- The passage lists five threats together in one sentence, including "ocean current changes," which directly matches E ("alterations in the usual flow of water in the seas"). None of the passage's threats involve storm frequency (A), overfishing (B), or disease (D) — these three options are never mentioned anywhere in the passage.Common trap: Unsupported-claim trap (A, B, D — plausible-sounding environmental threats that simply aren't part of this passage's list)
- 22. They want to identify corals that can cope well with the changed sea conditions.
- The passage names two specific research aims: finding coral species that "survive best in warm, acidic waters" — directly matching B (coping with changed sea conditions) — and increasing "coral breeding rates" through artificial spawning techniques, directly matching D (speeding up reproduction). Option A (expanding the NUMBER of different coral species bred) is a near-miss, since the passage discusses increasing breeding RATE/frequency, not species diversity. Options C (creating artificial reefs for coral to grow on) and E (investigating protective materials) are never mentioned — the artificial reef already exists as a finished exhibit, not a research subject, and no protective "materials" research is discussed.Common trap: Near-miss trap (A confuses breeding frequency/rate with species diversity, which are different concepts)
- 23. They are trying out methods that would speed up reproduction in some corals.
- The passage states that another research aim is to "increase coral breeding rates" through artificial spawning techniques, directly matching D (speeding up reproduction). Option A (expanding the NUMBER of different coral species bred) is a near-miss, since the passage discusses increasing breeding RATE/frequency, not species diversity. Options C and E are never mentioned.Common trap: Near-miss trap (A confuses breeding frequency/rate with species diversity, which are different concepts)
- 24. tentacles
- The passage identifies the specific body part coral polyps use to capture small marine creatures for food — tentacles.Common trap: None significant
- 25. protection
- The passage describes the mutual benefit exchange: algae give the polyps colour and nutrients via photosynthesis, and in return, algae receive protection from living inside the polyp.Common trap: None significant
- 26. colour
- The passage explains that rising ocean temperatures trigger bleaching events, which specifically "strip reefs of their colour" before eventually killing them.Common trap: None significant
- 27. A
- Rees explicitly states his preference that robots be deliberately kept limited — "idiot savants" without the capacity to outsmart humans — even as their computational abilities grow. This is a direct call for humans to impose a deliberate restriction on robot capability, framed specifically around safety.Common trap: None significant
- 28. C
- Richardson argues that because robots have never actually posed a real threat historically, the fear of future harm is likely overblown — a direct claim that the perceived risk exceeds the actual risk.Common trap: None significant
- 29. B
- Wolpert explicitly frames matching human creative intelligence as an extremely distant, "highly ambitious" goal even on a 50-year timescale — directly supporting "many decades" before robots achieve human-level imaginative/creative capacity.Common trap: None significant
- 30. A
- Rees poses direct ethical questions about how advanced robots might be treated — whether we should feel guilty about "exploiting" them, or worry if they become "underemployed, frustrated, or bored." These questions directly concern fairness toward robots, treating them as potential moral subjects.Common trap: None significant
- 31. B
- Wolpert directly states a preference for using robots to gather resources close to home rather than pursuing off-planet resource collection, reasoning that most of Earth itself remains inaccessible and thus a better priority for robotic tools.Common trap: None significant
- 32. A
- Rees's comparison is precise: he recommends "first-rate science fiction" over "second-rate science," explicitly stating the former is "no more likely to be wrong" — directly claiming comparable accuracy between excellent fiction and poor-quality science.Common trap: None significant
- 33. C
- Richardson explicitly notes that fear of robots isn't universal — many people actually welcome the prospect of machine intelligence advancing, directly supporting the idea that some people look forward to this development.Common trap: None significant
- 34. changes made to other planets for our own benefit.
- Rees argues colonised planets should be preserved with an Antarctica-like protected status, implicitly opposing exploitative "terraforming." Richardson separately states that whether acting on Earth or Mars, we should approach with "genuine interest in 'the Other,'" not to "impose a particular model." Both experts, despite different phrasing, express the same underlying ethical caution against reshaping other planets purely to serve human interests.Common trap: None significant
- 35. advances made in machine intelligence so far.
- Both experts describe a similar CURRENT state of AI development: genuinely impressive in specific, narrow areas (Rees notes robots beating humans at chess; Wolpert notes machines "far outstrip" humans at navigation, memory, and search) while still clearly limited in others (Rees notes robots can't yet manipulate a real chessboard as well as a child; Wolpert notes no machine matches human reliability at visual/speech recognition). This shared assessment — real but partial, uneven progress — is what "advances made... so far" captures.Common trap: None significant
- 36. the harm already done by artificial intelligence.
- Wolpert explicitly acknowledges that AI has ALREADY caused real damage, citing computer viruses as evidence — though he attributes the true responsibility to the "malicious designer" rather than the technology itself, and argues the benefits still outweigh this harm. Richardson's position, by contrast, emphasizes that robots have never actually "risen up" or threatened humans, framing AI as essentially harmless in practice. This is a genuine point of difference: Wolpert concedes real, already-occurred harm exists (even if human-caused), while Richardson's framing minimizes the notion that AI has caused meaningful harm at all.Common trap: None significant, though distinguishing "harm already done" from hypothetical future risk requires careful reading of Wolpert's specific wording ("already seen")
- 37. It is the result of our inclination to attribute human characteristics to non-human entities.
- Richardson attributes fear of advanced machines to a specifically human psychological tendency — personifying inanimate objects, imagining they think and feel as humans do, and consequently perceiving them as autonomous threats. This is a direct claim that our fear stems from projecting human characteristics onto non-human machines.Common trap: Unsupported-claim trap
- 38. artificial intelligence developing independent thought
- Rees's specific worry, distinct from his earlier "idiot savant" comment, is about growing human dependence on computer networks that could begin to "behave like a single 'brain' with a mind of its own" pursuing "goals that may be contrary to human welfare." A system developing its own independent "mind"/goals is precisely what "artificial intelligence developing independent thought" describes.Common trap: Adjacent-quote trap (Rees makes multiple separate points about robots/AI across the passage; this question requires isolating the specific "computer networks... mind of its own" concern from his other, related-but-distinct comments about robot capability limits and treatment fairness)
- 39. how fundamental robots are to the science fiction genre
- Wolpert's key observation is that robots are essentially indispensable to the science fiction genre — spanning a huge range of portrayals (from friendly to dystopian), but almost never absent altogether. This near-universal presence across the genre's many different futures is what "how fundamental robots are to the science fiction genre" captures.Common trap: Opening-sentence trap (a general introductory remark is mistaken for the paragraph's main emphasis, which is actually developed in the sentences that follow)
- 40. recommending a change of approach in how people view them
- Richardson argues that the conventional, clean separation between "reality" and "fiction/fantasy" is artificial — created by scientists and technologists to define their own professional territory — and that this rigid divide isn't actually accurate ("not so clear cut"). She explicitly recommends a different way forward: bringing "these different understandings together to get a whole perspective." This is a direct recommendation for a new, different approach to how people currently view/separate these two categories.Common trap: Background-vs-conclusion trap (D captures a supporting explanation given earlier in her comment, while the correct answer captures her actual concluding recommendation, which is the paragraph's main point)
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