Cambridge IELTS 8 Academic Reading Test 4
3 passages · 40 questions · 60 minutes
Land of the Rising Sun
[A] Japan has a significantly better record in terms of average mathematical attainment than England and Wales. Large sample international comparisons of pupils' attainments since the 1960s have established that not only did Japanese pupils at age 13 have better scores of average attainment, but there was also a larger proportion of 'low' attainers in England, where, incidentally, the variation in attainment scores was much greater. The percentage of Gross National Product spent on education is reasonably similar in the two countries, so how is this higher and more consistent attainment in maths achieved?
[B] Lower secondary schools in Japan cover three school years, from the seventh grade (age 13) to the ninth grade (age 15). Virtually all pupils at this stage attend state schools: only 3 per cent are in the private sector. Schools are usually modern in design, set well back from the road and spacious inside. Classrooms are large and pupils sit at single desks in rows. Lessons last for a standardised 50 minutes and are always followed by a 10-minute break, which gives the pupils a chance to let off steam. Teachers begin with a formal address and mutual bowing, and then concentrate on whole-class teaching. Classes are large - usually about 40 - and are unstreamed. Pupils stay in the same class for all lessons throughout the school and develop considerable class identity and loyalty. Pupils attend the school in their own neighbourhood, which in theory removes ranking by school. In practice in Tokyo, because of the relative concentration of schools, there is some competition to get into the 'better' school in a particular area.
[C] Traditional ways of teaching form the basis of the lesson and the remarkably quiet classes take their own notes of the points made and the examples demonstrated. Everyone has their own copy of the textbook supplied by the central education authority, Monbusho, as part of the concept of free compulsory education up to the age of 15. These textbooks are, on the whole, small, presumably inexpensive to produce, but well set out and logically developed. (One teacher was particularly keen to introduce colour and pictures into maths textbooks: he felt this would make them more accessible to pupils brought up in a cartoon culture.) Besides approving textbooks, Monbusho also decides the highly centralised national curriculum and how it is to be delivered.
[D] Lessons all follow the same pattern. At the beginning, the pupils put solutions to the homework on the board, then the teachers comment, correct or elaborate as necessary. Pupils mark their own homework: this is an important principle in Japanese schooling as it enables pupils to see where and why they made a mistake, so that these can be avoided in future. No one minds mistakes or ignorance as long as you are prepared to learn from them. After the homework has been discussed, the teacher explains the topic of the lesson, slowly and with a lot of repetition and elaboration. Examples are demonstrated on the board; questions from the textbook are worked through first with the class, and then the class is set questions from the textbook to do individually. Only rarely are supplementary worksheets distributed in a maths class. The impression is that the logical nature of the textbooks and their comprehensive coverage of different types of examples, combined with the relative homogeneity of the class, renders work sheets unnecessary. At this point, the teacher would circulate and make sure that all the pupils were coping well.
[E] It is remarkable that large, mixed-ability classes could be kept together for maths throughout all their compulsory schooling from 6 to 15. Teachers say that they give individual help at the end of a lesson or after school, setting extra work if necessary. In observed lessons, any strugglers would be assisted by the teacher or quietly seek help from their neighbour. Carefully fostered class identity makes pupils keen to help each other - anyway, it is in their interests since the class progresses together. This scarcely seems adequate help to enable slow learners to keep up. However, the Japanese attitude towards education runs along the lines of "if you work hard enough, you can do almost anything". Parents are kept closely informed of their children's progress and will play a part in helping their children to keep up with class, sending them to 'Juku' (private evening tuition) if extra help is needed and encouraging them to work harder. It seems to work, at least for 95 per cent of the school population.
[F] So what are the major contributing factors in the success of maths teaching? Clearly, attitudes are important. Education is valued greatly in Japanese culture; maths is recognised as an important compulsory subject throughout schooling; and the emphasis is on hard work coupled with a focus on accuracy. Other relevant points relate to the supportive attitude of a class towards slower pupils, the lack of competition within a class, and the positive emphasis on learning for oneself and improving one's own standard. And the view of repetitively boring lessons and learning the facts by heart, which is sometimes quoted in relation to Japanese classes, may be unfair and unjustified. No poor maths lessons were observed. They were mainly good and one or two were inspirational.
Questions 1–5
Choose the correct heading for each paragraph from the list of headings below.
List of Headings:
i. The influence of Monbusho
ii. Helping less successful students
iii. The success of compulsory education
iv. Research findings concerning achievements in maths
v. The typical format of a maths lesson
vi. Comparative expenditure on maths education
vii. Background to middle-years education in Japan
viii. The key to Japanese successes in maths education
ix. The role of homework correction
1. Paragraph B:
2. Paragraph C:
3. Paragraph D:
4. Paragraph E:
5. Paragraph F:
Questions 6–9
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
6. There is a wider range of achievement amongst English pupils studying maths than amongst their Japanese counterparts.
7. The percentage of Gross National Product spent on education generally reflects the level of attainment in mathematics.
8. Private schools in Japan are more modern and spacious than state-run lower secondary schools.
9. Teachers mark homework in Japanese schools.
Questions 10–13
Choose the correct letter.
10. Maths textbooks in Japanese schools are
A cheap for pupils to buy.
B well organised and adapted to the needs of the pupils.
C written to be used in conjunction with TV programmes.
D not very popular with many Japanese teachers.
11. When a new maths topic is introduced,
A students answer questions on the board.
B students rely entirely on the textbook.
C it is carefully and patiently explained to the students.
D it is usual for students to use extra worksheets.
12. How do schools deal with students who experience difficulties?
A They are given appropriate supplementary tuition.
B They are encouraged to copy from other pupils.
C They are forced to explain their slow progress.
D They are placed in a mixed-ability class.
13. Why do Japanese students tend to achieve relatively high rates of success in maths?
A It is a compulsory subject in Japan.
B They are used to working without help from others.
C Much effort is made and correct answers are emphasised.
D There is a strong emphasis on repetitive learning.
Biological control of pests
The continuous and reckless use of synthetic chemicals for the control of pests which pose a threat to agricultural crops and human health is proving to be counter-productive. Apart from engendering widespread ecological disorders, pesticides have contributed to the emergence of a new breed of chemical-resistant, highly lethal superbugs.
According to a recent study by the Food and Agriculture Organisation (FAO), more than 300 species of agricultural pests have developed resistance to a wide range of potent chemicals. Not to be left behind are the disease-spreading pests, about 100 species of which have become immune to a variety of insecticides now in use.
One glaring disadvantage of pesticides' application is that, while destroying harmful pests, they also wipe out many useful non-targeted organisms, which keep the growth of the pest population in check. This results in what agroecologists call the 'treadmill syndrome'. Because of their tremendous breeding potential and genetic diversity, many pests are known to withstand synthetic chemicals and bear offspring with a built-in resistance to pesticides.
The havoc that the 'treadmill syndrome' can bring about is well illustrated by what happened to cotton farmers in Central America. In the early 1940s, basking in the glory of chemical-based intensive agriculture, the farmers avidly took to pesticides as a sure measure to boost crop yield. The insecticide was applied eight times a year in the mid-1940s, rising to 28 in a season in the mid-1950s, following the sudden proliferation of three new varieties of chemical-resistant pests.
By the mid-1960s, the situation took an alarming turn with the outbreak of four more new pests, necessitating pesticide spraying to such an extent that 50% of the financial outlay on cotton production was accounted for by pesticides. In the early 1970s, the spraying frequently reached 70 times a season as the farmers were pushed to the wall by the invasion of genetically stronger insect species.
Most of the pesticides in the market today remain inadequately tested for properties that cause cancer and mutations as well as for other adverse effects on health, says a study by United States environmental agencies. The United States National Resource Defense Council has found that DDT was the most popular of a long list of dangerous chemicals in use.
In the face of the escalating perils from indiscriminate applications of pesticides, a more effective and ecologically sound strategy of biological control, involving the selective use of natural enemies of the pest population, is fast gaining popularity - though, as yet, it is a new field with limited potential. The advantage of biological control in contrast to other methods is that it provides a relatively low-cost, perpetual control system with a minimum of detrimental side-effects. When handled by experts, bio-control is safe, non-polluting and self-dispersing.
The Commonwealth Institute of Biological Control (CIBC) in Bangalore, with its global network of research laboratories and field stations, is one of the most active, non-commercial research agencies engaged in pest control by setting natural predators against parasites. CIBC also serves as a clearing-house for the export and import of biological agents for pest control world-wide.
CIBC successfully used a seed-feeding weevil, native to Mexico, to control the obnoxious parthenium weed, known to exert devious influence on agriculture and human health in both India and Australia. Similarly the Hyderabad-based Regional Research Laboratory (RRL), supported by CIBC, is now trying out an Argentinian weevil for the eradication of water hyacinth, another dangerous weed, which has become a nuisance in many parts of the world. According to Mrs Kaiser Jamil of RRL, "The Argentinian weevil does not attack any other plant and a pair of adult bugs could destroy the weed in 4-5 days." CIBC is also perfecting the technique for breeding parasites that prey on 'disapene scale' insects - notorious defoliants of fruit trees in the US and India.
How effectively biological control can be pressed into service is proved by the following examples. In the late 1960s, when Sri Lanka's flourishing coconut groves were plagued by leaf-mining hispides, a larval parasite imported from Singapore brought the pest under control. A natural predator indigenous to India, Neodumetia sangawani, was found useful in controlling the Rhodes grass-scale insect that was devouring forage grass in many parts of the US. By using Neochetina bruchi, a beetle native to Brazil, scientists at Kerala Agricultural University freed a 12-kilometre-long canal from the clutches of the weed Salvinia molesta, popularly called 'African Payal' in Kerala. About 30,000 hectares of rice fields in Kerala are infested by this weed.
Questions 14–17
Choose the correct letter.
14. The use of pesticides has contributed to
A a change in the way ecologies are classified by agroecologists.
B an imbalance in many ecologies around the world.
C the prevention of ecological disasters in some parts of the world.
D an increase in the range of ecologies which can be usefully farmed.
15. The Food and Agriculture Organisation has counted more than 300 agricultural pests which
A are no longer responding to most pesticides in use.
B can be easily controlled through the use of pesticides.
C continue to spread disease in a wide range of crops.
D may be used as part of bio-control's replacement of pesticides.
16. Cotton farmers in Central America began to use pesticides
A because of an intensive government advertising campaign.
B in response to the appearance of new varieties of pest.
C as a result of changes in the seasons and the climate.
D to ensure more cotton was harvested from each crop.
17. By the mid-1960s, cotton farmers in Central America found that pesticides
A were wiping out 50% of the pests plaguing the crops.
B were destroying 50% of the crops they were meant to protect.
C were causing a 50% increase in the number of new pests reported.
D were costing 50% of the total amount they spent on their crops.
Questions 18–21
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
18. Disease-spreading pests respond more quickly to pesticides than agricultural pests do.
19. A number of pests are now born with an innate immunity to some pesticides.
20. Biological control entails using synthetic chemicals to try and change the genetic make-up of the pests' offspring.
21. Bio-control is free from danger under certain circumstances.
Questions 22–26
Complete each sentence with the correct ending. Choose the correct answer and move it into the gap.
22. Disapene scale insects feed on
A forage grass.
B rice fields.
C coconut trees.
D fruit trees.
E water hyacinth.
F parthenium weed.
G Brazilian beetles.
H grass-scale insects.
I larval parasites.
23. Neodumetia sangawani ate
A forage grass.
B rice fields.
C coconut trees.
D fruit trees.
E water hyacinth.
F parthenium weed.
G Brazilian beetles.
H grass-scale insects.
I larval parasites.
24. Leaf-mining hispides blighted
A forage grass.
B rice fields.
C coconut trees.
D fruit trees.
E water hyacinth.
F parthenium weed.
G Brazilian beetles.
H grass-scale insects.
I larval parasites.
25. An Argentinian weevil may be successful in wiping out
A forage grass.
B rice fields.
C coconut trees.
D fruit trees.
E water hyacinth.
F parthenium weed.
G Brazilian beetles.
H grass-scale insects.
I larval parasites.
26. Salvinia molesta plagues
A forage grass.
B rice fields.
C coconut trees.
D fruit trees.
E water hyacinth.
F parthenium weed.
G Brazilian beetles.
H grass-scale insects.
I larval parasites.
Collecting Ant Specimens
Collecting ants can be as simple as picking up stray ones and placing them in a glass jar, or as complicated as completing an exhaustive survey of all species present in an area and estimating their relative abundances. The exact method used will depend on the final purpose of the collections. For taxonomy, or classification, long series, from a single nest, which contain all castes (workers, including majors and minors, and, if present, queens and males) are desirable, to allow the determination of variation within species. For ecological studies, the most important factor is collecting identifiable samples of as many of the different species present as possible. Unfortunately, these methods are not always compatible. The taxonomist sometimes overlooks whole species in favour of those groups currently under study, while the ecologist often collects only a limited number of specimens of each species, thus reducing their value for taxonomic investigations.
To collect as wide a range of species as possible, several methods must be used. These include hand collecting, using baits to attract the ants, ground litter sampling, and the use of pitfall traps. Hand collecting consists of searching for ants everywhere they are likely to occur. This includes on the ground, under rocks, logs or other objects on the ground, in rotten wood on the ground or on trees, in vegetation, on tree trunks and under bark. When possible, collections should be made from nests or foraging columns and at least 20 to 25 individuals collected. This will ensure that all individuals are of the same species, and so increase their value for detailed studies. Since some species are largely nocturnal, collecting should not be confined to daytime. Specimens are collected using an aspirator (often called a pooter), forceps, a fine, moistened paint brush, or fingers, if the ants are known not to sting. Individual insects are placed in plastic or glass tubes (1.5-3.0 ml capacity for small ants, 5-8 ml for larger ants) containing 75% to 95% ethanol. Plastic tubes with secure tops are better than glass because they are lighter, and do not break as easily if mishandled.
Baits can be used to attract and concentrate foragers. This often increases the number of individuals collected and attracts species that are otherwise elusive. Sugars and meats or oils will attract different species and a range should be utilised. These baits can be placed either on the ground or on the trunks of trees or large shrubs. When placed on the ground, baits should be situated on small paper cards or other flat, light-coloured surfaces, or in test-tubes or vials. This makes it easier to spot ants and to capture them before they can escape into the surrounding leaf litter.
Many ants are small and forage primarily in the layer of leaves and other debris on the ground. Collecting these species by hand can be difficult. One of the most successful ways to collect them is to gather the leaf litter in which they are foraging and extract the ants from it. This is most commonly done by placing leaf litter on a screen over a large funnel, often under some heat. As the leaf litter dries from above, ants (and other animals) move downward and eventually fall out the bottom and are collected in alcohol placed below the funnel. This method works especially well in rain forests and marshy areas. A method of improving the catch when using a funnel is to sift the leaf litter through a coarse screen before placing it above the funnel. This will concentrate the litter and remove larger leaves and twigs. It will also allow more litter to be sampled when using a limited number of funnels.
The pitfall trap is another commonly used tool for collecting ants. A pitfall trap can be any small container placed in the ground with the top level with the surrounding surface and filled with a preservative. Ants are collected when they fall into the trap while foraging. The diameter of the traps can vary from about 18 mm to 10 cm and the number used can vary from a few to several hundred. The size of the traps used is influenced largely by personal preference (although larger sizes are generally better), while the number will be determined by the study being undertaken. The preservative used is usually ethylene glycol or propylene glycol, as alcohol will evaporate quickly and the traps will dry out. One advantage of pitfall traps is that they can be used to collect over a period of time with minimal maintenance and intervention. One disadvantage is that some species are not collected as they either avoid the traps or do not commonly encounter them while foraging.
Questions 27–30
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
27. Taxonomic research involves comparing members of one group of ants.
28. New species of ant are frequently identified by taxonomists.
29. Range is the key criterion for ecological collections.
30. A single collection of ants can generally be used for both taxonomic and ecological purposes
Questions 31–36
Classify the following statements as referring to hand collecting, using bait, sampling ground litter or using a pitfall trap. Choose the correct letter, A–D.
Collection Methods
A hand collecting
B using bait
C sampling ground litter
D using a pitfall trap
31. It is preferable to take specimens from groups of ants.
32. It is particularly effective for wet habitats.
33. It is a good method for species which are hard to find.
34. Little time and effort is required.
35. Separate containers are used for individual specimens.
36. Non-alcoholic preservative should be used.
Questions 37–40
Label the diagram below. Choose NO MORE THAN TWO WORDS from the passage for each answer.
Extracting ants from leaf litter
• Leaf litter is placed on a screen over a large funnel, often under some (37) …………………………
• As the (38) ………………………… dries from above, ants move downward
• The leaf litter sits on a (39) ………………………… above the funnel
• Ants eventually fall out the bottom and are collected in (40) ………………………… below
Answers
1. vii
2. i
3. v
4. ii
5. viii
6. Yes
7. Not Given
8. Not Given
9. No
10. well organised and adapted to the needs of the pupils.
11. it is carefully and patiently explained to the students.
12. They are given appropriate supplementary tuition.
13. Much effort is made and correct answers are emphasised.
14. an imbalance in many ecologies around the world.
15. are no longer responding to most pesticides in use.
16. to ensure more cotton was harvested from each crop.
17. were costing 50% of the total amount they spent on their crops.
18. Not Given
19. Yes
20. No
21. Yes
22. fruit trees.
23. grass-scale insects.
24. coconut trees.
25. water hyacinth.
26. rice fields.
27. True
28. Not Given
29. True
30. False
31. A
32. C
33. B
34. D
35. A
36. D
37. heat
38. leaf litter
39. screen
40. alcohol
Explanations
- 1. vii
- Section B describes lower secondary schools in Japan: the age range (13-15), the fact that most are state schools, their design, classroom setup, and lesson structure. This is background information about Japanese middle-school education. Paraphrase: "background" = general description of the system; "middle-years education" = "lower secondary schools".Common trap: None significant.
- 2. i
- Section C describes how Monbusho (the central education authority) supplies textbooks, approves them, and decides the national curriculum and how it is delivered. This is about Monbusho's influence. Paraphrase: "influence of Monbusho" = "supplied by... Monbusho" + "Monbusho also decides".Common trap: None significant.
- 3. v
- Section D describes the pattern all lessons follow: homework on board, teacher comments, teacher explains topic, examples demonstrated, questions from textbook. This is the typical format. Paraphrase: "typical format" = "all follow the same pattern".Common trap: None significant.
- 4. ii
- Section E describes how strugglers are assisted: teachers give individual help, classmates help, parents send children to "Juku" (private evening tuition). This is about helping less successful students. Paraphrase: "helping less successful students" = "strugglers would be assisted" + "help to enable slow learners to keep up".Common trap: None significant.
- 5. viii
- Section F asks "what are the major contributing factors" and lists them: attitudes, hard work, accuracy, supportive class atmosphere. This is the key to success. Paraphrase: "key to successes" = "major contributing factors".Common trap: None significant.
- 6. Yes
- The passage states "the variation in attainment scores was much greater" in England than in Japan. This means a wider range of achievement. Paraphrase: "wider range" = "variation... was much greater".Common trap: None significant.
- 7. Not Given
- The passage states that GNP spending on education is "reasonably similar" between Japan and England, which sets up the question of how the difference in attainment is achieved despite this. However, the passage never makes a general claim about whether spending on education reflects attainment levels overall — it only notes this one specific comparison. Paraphrase: "generally reflects" is a broader claim than the passage's single two-country comparison supports.Common trap: Overgeneralisation trap — the passage only compares two countries' spending vs attainment; it never states a general rule linking the two.
- 8. Not Given
- The passage describes state schools as "modern in design... spacious" but never describes private schools or compares them to state schools. Paraphrase: "more modern and spacious" = not mentioned (no comparison).Common trap: Comparison-omission trap — private schools are mentioned but not compared.
- 9. No
- The passage states "Pupils mark their own homework." Teachers do NOT mark homework. Paraphrase: "Teachers mark" = contradicted by "Pupils mark their own".Common trap: Reversed-truth trap — pupils mark their own homework, not teachers.
- 10. well organised and adapted to the needs of the pupils.
- The passage states textbooks are "well set out and logically developed" and their "logical nature... renders work sheets unnecessary." They are well organised and adapted to pupils' needs. Paraphrase: "well organised" = "well set out"; "adapted to the needs" = "logical nature... comprehensive coverage".Common trap: None significant.
- 11. it is carefully and patiently explained to the students.
- The passage states "the teacher explains the topic of the lesson, slowly and with a lot of repetition and elaboration." The topic is carefully and patiently explained. Paraphrase: "carefully and patiently explained" = "slowly and with a lot of repetition and elaboration".Common trap: None significant.
- 12. They are given appropriate supplementary tuition.
- The passage mentions teachers give "individual help" and parents send students to "Juku (private evening tuition)." Students receive appropriate supplementary tuition. Paraphrase: "supplementary tuition" = "individual help" + "Juku (private evening tuition)".Common trap: None significant.
- 13. Much effort is made and correct answers are emphasised.
- The passage states "the emphasis is on hard work coupled with a focus on accuracy." Much effort is made and correct answers are emphasised. Paraphrase: "much effort" = "hard work"; "correct answers emphasised" = "focus on accuracy".Common trap: None significant.
- 14. an imbalance in many ecologies around the world.
- The passage states pesticides have caused "widespread ecological disorders" and wipe out "useful non-targeted organisms." This creates an imbalance in ecologies. Paraphrase: "imbalance in many ecologies" = "widespread ecological disorders".Common trap: None significant.
- 15. are no longer responding to most pesticides in use.
- The passage states more than 300 species "have developed resistance to a wide range of potent chemicals." They no longer respond to pesticides. Paraphrase: "no longer responding" = "developed resistance".Common trap: None significant.
- 16. to ensure more cotton was harvested from each crop.
- The passage states farmers "avidly took to pesticides as a sure measure to boost crop yield." They wanted to increase cotton production. Paraphrase: "to ensure more cotton was harvested" = "to boost crop yield".Common trap: Cause-vs-effect conflation trap — new pests were the effect, not the cause.
- 17. were costing 50% of the total amount they spent on their crops.
- The passage states "50% of the financial outlay on cotton production was accounted for by pesticides." Pesticides cost 50% of the total amount spent on crops. Paraphrase: "costing 50% of the total amount" = "50% of the financial outlay... was accounted for by pesticides".Common trap: None significant.
- 18. Not Given
- The passage states disease-spreading pests (about 100 species) have become immune, but it never compares the speed of response between the two groups. Paraphrase: "more quickly" = not mentioned (no speed comparison).Common trap: Speed-comparison conflation trap — both groups developed resistance but speed isn't compared.
- 19. Yes
- The passage states pests "bear offspring with a built-in resistance to pesticides." They are born with immunity. Paraphrase: "born with" = "bear offspring with"; "innate immunity" = "built-in resistance".Common trap: None significant.
- 20. No
- Biological control is defined as "involving the selective use of natural enemies of the pest population." It does NOT use synthetic chemicals. Paraphrase: "using synthetic chemicals" = contradicted by "selective use of natural enemies".Common trap: Reversed-truth trap — biological control uses natural enemies, not synthetic chemicals.
- 21. Yes
- The passage states "When handled by experts, bio-control is safe." Under certain circumstances (when experts handle it), it is free from danger. Paraphrase: "under certain circumstances" = "When handled by experts"; "free from danger" = "safe".Common trap: None significant.
- 22. fruit trees.
- The passage states disapene scale insects are "notorious defoliants of fruit trees." They feed on fruit trees. Paraphrase: "feed on" = "defoliants of" (eat leaves of).Common trap: None significant.
- 23. grass-scale insects.
- The passage states Neodumetia sangawani was used in "controlling the Rhodes grass-scale insect." It ate grass-scale insects. Paraphrase: "ate" = "controlling" (as a predator).Common trap: None significant.
- 24. coconut trees.
- The passage states leaf-mining hispides "plagued" coconut groves in Sri Lanka. They blighted coconut trees. Paraphrase: "blighted" = "plagued".Common trap: None significant.
- 25. water hyacinth.
- The passage states an Argentinian weevil is being tried "for the eradication of water hyacinth." Eradication means wiping out. Paraphrase: "wiping out" = "eradication".Common trap: None significant.
- 26. rice fields.
- The passage states Salvinia molesta infests "about 30,000 hectares of rice fields in Kerala." It plagues rice fields. Paraphrase: "plagues" = "infested".Common trap: None significant.
- 27. True
- The passage states for taxonomy, "long series, from a single nest, which contain all castes... are desirable, to allow the determination of variation within species." This involves comparing members of one species/group. Paraphrase: "comparing members of one group" = "determination of variation within species".Common trap: None significant.
- 28. Not Given
- The passage mentions taxonomy and classification but never states that new species are frequently identified. No frequency information is provided. Paraphrase: "frequently identified" = not mentioned.Common trap: Frequency-omission conflation trap — taxonomy is mentioned but frequency of new discoveries isn't.
- 29. True
- The passage states "For ecological studies, the most important factor is collecting identifiable samples of as many of the different species present as possible." Range (number of different species) is the key criterion. Paraphrase: "range" = "as many of the different species present as possible"; "key criterion" = "the most important factor".Common trap: None significant.
- 30. False
- The passage states "Unfortunately, these methods are not always compatible" and gives examples of how taxonomists and ecologists collect differently. A single collection cannot generally serve both purposes. Paraphrase: "can generally be used for both" = contradicted by "not always compatible".Common trap: Reversed-truth trap — the methods are not compatible.
- 31. A
- The passage states "When possible, collections should be made from nests or foraging columns and at least 20 to 25 individuals collected." This ensures all are the same species. This is part of hand collecting. Paraphrase: "groups of ants" = "nests or foraging columns".Common trap: None significant.
- 32. C
- The passage states the leaf litter method "works especially well in rain forests and marshy areas." These are wet habitats. Paraphrase: "wet habitats" = "rain forests and marshy areas".Common trap: None significant.
- 33. B
- The passage states baits "attract species that are otherwise elusive." Elusive means hard to find. Paraphrase: "hard to find" = "elusive".Common trap: None significant.
- 34. D
- The passage states pitfall traps "can be used to collect over a period of time with minimal maintenance and intervention." Little time and effort are required. Paraphrase: "little time and effort" = "minimal maintenance and intervention".Common trap: None significant.
- 35. A
- The passage states specimens are "placed in plastic or glass tubes." Individual specimens are placed in separate containers. Paraphrase: "separate containers" = "plastic or glass tubes".Common trap: None significant.
- 36. D
- The passage states the preservative used in pitfall traps "is usually ethylene glycol or propylene glycol, as alcohol will evaporate quickly." Non-alcoholic preservative is used. Paraphrase: "non-alcoholic" = "ethylene glycol or propylene glycol" (not alcohol).Common trap: None significant.
- 37. heat
- The passage states leaf litter is placed "on a screen over a large funnel, often under some heat." The heat is what dries out the leaf litter from above. Paraphrase: blank = "heat".Common trap: None significant.
- 38. leaf litter
- The passage states "As the leaf litter dries from above, ants (and other animals) move downward." The leaf litter is what dries out. Paraphrase: blank = "leaf litter".Common trap: None significant.
- 39. screen
- The passage states the leaf litter is placed "on a screen over a large funnel." The screen sits above the funnel. Paraphrase: blank = "screen".Common trap: None significant.
- 40. alcohol
- The passage states ants "fall out the bottom and are collected in alcohol placed below the funnel." Paraphrase: blank = "alcohol".Common trap: None significant.
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