Memory And Age - IELTS Reading Answers & Explanations
From IELTS Past Papers Academic Reading Test 20 · Part 2 · Questions 14–27
Reading Passage
Read the text below and answer questions 14-27.
Memory and age
A Aging, it is now clear, is part of an ongoing maturation process that all our organs go through. "In a sense, aging is keyed to the level of vigor of the body and the continuous interaction between levels of body activity and levels of mental activity," reports Arnold B. Scheibel, M.D., whose very academic title reflects how once far-flung domains now converge on the mind and the brain. Scheibel is professor of anatomy, cell biology, psychiatry, and behavioral sciences at the University of California at Los Angeles, and director of the university's Brain Research Institute. Experimental evidence has backed up popular assumptions that the aging mind undergoes decay analogous to that of the aging body. Younger monkeys, chimps, and lower animals consistently outperform then older colleagues on memory tests. In humans, psychologists concluded, memory and other mental functions deteriorate over time because of inevitable organic changes m the brain as neurons die off. Mental decline after young adulthood appeared inevitable.
B Equipped with imaging techniques that capture the brain in action, Stanley Rapoport, Ph.D., at the National Institutes of Health, measured the flow of blood in the brains of old and young people as they went through the task of matching photos of faces. Since blood flow reflects neuronal activity, Rapoport could compare which networks of neurons were being used by different subjects. "Even when the reaction times of older and younger subjects were the same, the neural networks they used were significantly different. The older subjects were using different internal strategies to accomplish the same result in the same time," Rapoport says. Either the task required greater effort on the part of the older subjects or the work of neurons originally involved in tasks of that type had been taken over by other neurons, creating different networks.
C At the Georgia Institute of Technology, psychologist Timothy Salthouse, Ph.D., compared a group of very fast and accurate typists of college age with another group in their 60s. Since reaction time is faster in younger people and most people's fingers grow less nimble with age, younger typists might be expected to tap right along while the older ones fumble. But both typed 60 words a minute. The older typists it turned out, achieved their speed with cunning little strategies that made them far more efficient than their younger counterparts: They made fewer finger movements, saving a fraction of a second here and there. They also read ahead in the text. The neural networks involved in typing appear to have been reshaped to compensate for losses in motor skills or other age changes.
D "When a rat is kept in isolation without playmates or objects to interact with, the animal's brain shrinks, but if we put that rat with 11 other rats in a large cage and give them an assortment of wheels, ladders, and other toys, we can show—after four days— significant differences in its brain," says Diamond, professor of integrative biology. Proliferating dendrites first appear in the visual association areas. After a month in the enriched environment, the whole cerebral cortex has expanded, as has its blood supply. Even in the enriched environment, rats get bored unless the toys are varied. "Animals are just like we are. They need stimulation," says Diamond.
One of the most profoundly important mental functions is memory - notorious for its failure with age. So important is memory that the Charles A. Dana Foundation recently spent $8.4 million to set up a consortium of leading medical centers to measure memory loss and aging through brain-imaging technology, neurochemical experiments, and cognitive and psychological tests. One thing, however, is already fairly clear—many aspects of memory are not a function of age at all but of education. Memory exists in more than one form, what we call knowledge-facts—is what psychologists such as Harry p. Bahrick, Ph.D., of Ohio Wesleyan University calls semantic memory. Events, conversations, and occurrences in time and space, on the other hand, make up episodic or event memory, which is triggered by cues from the context. If you were around in 1963 you don't need to be reminded of the circumstances surrounding the moment you heard that JFK had been assassinated. That event is etched into your episodic memory.
E When you forget a less vivid item, like buying a roll of paper towels at the supermarket, you may blame it on your aging memory. It's true that episodic memory begins to decline when most people are in their 50s, but it's never perfect at any age. "Every memory begins as an event," says Bahrick. "Through repetition, certain events leave behind a residue of knowledge, or semantic memory. On a specific day in the past, somebody taught you that two and two are four, but you've been over that information so often you don't remember where you learned it. What started as an episodic memory has become a permanent part of your knowledge base." You remember the content, not the context. Our language knowledge, our knowledge of the world and of people, is largely that permanent or semipermanent residue.
F Probing the longevity of knowledge, Bahrick tested 1,000 high school graduates to see how well they recalled their algebra. Some had completed the course as recently as a month before, others as long as 50 years earlier. He also determined how long each person had studied algebra, the grade received, and how much the skill was used over the course of adulthood. Surprisingly, a person's grasp of algebra at the time of testing did not depend on how long ago he'd taken the course—the determining factor was the duration of instruction. Those who had spent only a few months learning algebra forgot most of it within two or three years.
G In another study, Bahrick discovered that people who had taken several courses in Spanish, spread out over a couple of years, could recall, decades later, 60 percent or more of the vocabulary they learned. Those who took just one course retained only a trace after three years. "This long-term residue of knowledge remains stable over the decades, independent of the age of the person and the age of the memory. No serious deficit appears until people get to their 50s and 60s, probably due to the degenerative processes of aging rather than a cognitive loss."
H "You could say metamemory is a byproduct of going to school," says psychologist Robert Kail, Ph.D, of Purdue University, who studies children from birth to 20 years, the time of life when mental development is most rapid. "The question-and-answer process, especially exam-taking, helps children learn-and also teaches them how then memory works This may be one reason why, according to a broad range of studies in people over 60, the better educated a person is, the more likely they are to perform better in life and on psychological tests. A group of adult novice chess players were compared with a group of child experts at the game. In tests of then ability to remember a random series of numbers, the adults, as expected, outscored the children. But when asked to remember the patterns of chess pieces arranged on a board, the children won. "Because they'd played a lot of chess, their knowledge of chess was better organized than that of the adults, and then existing knowledge of chess served as a framework for new memory," explains Kail.
I Specialized knowledge is a mental resource that only improves with time. Crystallized intelligence about one's occupation apparently does not decline at all until at least age 75, and if there is no disease or dementia, may remain even longer, special knowledge is often organized by a process called "chunking." If procedure A and procedure B are always done together, for example, the mind may merge them into a single command. When you apply yourself to a specific interest-say, cooking—you build increasingly elaborate knowledge structures that let you do more and do it better. This ability, which is tied to experience, is the essence of expertise. Vocabulary is one such specialized form of accrued knowledge. Research clearly shows that vocabulary improves with time. Retired professionals, especially teachers and journalists, consistently score higher on tests of vocabulary and general information than college students, who are supposed to be in their mental prime.
Questions
Questions 14–17 One Choice
Choose the correct letter, A, B, C or D.
Questions 18–23 Summary Completion
Complete the following summary of the paragraphs of Reading Passage, using no more than two words from the Reading Passage for each answer.
It's long been known that as one significant mental function, 18 deteriorates with age. Charles A. Dana foundation invested millions of dollars to test memory decline. They used advanced technology, neurochemical experiments and ran several cognitive and 19 experiments. Bahrick called one form "20", which describes factual knowledge. Another one called "21" contains events in time and space format. He conducted two experiments toward to knowledge memory's longevity, he asked 1000 candidates some knowledge of 22, some could even remember it decades ago. Second research of Spanish course found that multiple courses participants could remember more than half of 23 they learned after decades, whereas single course taker only remembered as short as 3 years.
Questions 24–27 Matching Features
Use the information in the passage to match the people (listed A-F) with opinions or deeds below. Write the appropriate letters A-F in your answer.
A. Harry p. Bahrick
B. Arnold B. Scheibel
C. Marion Diamond
D. Timothy Salthouse
E. Stanley Rapport
F. Robert Kail
Answers & Explanations Summary
| # | Answer | Evidence | Explanation |
|---|---|---|---|
| Q14 | C | The older typists it turned out, achieved their speed with cunning little strategies that made them far more efficient than their younger counterparts: They made fewer finger movements, saving a fraction of a second here and there | Excerpt/Passage Explanation: The passage explains that older typists were able to type just as fast by using smart, helpful methods that allowed them to work with greater efficiency than younger typists. Answer Explanation: The answer means that older typists worked well and quickly because they used clever methods and techniques learned from experience. Reason For Correctness: The correct answer is C because Paragraph C explains a study comparing young typists with typists in their 60s. The text reveals that older typists matched the typing speed of younger ones by using "cunning little strategies" (clever, seasoned tactics)—such as reading ahead and reducing finger movements—which made them "far more efficient than their younger counterparts." |
| Q15 | D | "When a rat is kept in isolation without playmates or objects to interact with, the animal's brain shrinks, but if we put that rat with 11 other rats in a large cage and give them an assortment of wheels, ladders, and other toys, we can show—after four days— significant differences in its brain," says Diamond, professor of integrative biology | Excerpt/Passage Explanation: The passage explains that an isolated rat without toys or friends experiences brain shrinkage, but a rat placed in a big cage with other rats and many toys shows clear brain growth after just a few days. Answer Explanation: The answer means that the environment around a rat—whether it is empty and dull or rich and full of things to play with—changes how its brain grows and develops. Reason For Correctness: The correct answer is D because Paragraph D explains what happens to rats in different environments. When a rat lives alone in a boring cage without playmates or toys, its brain shrinks. However, when rats live together in a cage with many different toys and activities (a complex and stimulating environment), their brains expand and grow more connections. This shows that boring surroundings cause brain decline, while rich and complex surroundings promote brain development. |
| Q16 | B | "Because they'd played a lot of chess, their knowledge of chess was better organized than that of the adults, and then existing knowledge of chess served as a framework for new memory," explains Kail | Excerpt/Passage Explanation: The passage explains that the children were able to remember chess patterns better because they had played so much chess, which allowed them to organize and store their chess knowledge much better than the adults. Answer Explanation: The answer means that the children had a better and clearer structure for their chess knowledge than the adult beginners did. Reason For Correctness: The correct answer is B because the passage explicitly explains the reason the child chess experts won when remembering patterns of chess pieces on a board. Robert Kail explains that since the children had played a lot of chess, "their knowledge of chess was better organized than that of the adults." Therefore, the conclusion about the group of children is that their chess knowledge organization was superior. |
| Q17 | C | Crystallized intelligence about one's occupation apparently does not decline at all until at least age 75, and if there is no disease or dementia, may remain even longer, special knowledge is often organized by a process called "chunking." If procedure A and procedure B are always done together, for example, the mind may merge them into a single command. When you apply yourself to a specific interest-say, cooking—you build increasingly elaborate knowledge structures that let you do more and do it better. This ability, which is tied to experience, is the essence of expertise. Vocabulary is one such specialized form of accrued knowledge. Research clearly shows that vocabulary improves with time | Excerpt/Passage Explanation: The passage explains that crystallized intelligence stays strong and does not decline until at least age 75. It then gives vocabulary as an example of this accumulated knowledge and notes that vocabulary actually gets better over time. Answer Explanation: The answer means that the author mentions vocabulary to show that vocabulary knowledge, which is a type of crystallized intelligence, does not easily decrease as people get older. Reason For Correctness: The correct answer is C because in Paragraph I, the author discusses "crystallized intelligence" and explains that it "does not decline at all until at least age 75." The text then introduces "vocabulary" as an example of this kind of accumulated specialized knowledge, stating that "vocabulary improves with time" and that older, retired professionals often score higher than younger college students on vocabulary tests. This shows that vocabulary knowledge stays strong and resists decline with age. |
| Q18 | memory | One of the most profoundly important mental functions is memory-notorious for its failure with age | Excerpt/Passage Explanation: The passage explains that memory is one of our most important brain functions, but it is well-known for getting worse and failing as a person gets older. Answer Explanation: The answer "memory" refers to the brain's ability to store, keep, and remember information and past experiences. Reason For Correctness: The correct answer is "memory" because the text directly identifies it as a key mental ability that is famous for becoming worse as people grow older. In the passage, "profoundly important mental functions" matches the phrase "significant mental function" in the summary, and "failure with age" matches "deteriorates with age." |
| Q19 | psychological | So important is memory that the Charles A. Dana Foundation recently spent $8.4 million to set up a consortium of leading medical centers to measure memory loss and aging through brain-imaging technology, neurochemical experiments, and cognitive and psychological tests | Excerpt/Passage Explanation: The passage explains that an organization funded research centers to examine memory loss in aging people using brain scans, chemistry tests, as well as cognitive and psychological testing. Answer Explanation: The answer "psychological" refers to things related to the human mind, mental processes, and human behavior. Reason For Correctness: The correct answer is "psychological" because the summary discusses how the Charles A. Dana Foundation tested memory loss and aging. The text states that they measured this through "brain-imaging technology, neurochemical experiments, and cognitive and psychological tests." In the summary sentence, "cognitive and [input] experiments" matches "cognitive and psychological tests" from the passage. |
| Q20 | semantic memory | Memory exists in more than one form, what we call knowledge-facts—is what psychologists such as Harry p. Bahrick, Ph.D., of Ohio Wesleyan University calls semantic memory | Excerpt/Passage Explanation: The passage explains that memory comes in different types, and the psychologist Harry P. Bahrick uses the term "semantic memory" to describe the memory used for facts and knowledge. Answer Explanation: The answer refers to the specific kind of memory that stores facts, concepts, and general knowledge about the world. Reason For Correctness: The correct answer is supported by the text where Harry P. Bahrick defines different types of memory. The summary statement refers to the type of memory that Bahrick named for storing "factual knowledge." In the passage, the author states that "what we call knowledge-facts—is what psychologists such as Harry p. Bahrick, Ph.D., of Ohio Wesleyan University calls semantic memory." Therefore, "semantic memory" correctly fills the blank. |
| Q21 | episodic memory | Events, conversations, and occurrences in time and space, on the other hand, make up episodic or event memory, which is triggered by cues from the context | Excerpt/Passage Explanation: The passage explains that our memories of specific events, conversations, and happenings connected to a particular time and setting are called episodic memory (or event memory). Answer Explanation: The answer refers to the type of memory that remembers past experiences, events, and personal moments linked to a specific time and place. Reason For Correctness: The correct answer is supported by Paragraph D (under the subsection without a letter). The summary notes that this form of memory "contains events in time and space format." The text directly states that "Events, conversations, and occurrences in time and space, on the other hand, make up episodic or event memory". Therefore, "episodic memory" is the correct term to complete the sentence. |
| Q22 | algebra | Probing the longevity of knowledge, Bahrick tested 1,000 high school graduates to see how well they recalled their algebra | Excerpt/Passage Explanation: The passage explains that to study how long knowledge lasts, Bahrick tested 1,000 people who finished high school to check what they still remembered about algebra. Answer Explanation: The answer "algebra" is a type of mathematics that uses letters and symbols to represent numbers in equations. Reason For Correctness: The correct answer is "algebra" because Paragraph F explains that researcher Bahrick tested 1,000 high school graduates to examine how well they remembered their "algebra". The summary mentions testing 1,000 candidates on their knowledge of this subject. |
| Q23 | vocabulary | In another study, Bahrick discovered that people who had taken several courses in Spanish, spread out over a couple of years, could recall, decades later, 60 percent or more of the vocabulary they learned | Excerpt/Passage Explanation: The passage explains that in a study about learning Spanish, people who took several classes over a couple of years remembered at least 60 percent of the words (vocabulary) decades later. Answer Explanation: The answer means the words of a language that a person knows and learns. Reason For Correctness: The correct answer is "vocabulary" because Paragraph G describes Bahrick's second study involving Spanish courses. In this study, people who took multiple Spanish classes over a few years were able to remember "60 percent or more" (which means more than half) of the "vocabulary" they had learned, even decades later. |
| Q24 | E | Equipped with imaging techniques that capture the brain in action, Stanley Rapoport, Ph.D., at the National Institutes of Health, measured the flow of blood in the brains of old and young people as they went through the task of matching photos of faces | Excerpt/Passage Explanation: The passage explains that Stanley Rapoport looked at how blood moved inside the brains of both young and old people while they were completing a photo-matching activity. Answer Explanation: The answer identifies option E (Stanley Rapport / Rapoport) as the scientist who checked blood flow in the brains of younger and older participants during a test. Reason For Correctness: The correct answer is E because paragraph B explicitly mentions that Stanley Rapoport used brain imaging to measure the flow of blood in the brains of younger and older individuals while they performed a face-matching test. Key terms from the statement match the passage directly: "Examined" corresponds to "measured", "both young and old" corresponds to "old and young people", "blood circulation of brain" corresponds to "the flow of blood in the brains", and "while testing" corresponds to "as they went through the task of matching photos of faces". |
| Q25 | B | "In a sense, aging is keyed to the level of vigor of the body and the continuous interaction between levels of body activity and levels of mental activity," reports Arnold B. Scheibel, M.D | Excerpt/Passage Explanation: The passage explains that, according to Arnold B. Scheibel, getting older is tied to how energetic the body is and how body activity and brain activity continuously affect each other. Answer Explanation: The answer B corresponds to Arnold B. Scheibel. Reason For Correctness: The correct answer is B because paragraph A explicitly quotes Arnold B. Scheibel explaining that aging relates directly to body vigor and the ongoing connection or interaction between physical (body) activity and mental activity. |
| Q26 | A | "Every memory begins as an event," says Bahrick. "Through repetition, certain events leave behind a residue of knowledge, or semantic memory. On a specific day in the past, somebody taught you that two and two are four, but you've been over that information so often you don't remember where you learned it. What started as an episodic memory has become a permanent part of your knowledge base." | Excerpt/Passage Explanation: The passage explains through Bahrick's words that repeating information from past events turns those experiences into permanent, general knowledge (semantic memory) that stays with you forever. Answer Explanation: The answer "A" means that Harry P. Bahrick is the person connected to the idea that repeating an event helps turn it into long-lasting semantic memory. Reason For Correctness: The correct answer is A because Paragraph E specifically quotes Bahrick explaining how memory works. He states that when an event is repeated many times ("through repetition"), it creates a lasting "residue of knowledge, or semantic memory" that becomes a "permanent part of your knowledge base" rather than disappearing or fading away. |
| Q27 | C | "When a rat is kept in isolation without playmates or objects to interact with, the animal's brain shrinks, but if we put that rat with 11 other rats in a large cage and give them an assortment of wheels, ladders, and other toys, we can show—after four days— significant differences in its brain," says Diamond, professor of integrative biology | Excerpt/Passage Explanation: The passage explains that professor Diamond found that placing a rat in a large cage with other rats and different toys caused its brain to grow and change significantly compared to being kept alone. Answer Explanation: The answer "C" matches the statement with Marion Diamond. Reason For Correctness: The correct answer is C because Paragraph D discusses the research of professor Diamond, who showed that when a rat is placed in an enriched, diverse environment (with other rats and various toys like wheels and ladders), its brain develops significantly, showing expanding cerebral cortex and proliferating dendrites. |
