Finding Our Way - IELTS Reading Answers & Explanations
From IELTS Past Papers Academic Reading Test 17 · Part 2 · Questions 14–26
Reading Passage
You should spend about 20 minutes on Questions 14-26, which are based on Reading Passage 2 below.
Finding Our Way
A "Drive 200 yards, and then turn right,” says the car’s computer voice. You relax in the driver's seat, follow the directions and reach your destination without error. It’s certainly nice to have the Global Positioning System (GPS) to direct you to within a few yards of your goal. Yet if the satellite service's digital maps become even slightly outdated, you can become lost. Then you have to rely on the ancient human skill of navigating in three-dimensional space. Luckily, your biological finder has an important advantage over GPS: it does not go awry if only one part of the guidance system goes wrong, because it works in various ways. You can ask questions of people on the sidewalk. Or follow a street that looks familiar. Or rely on a navigational rubric: "If I keep the East River on my left, I will eventually cross 34th Street." The human positioning system is flexible and capable of learning. Anyone who knows the way from point A to point B—and from A to C—can probably figure out how to get from B to c, too.
B But how does this complex cognitive system really work? Researchers are looking at several strategies people use to orient themselves in space: guidance, path integration and route following. We may use all three or combinations thereof. And as experts learn more about these navigational skills, they are making the case that our abilities may underlie our powers of memory and logical thinking. Grand Central, Please Imagine that you have arrived in a place you have never visited-New York City. You get off the train at Grand Central Terminal in midtown Manhattan. You have a few hours to explore before you must return for your ride home. You head uptown to see popular spots you have been told about: Rockefeller Center, Central Park, the Metropolitan Museum of Art. You meander in and out of shops along the way. Suddenly, it is time to get back to the station. But how?
C If you ask passersby for help, most likely you will receive information in many different forms. A person who orients herself by a prominent landmark would gesture southward: "Look down there. See the tall, broad MetLife Building? Head for that “the station is right below it." Neurologists call this navigational approach "guidance," meaning that a landmark visible from a distance serves as the marker for one's destination.
D Another city dweller might say: "What places do you remember passing? ... Okay. Go toward the end of Central Park, then walk down to St. Patrick's Cathedral. A few more blocks, and Grand Central will be off to your left." In this case, you are pointed toward the most recent place you recall, and you aim for it. Once there you head for the next notable place and so on, retracing your path. Your brain is adding together the individual legs of your trek into a cumulative progress report. Researchers call this strategy "path integration." Many animals rely primarily on path integration to get around, including insects, spiders, crabs and rodents. The desert ants of the genus Cataglyphis employ this method to return from foraging as far as 100 yards away. They note the general direction they came from and retrace then steps, using the polarization of sunlight to orient themselves even under overcast skies. On their way back they are faithful to this inner homing vector. Even when a scientist picks up an ant and puts it in a totally different spot, the insect stubbornly proceeds in the originally determined direction until it has gone "back" all of the distance it wandered from its nest. Only then does the ant realize it has not succeeded, and it begins to walk in successively larger loops to find its way home.
E Whether it is trying to get back to the anthill or the train station, any animal using path integration must keep track of its own movements so it knows, while returning, which segments it has already completed. As you move, your brain gathers data from your environment—sights, sounds, smells, lighting, muscle contractions, a sense of time passing—to determine which way your body has gone. The church spire, the sizzling sausages on that vendor's grill, the open courtyard, and the train station—all represent snapshots of memorable junctures during your journey.
F In addition to guidance and path integration, we use a third method for finding our way. An office worker you approach for help on a Manhattan street comer might say: "Walk straight down Fifth, turn left on 47th, turn right on Park, go through the walkway under the Helmsley Building, then cross the street to the MetLife Building into Grand Central." This strategy, called route following, uses landmarks such as buildings and street names, plus directions-straight, turn, go through—for reaching intermediate points. Route following is more precise than guidance or path integration, but if you forget the details and take a wrong turn, the only way to recover is to backtrack until you reach a familiar spot, because you do not know the general direction or have a reference landmark for your goal. The route-following navigation strategy truly challenges the brain. We have to keep all the landmarks and intermediate directions in our head. It is the most detailed and therefore most reliable method, but it can be undone by routine memory lapses. With path integration, our cognitive memory is less burdened; it has to deal with only a few general instructions and the homing vector. Path integration works because it relies most fundamentally on our knowledge of our body's general direction of movement, and we always have access to these inputs. Nevertheless, people often choose to give route-following directions, in part because saying "Go straight that way!" just does not work in our complex, man-made surroundings.
G Road Map or Metaphor? On your next visit to Manhattan you will rely on your memory to get around. Most likely you will use guidance, path integration and route following in various combinations. But how exactly do these constructs deliver concrete directions? Do we humans have, as an image of the real world, a kind of road map in our heads—with symbols for cities, train stations and churches; thick lines for highways; narrow lines for local streets? Neurobiologists and cognitive psychologists do call the portion of our memory that controls navigation a "cognitive map." The map metaphor is obviously seductive: maps are the easiest way to present geographic information for convenient visual inspection. In many cultures, maps were developed before writing, and today they are used in almost every society. It is even possible that maps derive from a universal way in which our spatial-memory networks are wired.
H Yet the notion of a literal map in our heads may be misleading; a growing body of research implies that the cognitive map is mostly a metaphor. It may be more like a hierarchical structure of relationships. To get back to Grand Central, you first envision the large scale-that is, you visualize the general direction of the station. Within that system you then imagine the route to the last place you remember. After that, you observe your nearby surroundings to pick out a recognizable storefront or street comer that will send you toward that place. In this hierarchical, or nested, scheme, positions and distances are relative, in contrast with a road map, where the same information is shown in a geometrically precise scale.
Questions
Questions 14–18 Matching Features
Use the information in the passage to match the category of each navigation method (listed A-C) with correct statement.
NB you may use any letter more than once
A. Guidance
B. Path integration
C. Route following
Questions 19–21 One Choice
Choose the correct letter, A, B, C or D.
Questions 22–26 True / False / Not Given
Do the following statements agree with the information given in Reading Passage 2?
TRUE if the statement is true
FALSE if the statement is false
NOT GIVEN if the information is not given in the passage
Answers & Explanations Summary
| # | Answer | Evidence | Explanation |
|---|---|---|---|
| Q14 | B | Many animals rely primarily on path integration to get around, including insects, spiders, crabs and rodents. The desert ants of the genus Cataglyphis employ this method to return from foraging as far as 100 yards away. They note the general direction they came from and retrace then steps, using the polarization of sunlight to orient themselves even under overcast skies | Excerpt/Passage Explanation: The passage explains that animals like desert ants use "path integration" by remembering the direction they came from and using sunlight to know where to go. Answer Explanation: The answer "B" means that the navigation method called "path integration" matches the description of using the starting direction and sunlight to navigate. Reason For Correctness: The correct answer is B because Paragraph D describes how animals use the method of "path integration" to travel. Specifically, desert ants remember the general direction from their starting place ("general direction they came from") and use sunlight ("polarization of sunlight") to guide their way back. |
| Q15 | C | This strategy, called route following, uses landmarks such as buildings and street names, plus directions-straight, turn, go through—for reaching intermediate points | Excerpt/Passage Explanation: The passage explains that route following is a way of finding your way that combines specific places (like buildings and streets) with clear movement directions (like going straight or turning). Answer Explanation: The answer "C" means that the navigation method called "Route following" is the one that uses both specific locations and directional movements to reach a goal. Reason For Correctness: The correct answer is C because Paragraph F explains that "route following" relies on a combination of specific places (such as buildings and street names) and directional instructions (such as straight, turn, and go through) to guide a person step-by-step toward their destination. The words "landmarks such as buildings and street names" match "place", and "directions-straight, turn, go through" match "direction heading". |
| Q16 | A | A person who orients herself by a prominent landmark would gesture southward: "Look down there. See the tall, broad MetLife Building? Head for that “the station is right below it." Neurologists call this navigational approach "guidance," meaning that a landmark visible from a distance serves as the marker for one's destination | Excerpt/Passage Explanation: The passage explains that using a visible, well-known building to find a nearby place is a method called "guidance." Answer Explanation: The answer "A" means that the navigation method called "Guidance" involves finding your way by looking for a well-known building or landmark close to where you want to go. Reason For Correctness: The correct answer is A because Paragraph C defines "guidance" as using a clear and prominent landmark that can be seen from far away to mark where your destination is. In the text, a person gives directions to a train station by pointing at the tall "MetLife Building" directly above it, which matches the idea of using an iconic building near your destination for orientation. |
| Q17 | C | Route following is more precise than guidance or path integration, but if you forget the details and take a wrong turn, the only way to recover is to backtrack until you reach a familiar spot, because you do not know the general direction or have a reference landmark for your goal | Excerpt/Passage Explanation: The passage explains that when using the route following method, going the wrong way means you have to go back to a place you know in order to find the correct path again. Answer Explanation: The answer "C" refers to "Route following," which is a way of navigating where you must go back to a place you recognize if you make a wrong turn. Reason For Correctness: The correct answer is C because Paragraph F explains that in route following, if someone takes a wrong turn ("if a mistake happens"), the only way to fix it is to "backtrack" (retrace your steps) until reaching a "familiar spot" (a known place). |
| Q18 | B | In this case, you are pointed toward the most recent place you recall, and you aim for it. Once there you head for the next notable place and so on, retracing your path. Your brain is adding together the individual legs of your trek into a cumulative progress report. Researchers call this strategy "path integration." | Excerpt/Passage Explanation: The passage explains that in path integration, you travel toward the last place you remember passing and continue through other landmarks to retrace your path step by step. Answer Explanation: The answer B corresponds to "Path integration", which is the navigation method where a person goes back to a place they remember passing to help them find the way. Reason For Correctness: The correct answer is B because Paragraph D describes how a person navigates by recalling places they have passed. Specifically, it states that you aim for the "most recent place you recall" and then "head for the next notable place and so on, retracing your path" while your brain combines these parts into a cumulative report. Researchers explicitly call this method "path integration". Therefore, using a remembered or passed spot as a reference point to combine your journey's steps matches path integration. |
| Q19 | C | Even when a scientist picks up an ant and puts it in a totally different spot, the insect stubbornly proceeds in the originally determined direction until it has gone "back" all of the distance it wandered from its nest | Excerpt/Passage Explanation: The passage explains that if a person moves the ant to a new place, the insect still keeps walking in the same initial direction for the full distance it thinks it needs to travel to reach home. Answer Explanation: The answer means that the ant keeps walking in the same direction it had planned from the start. Reason For Correctness: The correct answer is C because Paragraph D describes what happens when a Cataglyphis ant is moved to another spot. The text states that even when placed in a completely different location, the ant "stubbornly proceeds in the originally determined direction." Here, the words "proceeds in the originally determined direction" have the same meaning as "Continues to move by the original orientation." |
| Q20 | D | Neurobiologists and cognitive psychologists do call the portion of our memory that controls navigation a "cognitive map." | Excerpt/Passage Explanation: The passage says that scientists give the name "cognitive map" to the part of our memory that directs and manages how we navigate. Answer Explanation: The answer means that the cognitive map is a part of our memory in the brain that helps us find our way. Reason For Correctness: The correct answer is D because paragraph G clearly states that scientists use the term "cognitive map" to describe the specific part of our memory that is responsible for navigation. Other options are incorrect because the passage explains that a cognitive map is different from a real map (it is mostly a metaphor and uses relative positions rather than a precise scale), can fail, and relates to universal human brain wiring rather than only existing in certain cultures. |
| Q21 | A | To get back to Grand Central, you first envision the large scale-that is, you visualize the general direction of the station. Within that system you then imagine the route to the last place you remember | Excerpt/Passage Explanation: The passage explains that to find your way back, your mind starts with a big-picture view by imagining the overall direction, and then pictures the path within that large area. Answer Explanation: The answer means that a cognitive map helps us picture a broad, general pathway or direction over a wide area. Reason For Correctness: The correct answer is supported by Paragraph H, which explains how our mental navigation map works. The text states that when finding your way, you first imagine the "large scale" by picturing the general direction of your destination, and then within that broader view, you imagine the path or route. Therefore, it functions by visualizing a route across a wide scope rather than giving exact, pinpoint measurements like a printed road map. |
| Q22 | TRUE | The human positioning system is flexible and capable of learning | Excerpt/Passage Explanation: The passage explains that our natural way of finding directions can easily change, adapt, and learn new ways to navigate. Answer Explanation: The answer "TRUE" means that it is correct to say that natural, human navigation is flexible and can adapt easily. Reason For Correctness: The correct answer is TRUE because Paragraph A clearly mentions that human navigation is flexible. The text describes our biological way of finding direction and states directly that "The human positioning system is flexible". This matches the statement in the question. |
| Q23 | NOT GIVEN | If you ask passersby for help, most likely you will receive information in many different forms | Excerpt/Passage Explanation: The passage explains that asking people on the street will give you directions in various styles, but it says nothing about whether people always react nicely or favorably. Answer Explanation: The answer "NOT GIVEN" means that the text does not mention whether people will always respond positively or react well when you ask them for directions. Reason For Correctness: The correct answer is "NOT GIVEN" because although the author mentions asking passersby for directions and getting information in different ways, the passage never discusses the emotional attitude, politeness, or "good reaction" of the people being asked. Because there is no information in the text to confirm or deny this statement, the answer must be NOT GIVEN. |
| Q24 | TRUE | As you move, your brain gathers data from your environment—sights, sounds, smells, lighting, muscle contractions, a sense of time passing—to determine which way your body has gone | Excerpt/Passage Explanation: The passage explains that while you are walking or traveling, your mind takes in many different types of sensory information from around you—such as what you see, hear, smell, and feel physically—to keep track of where you are going. Answer Explanation: The answer "TRUE" means that the statement accurately reflects the facts mentioned in the reading text. Reason For Correctness: The correct answer is TRUE because the passage explains that while a person or animal is traveling, the brain collects all kinds of sensory input from the surroundings. In Paragraph E, it states that the brain gathers environmental data including "sights, sounds, smells, lighting, muscle contractions, a sense of time passing". In the question, "collects comprehensive perceptional information in mind" matches the passage's description of the brain gathering these wide-ranging sensory details ("gathers data from your environment") while moving ("As you move"). |
| Q25 | FALSE | The route-following navigation strategy truly challenges the brain. We have to keep all the landmarks and intermediate directions in our head. It is the most detailed and therefore most reliable method, but it can be undone by routine memory lapses. With path integration, our cognitive memory is less burdened; it has to deal with only a few general instructions and the homing vector | Excerpt/Passage Explanation: The passage explains that route-following is very demanding for our memory and brain. In contrast, path integration puts less stress on our memory because it only needs simple instructions. Answer Explanation: The answer is FALSE because route-following is harder on the brain and memory, whereas path integration requires less mental effort. Reason For Correctness: The correct answer is FALSE because the passage explicitly states that route-following "truly challenges the brain" and forces us to hold many details in memory. In contrast, when using path integration, "our cognitive memory is less burdened" because it only deals with a few general directions. Therefore, path integration requires less thought or mental effort than route-following, contradicting the statement. |
| Q26 | FALSE | Yet the notion of a literal map in our heads may be misleading; a growing body of research implies that the cognitive map is mostly a metaphor | Excerpt/Passage Explanation: The passage means that thinking we have a real, exact map inside our brains is incorrect and not how our memory actually works. Answer Explanation: The answer FALSE means the statement contradicts or goes against what the text says. Reason For Correctness: The correct answer is FALSE because the passage explains that humans do not have a literal, geometrically precise map inside their brains. Instead, the idea of an exact inner map is misleading and mostly a metaphor. Our minds actually use a nested system of relative directions and relationships rather than an exact, scale map. |
