IELTS Reading Decoding: Bathymetry – Full Translation & Answer Key

Bathymetry is a fascinating scientific topic that frequently appears in IELTS Reading tests. This passage not only provides insights into geography and the history of ocean exploration but also features a wealth of academic vocabulary related to technology and the environment.

In this article, ECE will delve into the reading passage, analyze key vocabulary, and provide a detailed breakdown of each answer to help you optimize your IELTS preparation.

IELTS Reading Passage: Bathymetry

Below is the original reading passage and its accompanying questions. Try to complete them yourself before checking the answer key.

Bathymetry

A. The sea floor is often treated as the last frontier on earth, as it is still largely unexplored territory. Bathymetry, also known as the study of the seafloor, involves mapping and measuring the depths of the underwater world. Much of the ocean floor remains unmapped today. This is because collecting bathymetric data in the deep sea is a time-consuming and complex task.

B. Two hundred years ago, most people assumed that the ocean floor resembled a beach or shore. During the 19th century, attempts to map the seafloor consisted of lowering heavy fishing lines from a boat and waiting for the line’s tension to change. Water depth was determined by measuring the slack when the handline touched the seabed. Each of these measurements was called a sounding, and thousands of soundings had to be made to get a rough measurement of a small portion of the ocean floor. In addition to depth estimates, these surveys helped identify major vessel hazards, especially near shore. A Naval officer published the first evidence of seamounts in 1855 in a bathymetric chart.

C. During World War I, scientists developed techniques to measure sound waves in the ocean. The Anti-Submarine Detection and Invention Committee (ASDICs) was the original name for these underwater acoustic projectors, but by World War II the United States and many other countries had adopted the term sonar. Sonar, short for Sound, Navigation, and Ranging, was first used to detect icebergs and submarines. By calculating the time it takes for a sound signal to reflect back to the original source, sonar was able to measure the depth of the ocean and the depth of objects within it. The first sonars were passive systems that could only receive sound waves. In the 1930s, a single beam sonar was used to transmit sound waves in a vertical line from the ship to the seafloor. Sound waves were recorded as they returned to the ship from the surface. However, this type of sonar was more useful for detecting underwater objects than for mapping the sea bed. During World War II, technology improved and active sonar systems were used that both received and produced sound waves. It was the invention of acoustic transducers and acoustic projectors that gave way to this modern sonar. A new system has made it possible to identify specific substances such as rocks and mud. Because mud absorbs a significant portion of the acoustic signal, it provided a much weaker echo than rock, which reflects much of the sound wave.

D. Hull-mountable multi-beam sonars were developed in the 1960s. With this type of sonar, multiple beams can be fixed at different positions to study larger areas of the ocean. Maps created using multibeam sonar helped explain the formation of ridges and rifts such as the Ring of Fire and the Mid-Ocean Ridge. The Ring of Fire is the zone that surrounds the Pacific Ocean and is famous for its seismic activity. Stretching from the coast of New Zealand to the coasts of the Americas, this region is home to more than 75% of the world’s active and dormant volcanoes. The mid-ocean ridge is part of a seamount that is 12,000 feet high and 1,200 miles wide. These mountains, which zigzag around the continent, are widely considered to be the most prominent topographic features on Earth.

E. Another modern step forward in the field of bathymetry was the invention of the side-scan sonar. This kind of sonar is pulled by cables, which lets it send and receive sound waves over a large area of the seafloor at much lower angles than the multi-beam sonar. Side-scan sonar is useful because it can discover very specific features over a large area. Satellite data from space is the most modern way to do bathymetry, but it is also the least accurate. In the 1970s, this method started to be used. Radar altimeters that pick up echoes from the sea surface are used for this kind of mapping. These signals find out how far away the satellite is from the ocean floor. But Unfortunately, electromagnetic waves often slow down as they travel through the atmosphere because of water vapour and ionization. As a result, the satellite gets the wrong measurements. Using satellites to map the ocean is helpful because they can take pictures of the entire globe, even the places on earth that haven’t been measured by sonar yet. At the moment, satellite altimetry is mostly used to find places where detailed sonar measurements need to be done.

F. The topography of the seafloor is always changing because of the constant flux of plate activity. Scientists think that bathymetry will become one of the most important fields of study as people look for new energy sources and other ways to send and receive messages. A precise map of the seafloor will also be needed to protect the ocean’s ecosystem in the future.

Questions 1 – 6

Complete the table below. Write NO MORE THAN THREE WORDS.

MAPPING THE OCEAN FLOOR

Method First used  Used for How to work
Weighted line 1_________ Determining 2________ Drop a line until it hits the bottom
3________ 1930s Detecting objects underwater Send 4________ to ocean floor
Multi-beam sonar 5_________ Mapping larger areas of the different directions Send multiple sound waves in
Satellite altimetry 1970s Taking pictures of 6_______ Send signals from satellite

Questions 7 – 10

Match each description below with the ocean region that it describes. In boxes 7-10 on your Answer Sheet, write
1.   if it describes the Ring of Fire
2.   if it describes the Mid-Ocean Ridge
7. It is known for the earthquakes that occur there.
8. It is over one thousand miles wide.
9. It is a mountain range.
10. It contains the majority of the earth’s volcanoes.

Questions 11 – 13

The list below gives some possible reasons for mapping the ocean floor.
Which THREE of these reasons are mentioned in the reading passage?
Write the appropriate Roman numerals i-vi in boxes 11-13 on your Answer Sheet.

i.   Predicting earthquakes
ii.  Finding new fuel resources
iii. Protecting ocean life
iv. Understanding weather patterns
v.  Improving communications systems
vi. Improving the fishing industry

Summary of the Reading Passage

The passage discusses the history and development of bathymetry (the measurement of ocean depths).

  • The Beginning: In the 19th century, humans measured ocean depth manually using weighted lines. This method was time-consuming and only provided rough results.

  • The Development of Sonar: World War I and II spurred the creation of sonar (Sound Navigation and Ranging). From early passive systems, technology advanced to “single beam sonar” in the 1930s to detect underwater objects.

  • Modern Technology: The 1960s saw the birth of “multi-beam sonar,” which helped map larger areas and explain geographical phenomena like the Ring of Fire and the Mid-Ocean Ridge. Later, side-scan sonar and satellite altimetry in the 1970s allowed for global observation, although satellite accuracy remains limited by atmospheric interference.

  • The Future: Bathymetry is becoming increasingly important for finding new energy sources, improving telecommunications, and protecting marine ecosystems.

Key Vocabulary Summary

  • Bathymetry (n): The measurement of depth of water in oceans, seas, or lakes.

  • Seabed / Seafloor (n): The bottom of the ocean.

  • Sounding (n): A measurement of the depth of water.

  • Sonar (n): A system for the detection of objects under water by emitting sound pulses (acronym for Sound, Navigation, and Ranging).

  • Transducer (n): A device that converts variations in a physical quantity, such as pressure or brightness, into an electrical signal, or vice versa.

  • Topography (n): The arrangement of the natural and artificial physical features of an area.

  • Seismic activity (n): Earthquakes or other vibrations of the earth.

  • Dormant (adj): Having normal physical functions suspended or slowed down for a period of time (used for inactive volcanoes).

Answer Key and Detailed Explanations

Below is a detailed explanation to help you understand why these answers were chosen.

1. 19th Century

  • Location: Paragraph B, line 2: “During the 19th century, attempts to map the seafloor consisted of unloading heavy fishing lines…”

  • Explanation: The passage clearly states that attempts to map the seafloor using weighted lines occurred during the 19th century.

2. Depth

  • Location: Paragraph B, line 4: “Water depth was determined by measuring the slack…”

  • Explanation: Weighted lines (handlines) were used to determine the depth of the water when they touched the bottom.

3. Single beam sonar

  • Location: Paragraph C, line 8: “In the 1930s, a single beam sonar was used to transmit sound waves…”

  • Explanation: In the 1930s, the device used was “single beam sonar.”

4. Sound waves

  • Location: Paragraph C, lines 8-9: “…transmit sound waves in a vertical line from the ship to the seafloor.”

  • Explanation: The mechanism of single beam sonar involves transmitting sound waves down to the seafloor.

5. 1960s

  • Location: Paragraph D, line 1: “Hull-mountable multi-beam sonars were developed in the 1960s.”

  • Explanation: Multi-beam sonar was developed in the 1960s.

6. Entire globe / Earth

  • Location: Paragraph E, line 11: “…they can take pictures of the entire globe, even the places on earth…”

  • Explanation: The benefit of satellites is their ability to capture images of the entire globe, including areas not yet measured by sonar.

Questions 7-10: Matching (Ocean Regions)

Key: 1 = Ring of Fire; 2 = Mid-Ocean Ridge

7. 1 (Ring of Fire)

  • Question: It is known for the earthquakes that occur there.

  • Explanation: Paragraph D states: “The Ring of Fire… is famous for its seismic activity.” (Seismic activity is synonymous with earthquakes).

8. 2 (Mid-Ocean Ridge)

  • Question: It is over one thousand miles wide.

  • Explanation: Paragraph D states: “The mid-ocean ridge… is 12,000 feet high and 1,200 miles wide.” (1,200 miles > 1,000 miles).

9. 2 (Mid-Ocean Ridge)

  • Question: It is a mountain range.

  • Explanation: Paragraph D describes the Mid-Ocean Ridge as: “These mountains, which zigzag around the continent…”

10. 1 (Ring of Fire)

  • Question: It contains the majority of the earth’s volcanoes.

  • Explanation: Paragraph D states: “…this region is home to more than 75% of the world’s active and dormant volcanoes.” (75% corresponds to “majority”).

Questions 11 – 13: Multiple Choice (Reasons)

11. ii (Finding new fuel resources)

  • Explanation: Paragraph F states: “…as people look for new energy sources…” (New energy sources is equivalent to fuel resources).

12. iii (Protecting ocean life)

  • Explanation: Paragraph F, last sentence: “…needed to protect the ocean’s ecosystem in the future.” (Protecting the ocean’s ecosystem is equivalent to protecting ocean life).

13. v (Improving communications systems)

  • Explanation: Paragraph F states: “…and other ways to send and receive messages.” (Sending and receiving messages relates directly to communications systems).

The Bathymetry passage is an excellent resource for practicing IELTS Reading skills like Table Completion and Matching. Understanding these geographical and technological terms will not only help you perform better on the test but also broaden your general knowledge.

We hope this detailed analysis from ECE English has helped you master the content and strategies for this reading passage. Stay tuned for our upcoming articles for more high-quality IELTS preparation materials!

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The key is to grasp the context, master the technical terminology, and understand how to apply this knowledge to your study goals or decision-making. Bathymetry is a fascinating scientific topic that frequently appears in IELTS Reading tests. This passage not only provides insights into geography and history...
Focus on understanding the core context, key terminology, and how to apply these concepts to your learning objectives. Bathymetry is an engaging scientific subject often featured in IELTS Reading exams. This passage offers valuable knowledge regarding geography, history, and more...
It is important to understand the context in which these terms are used and how they relate to your specific learning goals. Bathymetry is a common scientific theme in IELTS Reading. This passage provides a great opportunity to expand your academic vocabulary related to geography, history, and scientific research...
We recommend reading through each section systematically, taking notes on the main ideas, practicing with the provided examples, and cross-referencing them with your IELTS/SAT preparation goals or general English learning needs.
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