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A Chronicle of Timekeeping - IELTS Reading Passage with Questions & Answers

Updated on 09 February, 2024

upGrad Abroad Team

upGrad Abroad Team

upGrad abroad Editorial Team

Introduction:

The measurement of time has been a human preoccupation since ancient civilizations first observed the celestial dance of the sun, moon, and stars. This passage explores the fascinating chronicle of timekeeping, from sundials to atomic clocks, and its profound impact on society. It's an insightful journey through time crafted to bolster your IELTS Reading preparation with engaging content and thoughtful questions.

Passage:

Since the dawn of civilization, humanity has sought to measure and keep track of time. The earliest timekeeping devices, sundials, relied on the sun's position in the sky, casting shadows that indicated the hour of the day. As societies evolved, so did timekeeping methods, marking the passage of time with increasing precision and complexity.

The invention of the water clock, or clepsydra, in ancient Egypt marked a significant advancement. These clocks used the steady flow of water to measure time, unaffected by the sun's absence at night or on cloudy days. However, the search for accuracy persisted, leading to the development of mechanical clocks in the 14th century, which utilized gears and escapement mechanisms.

The pendulum clock, introduced by Christiaan Huygens in the 17th century, was revolutionary. With its rhythmic swinging, the pendulum offered remarkable precision, transforming timekeeping practices in homes and scientific studies. Yet, the pursuit of even greater accuracy led to the quartz clock in the 20th century, which harnessed the stable vibration of quartz crystals under electric currents.

Today, atomic clocks, which measure the vibrations of atoms, are the pinnacle of precision, vital for GPS technology and international time standards. The chronicle of timekeeping is not just a technical tale; it's a narrative that reflects our relentless quest to comprehend and quantify the very fabric of existence—time itself.

Questions:

Q1. What was the primary method of timekeeping in ancient civilizations?

A. Water clocks

B. Mechanical clocks

C. Sundials

D. Atomic clocks

Q2. Which advancement in timekeeping was developed in ancient Egypt?

A. The sundial

B. The water clock

C. The pendulum clock

D. The quartz clock

Q3. Fill in the blank: The invention of ______ in the 14th century was a significant leap in timekeeping technology.

(A. mechanical clocks, B. sundials, C. atomic clocks, D. water clocks)

Q4. Who introduced the pendulum clock?

A. Albert Einstein

B. Isaac Newton

C. Galileo Galilei

D. Christiaan Huygens

Q5. True or False: Quartz clocks operate on the principle of atomic vibrations.

(Options: True, False)

Q6. Fill in the blank: Atomic clocks are essential for the functioning of ______.

(A. sundials, B. GPS technology, C. water clocks, D. mechanical clocks)

Q7. What drives the operation of a quartz clock?

A. The flow of water

B. The position of the sun

C. The vibration of quartz crystals

D. The swinging of a pendulum

Q8. True or False: Mechanical clocks were less accurate than water clocks.

(Options: True, False)

Q9. Fill in the blank: The ______ clock was a breakthrough due to its rhythmic swinging and improved precision.

(A. quartz, B. atomic, C. pendulum, D. water)

Q10. What is the ultimate goal that has driven the evolution of timekeeping devices?

A. Artistic expression

B. Historical documentation

C. Precision and accuracy

D. Economic profit

Answers & Explanations:

A1. C. Sundials

Explanation: Ancient civilizations primarily used sundials for timekeeping, utilizing the position of the sun to cast shadows that denoted the time of day.

A2. B. The water clock

Explanation: The water clock, or clepsydra, was an Egyptian innovation that allowed time measurement independent of the solar cycle.

A3. A. mechanical clocks

Explanation: The 14th century saw the development of mechanical clocks, which represented a significant technological leap from previous timekeeping methods.

A4. D. Christiaan Huygens

Explanation: Christiaan Huygens was the inventor of the pendulum clock in the 17th century, which greatly increased the accuracy of time measurement.

A5. False

Explanation: Quartz clocks operate using the stable vibration of quartz crystals under electric currents, not atomic vibrations.

A6. B. GPS technology

Explanation: Atomic clocks, with their extreme precision, are crucial for the accurate functioning of GPS technology.

A7. C. The vibration of quartz crystals

Explanation: Quartz clocks function based on the consistent vibration of quartz crystals when subjected to an electric current.

A8. False

Explanation: Mechanical clocks, with their gears and escapement mechanisms, were more accurate than the earlier water clocks.

A9. C. pendulum

Explanation: The pendulum clock was a significant advancement due to its rhythmic swinging, which allowed for greater precision in timekeeping.

A10. C. Precision and accuracy

Explanation: The continuous goal driving the evolution of timekeeping has been the desire for more precision and accuracy in measuring time.

Tips for Cracking the IELTS Reading Exam:

Tip 1: Skim the passage first to get a general understanding before diving into the questions.

Tip 2: Look for keywords in the questions that will guide you to the relevant part of the passage.

Tip 3: Practice reading a variety of texts on different subjects to broaden your vocabulary and comprehension skills.

Tip 4: Don’t spend too much time on one question. If you’re unsure, move on and come back to it later.

Tip 5: Develop the habit of inferring meanings from context, which can help you understand difficult words or phrases within the passage.

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