- Humans have been studying total solar eclipses for millennia to better understand the cosmos.
- Total eclipses have helped prove Einstein’s theory of relativity and led to the discovery of helium.
- Here are seven instances where total solar eclipses have helped advanced our grasp on science.
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On April 8, millions of people across the US will all do the same thing: look up.
In the middle of the afternoon, day will shift to night, as a total solar eclipse touches 15 states.
We know now what causes a total solar eclipse. But our ancient ancestors from millennia ago weren’t so certain, and that was bad news for some scientists.
In the 21st century BCE, China’s emporer reportedly had two astronomers beheaded for not predicting a total eclipse.
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Over the centuries, total eclipses became less dire and more of an opportunity to test scientific theories and forge new discoveries.
Here are seven times a total solar eclipse has helped advance human science.
1. Measuring Earth’s rotation
Some of the earliest suspected records of eclipses date back thousands of years.
Some experts have suggested petroglyphs or rock carvings found on a monument in Ireland reference an eclipse that took place on November 30 in the year 3,340 BCE. Others have expressed skepticism.
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Human-made markings on tortoise shells from China and a Babylonian tablet from over 3,000 years ago may also contain ancient references to eclipses.
Though these records are open to interpretation, scholars have studied historical descriptions of eclipses for centuries. It’s how 18th-century astronomer Edmond Halley first realized the Earth’s rotation has slowed over millennia.
2. Discovering what causes eclipses
Two modern scholars give Greek philosopher Anaxagoras of Clazomenae credit for figuring out the moon’s role in eclipses, calling him “perhaps the first empirical astronomer.”
He likely developed his theories after witnessing an annular, or “ring of fire,” eclipse on February 17, 478 BCE. While he got some of the science right, his overall understanding of the solar system was a product of its time.
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Anaxagoras, for example, thought that air pressure kept the flat Earth aloft at the center of the rotating sun, moon, and stars. Despite that error, he worked out the basic mechanics behind eclipses.
Anaxagoras correctly believed the moon reflected the sun’s light. He was also accurate in his theories that when the moon moved in front of the sun, it caused a solar eclipse. Similarly, when the Earth was in between the sun and moon, there would be a lunar eclipse.
He also used the moon’s shadow during an eclipse to estimate its size, but his calculations gave him a much smaller answer than reality.