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[[Archimedes]] of Syracuse (287-212 BC) carried out "the first theoretical calculation" of pi.<ref>[http://veling.nl/anne/templars/Pi_through_the_ages.html Pi through the ages]</ref> He said it was between 223/71 and 22/7. This is ten times better than the Egyptian and Babylonian values, and it is within 0.04 percent of the correct value. The German-Dutch mathematician Ludolph van Ceulen used Archimedes's formula to calculate pi to 32 digits in 1615. He was so proud of his achievement, he had the digits engraved on his tombstone.
 
[[Archimedes]] of Syracuse (287-212 BC) carried out "the first theoretical calculation" of pi.<ref>[http://veling.nl/anne/templars/Pi_through_the_ages.html Pi through the ages]</ref> He said it was between 223/71 and 22/7. This is ten times better than the Egyptian and Babylonian values, and it is within 0.04 percent of the correct value. The German-Dutch mathematician Ludolph van Ceulen used Archimedes's formula to calculate pi to 32 digits in 1615. He was so proud of his achievement, he had the digits engraved on his tombstone.
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During the plague of 1665-1666, [[Isaac Newton]] was confined to the village of Woolsthorpe. There he calculated pi to 16 digits. He considered the calculations to be a waste of time. “I am ashamed to tell you to how many figures I carried these computations, having no other business at the time," he wrote.<ref>Beckmann, Petr (2015-01-06). ''A History of Pi'' (Kindle Locations 2249-2250). St. Martin's Press. Kindle Edition.</ref>
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During the plague of 1665-1666, [[Isaac Newton]] was confined to the English village of Woolsthorpe. There he calculated pi to 16 digits. He considered such calculations to be a waste of time. “I am ashamed to tell you to how many figures I carried these computations, having no other business at the time," he wrote.<ref>Beckmann, Petr (2015-01-06). ''A History of Pi'' (Kindle Locations 2249-2250). St. Martin's Press. Kindle Edition.</ref>
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In 1706, John Machin developed a quickly converging formula for pi and used it to calculated the first 100 digits. In 1844, the idiot savant Johann Dase of Hamburg used Machin's formula to calculate an astonishing 200 digits in less than two months.<ref>Beckmann</ref> In contrast, William Shanks spent twenty years calculating pi to 707 places, a task he completed in 1873. In 1945, it was discovered that only the first 527 of Shanks's digits were correct.
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In 1706, John Machin, secretary of England's Royal Society, developed a quickly converging formula for pi and used it to calculated the first 100 digits. In 1844, the idiot savant Johann Dase of Hamburg used Machin's formula to calculate 200 digits in less than two months.<ref>Beckmann</ref> In contrast, William Shanks spent twenty years calculating pi to 707 places, a task he completed in 1873. In 1945, it was discovered that only the first 527 of Shanks's digits were correct.
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ENIAC, the first electronic computer, took 70 hours to calculate 2,037 digits in 1949. In 2014, the anonymous programmer Houkouonchi calculated the first 13.3 trillion digits of pi.<ref>Yee, Alexander, "[http://www.numberworld.org/y-cruncher/ y-cruncher - A Multi-Threaded Pi-Program]"</ref> The result has not been printed out.
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ENIAC, the first electronic computer, took seventy hours to calculate 2,037 digits in 1949. In 2014, the anonymous programmer Houkouonchi calculated the first 13.3 trillion digits of pi.<ref>Yee, Alexander, "[http://www.numberworld.org/y-cruncher/ y-cruncher - A Multi-Threaded Pi-Program]"</ref> The result has not been published.
    
==Pi in mathematics==
 
==Pi in mathematics==
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