Fermat's Last Theorem
Unlocking the Secret of an Ancient Mathematical Problem
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Word Count
40,000 words, Guess
Page Count
160 pages
Identifiers
- Internet Archivefermatslasttheor00acze_507
- Internet Archivefermatslasttheor0000acze_r3f6
- Internet Archivefermatslasttheor00acze_777
- ISBN-100385319460
- ISBN-139780385319461
and 4 more
- Goodreads208920
- LibraryThing1566712
- OCLC Control Number37722578
- Open LibraryOL7439162M
Classifications
- LCCQA244 .A29 1997
- DDC512/.74
- LCCQA244 .A29 1996
Description
In 1995, a Princeton-based mathematician showed up at a scientific conference and dropped a bombshell. He had succeeded in deciphering one of mathematics' great secrets, one that thousands had puzzled over for the last three-and-a-half centuries: he had proven Fermat's Last Theorem in a 200-page paper, one that took seven years to write (and another year to fine tune). Fermat's Last Theorem is the previously untold story of the people, the history, and the cultures that lie behind this scientific triumph. Written by a seventeenth-century French scholar, the deceptively simple-sounding theorem states that while the square of a whole number can be broken down into two other squares of whole numbers - for example, five squared (25) equals four squared (16) plus three squared (nine) - the same cannot be done with cubes or any higher powers. After Fermat's death, many spent lifetimes trying to prove the theorem. The theorem has ancient roots. Around 2000 B.C., the Babylonians sought a way to break down a squared number into a sum of two squares. In the sixth century B.C., the Greek mathematician Pythagoras incorporated this concept into his own famous theorem, paving the way for Fermat. Centuries after Fermat, in 1955, two Japanese mathematicians made a far-reaching, almost fantastic conjecture about a possible relation between two disparate branches of mathematics. It was their work that enabled Princeton researcher Andrew Wiles, forty years later, to piece together the logic necessary to prove Fermat's Last Theorem. Fermat's Last Theorem combines philosophy and hard science with investigative journalism to make for a real-life detective story of the intellect.
First Sentence
Just before dawn on June 23, 1993, Professor John Conway approached the darkened mathematics building on the Princeton University campus.
Description
After seven years of intense dedication on one man's part, Fermat's Last Theorem, which had been labeled an impossible problem for the last 350 years, was deciphered. The story of both the original theorem and the chain of discoveries that led to the final proof, "Fermat's Last Theorem" is an absorbing tale of secret societies, genius ridiculed, jealousy, tragedy, and a tremendous scientific triumph.
Subjects
Topics
Other Editions
- Fermat's Last Theorem: Unlocking the Secret of an Ancient Mathematical Problem
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