0.999...: Difference between revisions

From formulasearchengine
Jump to navigation Jump to search
en>Cyberbot II
m Tagging page with PC1 protection template. (Peachy 2.0 (alpha 6))
en>ClueBot NG
m Reverting possible vandalism by 204.169.92.43 to version by Seryo93. False positive? Report it. Thanks, ClueBot NG. (1717904) (Bot)
Line 1: Line 1:
{{Expand French|Théorème des deux carrés de Fermat|topic=sci|date=July 2012}}
Yesterday I woke up and realised - I have also been single for a little while at the moment and following much bullying from friends I today locate myself opted for online dating. They promised me that there are plenty of fun, pleasant and [http://www.standardvisitors.org/ standard visitors] to fulfill, therefore the pitch is gone by here!<br>I make an effort to maintain as toned as possible coming to the [http://Www.Google.com/search?q=fitness+center&btnI=lucky fitness center] many times  [http://lukebryantickets.citizenswebcasting.com luke bryan tickets] weekly.   [http://lukebryantickets.hamedanshahr.com luke bryan vip tickets] I love my sports and strive to perform or view as many a possible. I will frequently at Hawthorn fits being wintertime. Notice: If you really considered buying a sport I really don't mind, I have seen the carnage of fumbling fits at stocktake sales.<br>My pals and fam are wonderful and spending some time together at tavern gigs or dinners is always imperative. As I see that one may not have a decent dialogue using the sound I haven't ever been into night  [http://www.netpaw.org luke bryan tour 2014 dates] clubs. Additionally, I got 2 undoubtedly cheeky and really adorable dogs who are always excited to meet up fresh individuals.<br><br>My homepage; [http://lukebryantickets.omarfoundation.org 2014 luke bryan concerts]
{{Expand Catalan|Teorema de la suma de dos quadrats|fa=yes|date=July 2013}}
{{For|other theorems named after Pierre de Fermat|Fermat's theorem (disambiguation){{!}}Fermat's theorem}}
{{see also|Pythagorean prime}}
In [[additive number theory]], [[Pierre de Fermat]]'s theorem on sums of two squares states that an [[Even and odd numbers|odd]] [[prime number|prime]] ''p'' is expressible as
 
:<math>p = x^2 + y^2,\,</math>
 
with ''x'' and ''y'' integers, [[if and only if]]
 
:<math>p \equiv 1 \pmod{4}.</math>
 
For example, the primes 5, 13, 17, 29, 37 and 41 are all congruent to 1 [[modular arithmetic|modulo]] 4, and they can be expressed as sums of two squares in the following ways:
 
:<math>5 = 1^2 + 2^2, \quad 13 = 2^2 + 3^2, \quad 17 = 1^2 + 4^2, \quad 29 = 2^2 + 5^2, \quad 37 = 1^2 + 6^2, \quad 41 = 4^2 + 5^2.</math>
 
On the other hand, the primes 3, 7, 11, 19, 23 and 31 are all congruent to 3 modulo 4, and none of them can be expressed as the sum of two squares.
 
[[Albert Girard]] was the first to make the observation (in 1632) <ref>Dickson, Ch. VI</ref> and Fermat was first to claim a proof of it.
Fermat announced this theorem in a letter to [[Marin Mersenne]] dated December 25, 1640; for this reason this theorem is sometimes called ''Fermat's Christmas Theorem.''
 
Since the [[Brahmagupta–Fibonacci identity]] implies that the product of two integers that can be written as the sum of two squares is itself expressible as the sum of two squares, by applying Fermat's theorem to the prime factorization of any positive integer n, we see that if all of n's odd prime factors congruent to 3 modulo 4 occur to an even exponent, it is expressible as a sum of two squares. The converse also holds.
 
==Proofs of Fermat's theorem on sums of two squares==
{{main|Proofs of Fermat's theorem on sums of two squares}}
 
Fermat usually did not write down proofs of his claims, and he did not provide a proof of this statement. The first proof was found by [[Euler]] after much effort and is based on [[infinite descent]]. He announced it in a letter to [[Christian Goldbach|Goldbach]] on April 12, 1749. [[Joseph Louis Lagrange|Lagrange]] gave a proof in 1775 that was based on his study of [[quadratic forms]]. This proof was simplified by [[Carl Friedrich Gauss|Gauss]] in his ''[[Disquisitiones Arithmeticae]]'' (art. 182). [[Richard Dedekind|Dedekind]] gave at least two proofs based on the arithmetic of the [[Gaussian integer]]s. There is an elegant proof using [[Minkowski's theorem]] about convex sets. Simplifying an earlier short proof due to [[Roger Heath-Brown|Heath-Brown]] (who was inspired by [[Liouville]]'s idea), [[Don Zagier|Zagier]] presented a one-sentence proof of Fermat's assertion.
 
==Related results==
Fermat announced two related results fourteen years later. In a letter to [[Blaise Pascal]] dated September 25, 1654 he announced the following two results for odd primes <math>p</math>:
 
*<math>p = x^2 + 2y^2 \Leftrightarrow p\equiv 1\mbox{ or }p\equiv 3\pmod{8},</math>
*<math>p= x^2 + 3y^2 \Leftrightarrow p\equiv 1 \pmod{3}.</math>
 
He also wrote:
: ''If two primes which end in 3 or 7 and surpass by 3 a multiple of 4 are multiplied, then their product will be composed of a square and the quintuple of another square.''
 
In other words, if ''p, q'' are of the form 20''k''&nbsp;+&nbsp;3 or 20''k''&nbsp;+&nbsp;7, then ''pq'' = ''x''<sup>2</sup>&nbsp;+&nbsp;5''y''<sup>2</sup>. Euler later extended this to the conjecture that
* <math>p = x^2 + 5y^2 \Leftrightarrow p\equiv 1\mbox{ or }p\equiv 9\pmod{20},</math>
* <math>2p = x^2 + 5y^2 \Leftrightarrow p\equiv 3\mbox{ or }p\equiv 7\pmod{20}.</math>
 
Both Fermat's assertion and Euler's conjecture were established by Lagrange.
 
==See also==
* [[Proofs of Fermat's theorem on sums of two squares]]
* [[Legendre's three-square theorem]]
* [[Lagrange's four-square theorem]]
 
==Notes==
{{Reflist}}
 
==References==
*[[L. E. Dickson]]. ''[[History of the Theory of Numbers]]'' Vol. 2. Chelsea Publishing Co., New York 1920
*Stillwell, John. Introduction to '''''Theory of Algebraic Integers''''' by Richard Dedekind. Cambridge University Library, Cambridge University Press 1996. ISBN 0-521-56518-9
*{{cite book | author = D. A. Cox | title = Primes of the Form x<sup>''2''</sup>&nbsp;+&nbsp;ny<sup>''2''</sup>| publisher = Wiley-Interscience | year = 1989 | isbn=0-471-50654-0 }}
 
[[Category:Additive number theory]]
[[Category:Theorems in number theory]]
{{Link FA|ca}}

Revision as of 20:13, 25 February 2014

Yesterday I woke up and realised - I have also been single for a little while at the moment and following much bullying from friends I today locate myself opted for online dating. They promised me that there are plenty of fun, pleasant and standard visitors to fulfill, therefore the pitch is gone by here!
I make an effort to maintain as toned as possible coming to the fitness center many times luke bryan tickets weekly. luke bryan vip tickets I love my sports and strive to perform or view as many a possible. I will frequently at Hawthorn fits being wintertime. Notice: If you really considered buying a sport I really don't mind, I have seen the carnage of fumbling fits at stocktake sales.
My pals and fam are wonderful and spending some time together at tavern gigs or dinners is always imperative. As I see that one may not have a decent dialogue using the sound I haven't ever been into night luke bryan tour 2014 dates clubs. Additionally, I got 2 undoubtedly cheeky and really adorable dogs who are always excited to meet up fresh individuals.

My homepage; 2014 luke bryan concerts