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- |GFNb=1133 bytes (12 words) - 18:55, 17 September 2021
- Automatically generated table from available [[:Category:Riesel 2 1-300|Riesel primes {{Vk}} < 300]]. |category=Riesel 2 1-300855 bytes (117 words) - 07:27, 16 July 2021
- |DRName=RPS Megabit Drive 1 |DRSieve=RPS Megabit Drive 1 sieve.zip4 KB (438 words) - 08:07, 30 July 2024
- This is the Maxi Drive 1 of [[No Prime Left Behind]]. [[Category:No Prime Left Behind|Maxi Drive 1]]676 bytes (75 words) - 19:41, 17 August 2024
- |GFNb=1141 bytes (12 words) - 08:56, 18 September 2021
- This is team drive #1 for [[No Prime Left Behind]]. We will be searching all {{Vk}}=400-1001 for [[Category:No Prime Left Behind|Drive 1]]416 bytes (55 words) - 11:51, 5 September 2021
- |GFNb=1124 bytes (12 words) - 12:34, 6 July 2021
- |GFNb=1124 bytes (12 words) - 14:11, 28 July 2021
- [[Category:Free-DC's Prime Search|Drive 1]]306 bytes (38 words) - 10:25, 15 May 2021
- |GFk=1 3,1,3302 bytes (8 words) - 07:36, 23 August 2021
- |GFk=1 4,3,1178 bytes (8 words) - 14:10, 23 August 2021
- |GFk=1 3,1,7#1981#Cunningham project467 bytes (20 words) - 08:05, 7 June 2024
- |GFk=1 3,1,15#1992#Harvey Dubner509 bytes (22 words) - 14:11, 22 August 2021
- |GFNb=1130 bytes (12 words) - 12:32, 6 July 2021
- |GFNb=1 |GFNDigits=1120 bytes (12 words) - 08:54, 5 July 2021
- |GFNb=1 |GFNn=1120 bytes (12 words) - 18:11, 1 August 2021
- |GFNb=1122 bytes (12 words) - 08:54, 5 July 2021
- |GFNb=1124 bytes (12 words) - 08:55, 5 July 2021
- |GFNb=1128 bytes (12 words) - 08:55, 5 July 2021
- |GFNb=1140 bytes (12 words) - 00:56, 23 June 2021
Page text matches
- A '''Mersenne number''' is a number of the form <math>2^n{-}1</math> where <math>n</math> is a non-negative [[integer]]. ...r <math>2^n{-}1</math> can be calculated by <math>\lfloor{n*log(2)}\rfloor+1</math> (see [[floor function]]).2 KB (351 words) - 11:28, 7 March 2019
- ...to its diameter in 1755, <math>\large i</math> for the <math>\large\sqrt{-1}</math> in 1777, the notation for finite differences <math>\large\delta y</16 KB (2,619 words) - 17:45, 24 July 2024
- <math> f=\frac{1}{2L}\sqrt{\frac{T}{\mu}}, </math> ...would be explained if the ratio of the air oscillation frequencies is also 1 : 2, which in turn is consistent with the source-air-motion-frequ11 KB (1,582 words) - 01:17, 15 January 2024
- ...with the definitions of the most basic and fundamental parts of geometry; 1. A point is that which has no part. 2. A line is breadthless length. From t2 KB (341 words) - 11:43, 14 January 2024
- ...with [[Landon Curt Noll]] discovered on 1978-10-30 that 2<sup>21701</sup>-1 was the [[M25|25th Mersenne prime]]. This made international news because N2 KB (254 words) - 01:23, 15 January 2024
- | [[M27]] || 2<sup>{{Num|44497}}</sup>-1 || 1979-04-08 | [[M28]] || 2<sup>{{Num|86243}}</sup>-1 || 1982-09-251 KB (213 words) - 23:53, 14 January 2024
- :{{V|F}}<sub>{{Vn}}</sub> = {{Kbn|+|1|2|2<sup>n</sup>}} :{{V|F}}<sub>0</sub> = {{Kbn|+|1}} = 312 KB (1,913 words) - 14:35, 9 August 2021
- The official discovery date for prime 2<sup>77 232 917</sup>-1 was 2017-12-26. See the [https://www.mersenne.org/primes/press/M77232917.ht *[[Aaron Blosser]] verified it using [[Prime95]] on an Intel Xeon server in 1.5 days2 KB (334 words) - 20:10, 11 August 2024
- The official discovery date for 2<sup>{{Num|74207281}}</sup>-1 was 2016-01-07. See the [http://www.mersenne.org/primes/?press=M74207281 pr2 KB (284 words) - 20:11, 11 August 2024
- ...prime]], 2<sup>32 582 657</sup>-1. As of 2008-09-15 his account is ranked #1 on [[PrimeNet]] in [[Lucas-Lehmer test|LL testing]], with over 242 000 P90 ...3-01-25 Cooper discovered his third Mersenne prime, 2<sup>57 885 161</sup>-1, the [[M48|48th]] known.2 KB (237 words) - 11:34, 14 January 2024
- ...vement to the [[Lucas primality test]] for [[Mersenne prime]]s <math>2^p{-}1</math>, extending its application to all odd prime exponents ''p'', and ena6 KB (1,033 words) - 01:13, 15 January 2024
- {| border="1" cellpadding="4px" style="border:3px; border-color:#000; border-collapse:co {| border="1" cellpadding="4px" style="border:3px; border-color:#000; border-collapse:co2 KB (175 words) - 18:45, 14 December 2023
- ...to find the complete [[factorization]] of numbers of the form <math>b^n\pm 1</math> for <math>b</math> = 2, 3, 5, 6, 7, 10, 11, 12. The values of the ex :<math>(b^{kn}-1) = (b^n-1) \sum _{r=0}^{k-1} b^{rn}</math>7 KB (1,150 words) - 05:23, 7 June 2024
- ==Factorizations Of Cunningham Numbers C<sup>-</sup>(2,n) = 2<sup>n</sup> - 1== * 001 - 100 : {{FDBCunningham|2|-|1|100}}2 KB (176 words) - 12:01, 13 February 2019
- M25 is 2<sup>{{Num|21701}}</sup>-1, a number of {{Num|6533}} [[digit]]s. ...heory and that Tuckerman's discovery of [[M24]] (2<sup>{{Num|19937}}</sup>-1) was the start of this island.2 KB (303 words) - 11:01, 26 February 2019
- ...905 - 1991) provided a complete proof that this was not only true when p = 1 (mod 4), but for all odd prime exponents. The test therefore takes its name ...> - 1 divides S<sub>3</sub> (37634 / 31 = 1214) shows that 2<sup>5</sup> - 1 is prime.20 KB (3,581 words) - 01:14, 11 August 2024
- ...ucas-Lehmer test]]. In 1876, Lucas proved the primality of <math>2^{127}{-}1</math> ([[M12]]) and this remained the highest [[Mersenne prime]] for almos2 KB (296 words) - 01:09, 15 January 2024
- ...rious symbols (called [[digit]]s) for no more than ten distinct values (0, 1, 2, 3, 4, 5, 6, 7, 8 and 9) to represent any numbers, no matter how large.1 KB (190 words) - 10:23, 18 January 2019
- | 1 || '''1''' || 12 KB (399 words) - 10:37, 18 January 2019
- *the nonnegative [[integer]]s (0, 1, 2, 3, ...) *the positive integers (1, 2, 3, ...) (often called [[natural number]]s)416 bytes (54 words) - 01:00, 11 August 2024