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#551 |
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May 2007
Kansas; USA
2·41·127 Posts |
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#552 | |
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"Mark"
Apr 2003
Between here and the
22×7×227 Posts |
Quote:
In case people are curious, I am dumping all of these into a PRPNet server trying to keep two computers "fed" through the next week as I will be on vacation. Right now I have about six days of work queued up, but if k fall, then that six days gets reduced. I'm only reserving whenever I have the time to sieve. I've been taking conjectures on the Sierspinski side because it hasn't had as much "love" as the Riesel side. There will be (unfortunately) an number of new single k conjectures when I'm done. And speaking of such, I'll reserve S702, conjectured k of 75. Last fiddled with by rogue on 2010-06-08 at 11:07 |
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#553 |
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"Mark"
Apr 2003
Between here and the
22·7·227 Posts |
Base 548
Code:
2*548^1+1 3*548^6+1 4*548^2+1 5*548^1+1 6*548^115+1 7*548^4+1 8*548^5311+1 9*548^1+1 10*548^12+1 11*548^1+1 12*548^1+1 13*548^22+1 14*548^1+1 15*548^1+1 Base 679 Code:
6*679^4+1 10*679^1+1 12*679^10+1 Base 740 Code:
2*740^1+1 3*740^1+1 5*740^1+1 6*740^1+1 7*740^2+1 8*740^83+1 9*740^1+1 10*740^12+1 12*740^5+1 Base 812 Code:
2*812^1003+1 3*812^1+1 4*812^26+1 5*812^5+1 6*812^19+1 7*812^2+1 8*812^3461+1 9*812^1+1 10*812^18+1 11*812^1+1 12*812^6+1 13*812^2+1 14*812^1+1 15*812^31+1 Base 866 Code:
2*866^1+1 3*866^7+1 5*866^5+1 6*866^1+1 7*866^2+1 10*866^2+1 11*866^35+1 12*866^531+1 13*866^1492+1 15*866^8+1 |
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#554 |
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"Mark"
Apr 2003
Between here and the
22×7×227 Posts |
Base 934
Code:
3*934^1+1 6*934^4+1 7*934^6+1 9*934^429+1 10*934^1+1 12*934^44+1 13*934^1+1 15*934^1+1 Base 935 Code:
2*935^1+1 4*935^2+1 6*935^8+1 8*935^1+1 12*935^3+1 Base 968 Code:
2*968^917+1 3*968^2+1 4*968^90+1 5*968^3+1 6*968^40+1 7*968^8+1 8*968^7+1 9*968^1+1 10*968^162+1 12*968^1+1 13*968^2+1 14*968^1+1 15*968^20+1 Base 1013 Code:
2*1013^1+1 4*1013^2+1 6*1013^1+1 12*1013^1+1 Note that any other k that appear to be "missing" have trivial factors. |
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#555 |
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"Mark"
Apr 2003
Between here and the
22×7×227 Posts |
Reserving
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#556 |
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"Mark"
Apr 2003
Between here and the
11000110101002 Posts |
Reserving
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#557 |
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Nov 2009
2·52·7 Posts |
R788 is proven
CK=14 Largest prime 7*788^1663-1 k=9 is removed by algebraic factors attached are the results |
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#558 | |
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May 2008
Wilmington, DE
22×23×31 Posts |
Quote:
Last fiddled with by MyDogBuster on 2010-06-09 at 03:26 |
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#559 | |
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May 2007
Kansas; USA
2·41·127 Posts |
Quote:
To determine which common factor(s) for the odd n that there could be for a k that is a perfect square on a base, prime factor the base + 1 and only consider factors (f) that are f==(1 mod 4). Here: 789 = 3 * 263 Since 3 and 263 are both f==(3 mod 4), there can be no common factor for any odd n on squared k's for base 788. Therefore all squared k's must be tested unless they are eliminated by trivial factors, which the script would do automatically. We'll wait to show this on the pages until you let us know that you've tested k=9. Gary Last fiddled with by gd_barnes on 2010-06-09 at 04:29 |
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#560 |
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Nov 2009
2×52×7 Posts |
R788 is proven
9*788^11325-1 is 3-PRP! (44.1679s+0.0027s) Primality testing 9*788^11325-1 [N+1, Brillhart-Lehmer-Selfridge] Running N+1 test using discriminant 7, base 1+sqrt(7) Calling Brillhart-Lehmer-Selfridge with factored part 79.21% 9*788^11325-1 is prime! (458.7986s+0.0052s) Edit: Thanks Mathew Last fiddled with by MyDogBuster on 2010-06-09 at 05:54 |
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#561 |
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May 2008
Wilmington, DE
B2416 Posts |
Riesel 908 the last k (8*908-n-1) tested n=25K-50K. Nothing found
Results attached - Base released Last fiddled with by MyDogBuster on 2014-09-02 at 09:15 |
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