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#683 |
"Ed Hall"
Dec 2009
Adirondack Mtns
22×3×7×43 Posts |
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I reran the above using only 24 and came up with 70 unbroken and 296 broken. This shouldn't be too far off. Some variations may not be considered, but the runs still appear to break much more often than not.
Perhaps I should look at other drivers/guides? I can't seem to find the page which describes the difference between drivers and guides. Is it still available somewhere? |
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#684 |
"Curtis"
Feb 2005
Riverside, CA
13×359 Posts |
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Squaring the 31 is the manner in which one breaks 2^4 * 31.
Other powers of 2 would not be a driver; only the perfect number 496 = 2^4 * 31 is a driver. I believe the same is true for the other perfect numbers: Square the 3 or 7 or 127 to escape. |
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#685 |
Romulan Interpreter
Jun 2011
Thailand
59×157 Posts |
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#686 | |
"Rich"
Aug 2002
Benicia, California
17×71 Posts |
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Continuing with 439^44. |
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#687 |
Oct 2011
3·149 Posts |
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Page updated.
Many thanks to all for your help ! |
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#688 |
May 2009
Russia, Moscow
253610 Posts |
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I'm done with base 79 - all sequences in the table are >120 digits with >110 ECM-ed composites. Also I did some work with odd k's above the limit, will post results later.
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#689 | ||
Oct 2011
3×149 Posts |
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Quote:
Many thanks ! |
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#690 |
Sep 2008
Kansas
2·1,637 Posts |
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One of the next logical tables would be 242 (2 * 11^2). I've taken it to i=52.
Edit: Updates to tables 29, 220, 284. Last fiddled with by RichD on 2020-12-13 at 12:16 |
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#691 | |
Oct 2011
3×149 Posts |
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I will update all the bases on the weekend of December 20th. And I will also add the base 242 that you calculated. Thus, the base 200 = 2 * 10^2 will be missing, if you like the bases for which the calculations end for all the exponents. These bases will be interesting for future analyses. |
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#692 |
Sep 2008
Kansas
2×1,637 Posts |
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#693 |
Oct 2011
3×149 Posts |
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OK, many thanks for your help !
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