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9·10182+1 =
9(0)1811<183>
= 96497 · 6693857016013088704017026959632722629<37> · [1393324476133628308508018984618709804986257885467422408615899381022222419474636732587515795416876689048777120508243524120001407382238214675677<142>] (Wataru Sakai / GMP-ECM 6.1.2 B1=11000000, sigma=2126479012 for P37 / Apr 16, 2007) SUBMIT/RESERVE

Status

Expression:9·10182+1
Composite Factor:139332447613362830850801898461870980498625788546742240861589
938102222241947463673258751579541687668904877712050824352412
0001407382238214675677
(142-digit)
Status:Not factored. Not reserved. You can submit its factors or reserve it for submitting in the future.

How to factor it

ECM, P-1, P+1

Look for prime factors by GMP-ECM first. Refer to the section "Efforts by ECM". Not only ECM but also P-1/P+1 may be helpful.

SNFS

Use GGNFS and/or Msieve if GMP-ECM cannot find a factor. The SNFS difficulty of this composite number is 184.39-digit and the GNFS difficulty is 141.14-digit. SNFS must be faster than GNFS. It will take about 6 CPU-days to factor this composite number on 64-bit Opteron-2600MHz.

  1. Put factMsieve.pl to which $GGNFS_BIN_PATH and $NUM_CPUS were modified properly in the working directory 90001_182.
  2. Put the following polynomial file 90001_182.poly in there too.
  3. And then, run "perl factMsieve.pl 90001_182".
90001_182.poly *1
n: 1393324476133628308508018984618709804986257885467422408615899381022222419474636732587515795416876689048777120508243524120001407382238214675677
m: 3000000000000000000000000000000000000
deg: 5
c5: 100
c0: 27
skew: 0.77
type: snfs
lss: 1
rlim: 8300000
alim: 8300000
lpbr: 28
lpba: 28
mfbr: 54
mfba: 54
rlambda: 2.5
alambda: 2.5

*1 These parameters were not fully adjusted. The approximate expressions which were used for making the parameters are: deg=expt<=105?4:expt<=210?5:6 or expt<=144?4:6; d=log10(c[deg])+deg*log10(m)[digits]; time=10^(d/30-4)[hours]; skew=|c0/c[deg]|^(1/deg); rlim=round(7*10^(d/60+3)); lpbr=floor(d/25+21); mfbr=floor(d/8+31); rlambda=floor(d/25+18)/10;

See also


Efforts by ECM

The efforts by ECM to find small factors of this 142-digit composite number so far are as follows. According to the reports, unknown prime factors of this composite number are probably 30-digit or more. Please report your efforts by ECM. (Anonymous reports are not acceptable)

LevelB1Reported runs
Total / Required runs
(Required runs for lower level)
Name 
3025e4430Makoto KamadaApr 4, 2007
430 / 430  
351e60 / 825  
/ 825
403e60 / 2336 (294)  
/ 2336 (294)  
4511e60 / 4479 (677)  
/ 4479 (677)  
5043e60 / 7553 (1277)  
/ 7553 (1277)  
Command line to find prime factors up to about 35-digit
echo 1393324476133628308508018984618709804986257885467422408615899381022222419474636732587515795416876689048777120508243524120001407382238214675677 | ecm -n -c 825 1e6
Command line to find prime factors up to about 40-digit
echo 1393324476133628308508018984618709804986257885467422408615899381022222419474636732587515795416876689048777120508243524120001407382238214675677 | ecm -n -c 2336 3e6
Command line to find prime factors up to about 45-digit
echo 1393324476133628308508018984618709804986257885467422408615899381022222419474636732587515795416876689048777120508243524120001407382238214675677 | ecm -n -c 4479 11e6
Command line to find prime factors up to about 50-digit
echo 1393324476133628308508018984618709804986257885467422408615899381022222419474636732587515795416876689048777120508243524120001407382238214675677 | ecm -n -c 7553 43e6

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