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-Rudel- said:I know that, I was just wondering what the last number found so far, is.
It's in the billions now
Pi = 3.
1415926535 8979323846 2643383279 5028841971 6939937510 : 50 [dec places]
5820974944 5923078164 0628620899 8628034825 3421170679 : 100
...
2448547079 5329693979 7145627081 9204187454 9483487803 : 24999999950
1309759846 5364560010 7388984278 8403481193 9913806533 : 25000000000
By extrapolating, I estimate that computing 206 billion digits [using a supercomputer] should take 36000 hours (4.1 years) on the same Pentium assuming an unbounded main memory.
Hey, FlashJeff, I can count up to 20 with my shoes off !flashjeff said:Don't ask me! I still need to take off my shoes to count over 10!
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-Rudel- said:lol. Yikes indeed! I wonder what the same might be the value of "e" 2.17...... The same?
UHG!
E = 2.
7182818284 5904523536 0287471352 6624977572 4709369995 : 50
9574966967 6277240766 3035354759 4571382178 5251664274 : 100
...
3669726475 3295447928 1112551954 8580374319 9274714928 : 59099999950
7669321295 9798814638 4413740697 0275589771 4986918393 : 50100000000
The world record computation on the number e has been broken by Shigeru Kondo (the home computer record is the world record). Shigeru Kondo used a beta version of PiFast44 and computed 50,100,000,000 decimal digits. The computation, ended on September 04 2003, was done in 11 days and 1 hour on a Pentium 4 3.2Ghz, 2 Go of physical memory. 167 GB of disk space was needed.
lexico said:Hey, FlashJeff, I can count up to 20 with my shoes off !![]()
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lastmagi said:Speaking of e, I find it cool that e^(pi*i)=-1 (aka euler's formula). You've got two numbers with decimal places that goes on forever and a number that isn't even a number, along with 1 and 0, and you've got a nice clean formula!