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A typical book can be printed with 10 6 zeros (around 400 pages with 50 lines per page and 50 zeros per line). Therefore, it requires 10 94 such books to print all the zeros of a googolplex (that is, printing a googol zeros). [4] If each book had a mass of 100 grams, all of them would have a total mass of 10 93 kilograms.
To put in perspective the size of a googol, the mass of an electron, just under 10 −30 kg, can be compared to the mass of the visible universe, estimated at between 10 50 and 10 60 kg. [5] It is a ratio in the order of about 10 80 to 10 90, or at most one ten-billionth of a googol (0.00000001% of a googol).
The name of a number 10 3n+3, where n is greater than or equal to 1000, is formed by concatenating the names of the numbers of the form 10 3m+3, where m represents each group of comma-separated digits of n, with each but the last "-illion" trimmed to "-illi-", or, in the case of m = 0, either "-nilli-" or "-nillion". [17]
Mathematics:, a number in the googol family called a googolplexplex, googolplexian, or googolduplex. 1 followed by a googolplex zeros, or 10 googolplex Cosmology: The uppermost estimate to the size of the entire universe is approximately 10 10 10 122 {\displaystyle 10^{10^{10^{122}}}} times that of the observable universe .
Even n, the mere number of towers in this formula for g 1, is far greater than the number of Planck volumes (roughly 10 185 of them) into which one can imagine subdividing the observable universe. And after this first term, still another 63 terms remain in the rapidly growing g sequence before Graham's number G = g 64 is reached.
Disoge has 10 zeros 77.100 ... a vague outline of a number, just 'LNGN+1' or infinite. ... Text is available under the Creative Commons Attribution-ShareAlike 4.0 ...
10 to the power of googol and 1 followed by googol zeroes is the same thing. 10^1 = 1 followed by 1 zero. 10^2 is 1 followed by 2 zeroes, etc. Of course, this is only true if the number system is assumed to be base ten. In base googolplex, a googolplex is simply written as 10. 97.82.86.146 19:33, 4 March 2010 (UTC)
Upper bounds on Skewes's number Year near x # of complex zeros used by 2000: 1.39822 × 10 316: 10 6: Bays and Hudson 2010: 1.39801 × 10 316: 10 7: Chao and Plymen 2010: 1.397166 × 10 316: 2.2 × 10 7: Saouter and Demichel 2011: 1.397162 × 10 316: 2.0 × 10 11: Stoll and Demichel