@gonzazzz_cabj: BELLINGHAM NO ES UN SANTO. último video que suba en mucho tiempo a esta cuenta porq casi q ni la uso y la verdad se me estalló por 1 solo video 😚😚 . Graham's number is an immense number that arose as an upper bound on the answer of a problem in the mathematical field of Ramsey theory. It is much larger than many other large numbers introduced as effective bounds in mathematics, such as Skewes's bound, which in turn is much larger than a googolplex. Graham's number is so large that the observable universe is far too small to contain its ordinary digital representation, assuming that each digit occupies one Planck volume. But even the number of digits in this digital representation of Graham's number would itself be a number so large that its digital representation cannot be represented in the observable universe. Nor even can the number of digits of that number—and so forth, for a number of times far exceeding the total number of Planck volumes in the observable universe. Thus, Graham's number cannot be expressed even by physical universe-scale power towers of the form a b c ⋅ ⋅ ⋅ {\displaystyle a^{b^{c^{\cdot ^{\cdot ^{\cdot }}}}}}, even though Graham's number is indeed a power of three. However, Graham's number can be explicitly given by computable recursive formulas using Knuth's up-arrow notation or equivalent, as was done by Ronald Graham, the number's namesake. As there is a recursive formula to define it, it is much smaller than typical busy beaver numbers, the sequence of which grows faster than any computable sequence. Though too large to ever be computed in full, the sequence of digits of Graham's number can be computed explicitly via simple algorithms; the last 10 digits of Graham's number are ...2464195387.[1] Using Knuth's up-arrow notation, Graham's number is g 64 {\displaystyle g_{64}},[2] where g n = { 3 ↑↑↑↑ 3 , if n = 1 and 3 ↑ g n − 1 3 , if n ≥ 2. {\displaystyle g_{n}={\begin{cases}3\uparrow \uparrow \uparrow \uparrow 3,&{\text{if }}n=1{\text{ and}}\\3\uparrow ^{g_{n-1}}3,&{\text{if }}n\geq 2.\end{cases}}} Graham's number was used by Graham in conversations with popular science writer Martin Gardner as a simplified explanation of the upper bounds of the problem he was working on. In 1977, Gardner described the number in Scientific American, introducing it to the general public. At the time of its introduction, it was the largest specific positive integer ever to have been used in a published mathematical proof. The number was described in the 1980 Guinness Book of World Records, adding to its popular interest. Other specific integers (such as TREE(3)) known to be far larger than Graham's number have since appeared in many serious mathematical proofs, for example in connection with Harvey Friedman's various finite forms of Kruskal's theorem. Additionally, smaller upper bounds on the Ramsey theory problem from which Graham's number was derived have since been proven to be valid. #judebellingham #fifaworldcup2026 #targetaudience #fyp #creatorsearchinsight @TikTok

Gonzazzz
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Saturday 18 July 2026 01:58:27 GMT
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amberwife4ver
Myrtle :
casualmente Jude Bellingham tiene un historial de perder los estribos cuando las cosas no le salen en la cancha🤣
2026-07-18 22:00:32
36
guruxiomii
⋮ ⌗ 🎼┆ ✘ioma𝐀𝐊𝐃 :
El mejor
2026-07-18 17:03:42
10
puroi0_
𓆩「ᴘᴜʀᴏ」𓆪 :
yo vi a bellingham arrugar contra paredes
2026-07-18 19:59:06
7
salvix097
Salvix :
me gustó el video, pero siento que es algo innecesario ya que las chicas se olvidarán de él cuando acabé el mundial y en el próximo simpearan a Calafiori u otro problablemente XD (digo que es problable lo de Calafiori porque no creo que Italia se quede afuera otra vez en un mundial de 64 selecciones)
2026-07-18 23:15:06
5
jugado1
★彡JORDAN彡★ :
Pero justificar a Barco o como sea, salio a campo siendo suplente cuando esta prohibido y es tarjeta amarilla y se pone a correr a festejar en sus caras diciendo algunas palabras para encima seguir bulandorse.
2026-07-18 19:37:10
0
guruxiomii
⋮ ⌗ 🎼┆ ✘ioma𝐀𝐊𝐃 :
Gonza educando😁😁😁😁
2026-07-18 17:03:29
2
guruxiomii
⋮ ⌗ 🎼┆ ✘ioma𝐀𝐊𝐃 :
muybien gonza
2026-07-18 17:03:34
4
kiuki_sayori
kiuki ( ^▽^) 💫 :
te amo gonza casemonos, ya me harta a ver a sus fans :(
2026-07-18 22:23:55
0
cande.iu0
𝕮𝖆𝖓𝖉𝖊 🦇 :
ya están sacado una disque entrevista falsa donde belliIngham dice que colo le grito "payaso" y las personas se lo creen
2026-07-18 14:18:08
2
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