@fut_regatas: 🤣🤣Escolhendo a lógica!!!

fut_regatas
fut_regatas
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Saturday 12 September 2026 01:03:00 GMT
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wilsonsouza327
wilsonsouza937 :
quem fala a verdade não merece castigo kkkkkkkkkkkkkkkkk
2026-09-12 03:02:36
37
weltonalves327
weltonalves327 :
Esse Souza realmente entende de futebol!😂😂
2026-09-12 03:05:48
63
amandaejeann
Amanda ♥️ Jean :
Assisti umas 20 vezes o vídeo 😂😂😂😂😂
2026-09-12 12:52:02
5
2lsantos1
Luanderson :
falou pouco mas falou a vdd
2026-09-12 16:49:37
3
00pp468
00pp :
1 x 0 no sofrimento flamengo
2026-09-12 14:58:49
1
naldinhorodrigues1245
Naldinho Rodrigues :
kkkkk
2026-09-12 02:20:26
2
luiz.eduardo9472
Luiz Eduardo :
dizer a verdade agora virou errado dizer. 🤣
2026-09-12 04:02:00
8
cicerooliveirajr2
cicerooliveirajr2 :
Kkkkkkk
2026-09-12 20:46:55
0
user1807359663576
nona :
Esse vídeo é bom d+😂😂😂😂😂
2026-09-12 11:29:24
1
tondias07
tondias07 :
tmj souza
2026-09-12 15:24:20
1
tonalut
LU - 🦋🇧🇷 :
Souza Souza
2026-09-12 07:31:02
1
lailsonsantos513
lailsonsantos5 :
Souza contra neto
2026-09-12 03:55:58
1
zealmeidamacedo
Zé Almeida :
Ele só falou a verdade neto😂😂😂
2026-09-12 04:53:12
2
juscelino.nascime54
Juscelino Nascimento :
kkkkk
2026-09-12 19:56:30
0
daniel.pereira7082
@dpsmk4agrofla :
4x1 Flamengo CRF
2026-09-12 10:40:07
0
leilanealves77
Leilane alves :
[Lágrimas de alegria][Lágrimas de alegria][Lágrimas de alegria][Lágrimas de alegria][Lágrimas de alegria][Lágrimas de alegria] errado ele não tá
2026-09-12 18:02:46
0
claudeilsoncarva1
kadé :
kkkkk🤣😂😅
2026-09-12 17:36:27
0
marcos_souzajose
Marcos Souza :
meu palpite 2corinthians 3 flamengo
2026-09-12 18:49:53
0
eltonjr73
eujjnr🥏 :
SOUZA VAI PEGA A CONTA ❌🤣 PORQUE TA FALANDO A VERDADE
2026-09-12 18:31:58
0
henriquerochamanaus
Henrique Rocha7745 :
Na supercopa eu vi quem foi melhor
2026-09-12 20:56:47
0
dennyshelby085
Đ€ŇŇ¥🍷🗿 :
kkkkk
2026-09-12 19:31:55
0
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I hate school so much bro Graham's number is an extremely large finite number that came from a problem in mathematics involving combinations of points and colors. To understand how it is built, start with ordinary multiplication. For example, three times three is nine. Exponentiation is repeated multiplication. Three to the third power means three multiplied by itself three times, giving twenty-seven. Then there is an operation called tetration, which is repeated exponentiation. Three tetrated to three means three raised to the power of three, and then that result is used as another exponent. This gives three raised to the twenty-seventh power. Mathematicians can keep defining even more powerful operations beyond tetration. Knuth's up-arrow notation is a way of describing these operations. Graham's number starts with three followed by four up-arrows followed by three. That creates the first number in a sequence called g1. Then g2 is made using three, three, and a number of up-arrows equal to g1. Then g3 is made using a number of up-arrows equal to g2. This continues, with each new number determining how many up-arrows are used to create the next number. The process is repeated sixty-four times. Graham's number is the sixty-fourth number in this sequence. The important part is that the number of operations becomes unimaginably huge before you even reach the final number. Even the first number in the sequence is far too large to write out normally. Graham's number is vastly, vastly larger than that. Despite being unbelievably enormous, Graham's number is still finite. It is not infinity. It has a definite value, and in principle it has a specific last digit, even though writing the entire number out is physically impossible.#fyp#school#tired#monday#goviral
I hate school so much bro Graham's number is an extremely large finite number that came from a problem in mathematics involving combinations of points and colors. To understand how it is built, start with ordinary multiplication. For example, three times three is nine. Exponentiation is repeated multiplication. Three to the third power means three multiplied by itself three times, giving twenty-seven. Then there is an operation called tetration, which is repeated exponentiation. Three tetrated to three means three raised to the power of three, and then that result is used as another exponent. This gives three raised to the twenty-seventh power. Mathematicians can keep defining even more powerful operations beyond tetration. Knuth's up-arrow notation is a way of describing these operations. Graham's number starts with three followed by four up-arrows followed by three. That creates the first number in a sequence called g1. Then g2 is made using three, three, and a number of up-arrows equal to g1. Then g3 is made using a number of up-arrows equal to g2. This continues, with each new number determining how many up-arrows are used to create the next number. The process is repeated sixty-four times. Graham's number is the sixty-fourth number in this sequence. The important part is that the number of operations becomes unimaginably huge before you even reach the final number. Even the first number in the sequence is far too large to write out normally. Graham's number is vastly, vastly larger than that. Despite being unbelievably enormous, Graham's number is still finite. It is not infinity. It has a definite value, and in principle it has a specific last digit, even though writing the entire number out is physically impossible.#fyp#school#tired#monday#goviral

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