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0:21
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Data with Sarfraz ·18.6k views
The Recursion Algorithm That Breaks Your Brain 🧠 #coding #programming #python #shorts #viralvideo
Tower of Hanoi for N=5 disks — solved in 31 moves using recursion 🔥 Every recursive call breaks the problem down: move n-1 disks out of the way, move the biggest disk, then move the n-1 disks back. That's it. That's the whole algorithm. Code shown in the video: void solve(int n, char from, char to, char via) { if (n == 0) return; solve(n ...
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Some spiritual circles will have you believe the earth is surrounded by false light That's not actually God's light at the end of the tunnel but a trap to keep your soul bound to earth ok, but what surrounds that false light and what surrounds that and what surrounds that Eventually it is recursive and you have to simply ask yourself so you believe in a loving creator or are you trapped in some kind of evil AI simulation or whatever else people will hebe you believe? I honestly don't know, but I
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Editing my favorite actor from zeroday2003#zeroday2003 #zeroday #elephant #elephant2003 #actor Graham’s number is one of the largest numbers ever used in a serious mathematical proof. It was introduced by mathematician Ronald Graham in 1971 as an upper bound for a specific problem in Ramsey theory (a branch of combinatorics dealing with conditions under which order must appear in large enough structures). Why is it famous? • It is insanely large — so large that it dwarfs other famous huge number
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HAPPY BIRTHDAY ARTHUR!! ai actor btw 😳 #🍵🌊🌊 #truecringecomunnity #actor #arthur #zeroday2003 Graham’s number is an unimaginably immense finite integer that served as an upper bound in a Ramsey theory mathematical proof by Ronald Graham. It is far too large to be written in standard scientific notation, as the observable universe does not contain enough Planck volumes to hold its individual digits. To express it, mathematicians use Knuth’s up-arrow notation, where a single arrow (\\(\%uparrow
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