The new number of calculated digits for pi is 314 trillion.



 The new number of calculated digits for pi is 314 trillion. This number was created using a monolithic computer in 110 days. There is no ending for that number, which is. About 3,14... Pi is quite easy to calculate if we need only a couple of decimals. The pi is the ratio of the circumference of a circle to its diameter. And NASA tells. That only about 37 digits of pi are needed to calculate the circumference of the observable universe with extreme precision. The fact is that. The pi seems infinite. And this means. That there will be more and more decimals that the machines can generate, using pi. 

Or its formula. This causes one interesting thing. The pi is a quite good tool for calculating certain types of quantum decimal numbers. Researchers used a computer without breaks for 110 days. And they didn’t find an end for that decimal number. Next time, they could start from that point. There are 314 trillion digits calculated. And maybe that thing can bring new things about the pi. The thing that makes pi interesting is this. 

There are no certain sequences in this decimal. And that causes an idea. In cryptology, pi operates along with the Riemann conjecture, or the Riemann Zeta function. This opens new paths for cryptology. The problem with the Riemann Zeta function is the same as with pi. If we think of the possibility of using those things in cryptology. The Riemann Zeta function is a perfect tool. To create prime numbers. Prime numbers play a vital role in cryptology. Systems use them for encrypting data. 

But the problem is that the Riemann Zeta function always generates the same prime number series. And that means that even in the case where the system generates very long prime numbers, the neural network. It can share the data between those processors. And that means it can try brute force to open encrypted information. The pi could be used to create a very long decimal. That means the numbers that the system creates using the Riemann conjecture, it. Can. Use pi to create the code. Or a decimal number that the system . 

 It can multiply by the prime numbers. This is one way to hide the encryption key from the public. When the prime number. It is created by using the Riemann Zeta function.  Multiplied by some other decimal number. This means that those other numbers can be used to cover the prime numbers that Riemann’s conjecture predicts. 


https://interestingengineering.com/culture/engineers-smash-pi-record-with-one-machine


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