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Cryptology involves both a fields of cryptography and cryptanalysis. Computer cryptography is aslo called bitstream cryptanalysis. A operations of all a algorithmic rule within computer cryptanalysis or even bitstream cryptography come according to the basic unit of bitstream. Meanwhile a bitstream consists of the binary bits of bit zero "0" & bit of these "1".

For person-depending cryptanalysis, these are of these-symbol-numbers of-meaning; whereas these are a single-symbol-a single-meaning for computer cryptography. Hence, no of these-way work in the computer cryptography, which is according to mathematical manipulation of bitstream. What is more, a being of mighty computer occurs as must for man to decrypt and/or to decode bitstream messages manufactured from either complex mathematical algorithmic program.

Then again, a polysemy and multimedia paradox features of individual-depending cryptography has caused a unbreakable situation by any cryptanalytical techniques for the messages encrypted and/or encoded under the human-depending cryptanalytics. E.g., biometrics-based cryptology, language-depending cryptanalysis, event-depending cryptanalysis & image-based cryptanalysis (or even visual cryptography) are among a couple examples of man-depending cryptanalysis. This is the major difference of machine language & mortal language.

A recent event of Hurricane Katrina a wind tragedy may propose a requisite require for mortal-depending cryptanalysis across the computer cryptanalysis. Individual-depending cryptanalysis may be utilized under the virtually all critical situation whereas computer cryptanalytics might ask for low-priced computing power of a computer. A computer cryptanalytics is fast & big for the speed and coverage severally every bit in comparison person-depending cryptanalysis. Even so, sufficient electricity power supply is the bottleneck for computer cryptanalytics. Hence these are proposed to keep close at h& two a computer cryptanalysis and man-depending cryptanalysis to become utilized together. Notwithstanding, for a virtually all critical situation, these are proposed to use person-depending cryptanalysis when the final measure.

Sources
Created by Xpree @ [Time, Space] = [1700:06Sep05 Zone H UTC+0800, Earth 2N105E].

Limited by Xpree @ [Time, Space] = [1300:07Sep05 Zone H UTC+0800, Earth 2N105E].

ECMNET
Project to factor numbers using the elliptic curve method. Client and server software.

Generalized Fermat Primes Search
Project provides software to search for primes of a specific form. Coordinated via email.

The Prime Pages
Prof. Chris Caldwell's database of virtually every large or otherwise interesting prime number known; includes the 5,000 largest known prime numbers and records for specific types.

MM61
Attempt at factoring the huge Mersenne number 2^(2^61-1)-1. Software for Windows, DOS and Linux. Work reservation via email.

Goldbach's Conjecture and Factoring the Cryptographic Modulus
Algebraic Factoring of the Cryptography Modulus and Proof of Goldbach's Conjecture

Search for the Largest Proth Prime
An internet group to help find the 5th largest prime number, coordinated by William Garnett. Windows/Linux software available.

Ellipsa - Elliptic Curve Primality Proving
Primo, a primality proving program based on the ECPP algorithm. With Primo one can check crypto-primes and prove whether or not they are actually prime.

Great Internet Mersenne Prime Search
Online search for Mersenne prime numbers, found largest several primes.

Seventeen Or Bust
A distributed attack on the Sierpinski problem, trying to find the last remaining 17 numbers.

The Riesel Sieve Project
Distributed project to help solve the Riesel problem through the use of donated unused CPU cycles.


Science: Math: Number Theory: Computational






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