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| From | 711 Spooky Mart <711@spooky.mart> |
|---|---|
| Newsgroups | sci.crypt |
| Subject | Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography |
| Date | 2021-09-27 10:54 -0500 |
| Organization | Aioe.org NNTP Server |
| Message-ID | <sispdm$1vbj$1@gioia.aioe.org> (permalink) |
| References | <aa094d05-f597-4340-98c2-cd4f5c0df2f0n@googlegroups.com> |
On 9/18/21 11:33 AM, austin obyrne wrote: > The cryptography depends entirely on my invention of vector factoring > which is a new addition to the standard list of methods in vector > arithmetic. Vector factoring did not exist before now in mathematics. > It is necessary for me to say this for the experienced mathematician > to take on board and not for any vain glorious claim. I present here some questions and some devil advocacy. Vector factoring did not exist prior to you inventing it--are you sure? Did you ever study elliptic curve point multiplications? I learned about that decades ago in junior high school. You literally generate a field, then take vectors, and generate new pseudorandom fields and plot new vectors based on the input function. This is used several ways in cryptography and you actually factor and multiply vectors to points along the curve. One can establish rules for choosing and bifurcating points along the pointmult vectors. One can also choose random values and factor them to generate graphing vectors and curves, then multiply random sets together to get the unions of vectors and curves. Finding the original values that were joined is really hard. That is literally factoring vectors and curves. You might remember the easy version of this from Algebra I graphing (F.O.I.L.) What about topological knots? One can perform myriad vector operations and generations in topological theory that might fit the definition of vector factoring. With my limited knowledge of topological theory I can see how to represent lots of algebraic cryptography using topology constructs, including the idea of vector factoring, union, shifting, overlapping, bounding, etc. What about overlapping matrices? Vector factoring literally is done when combining operations in overlapping directional matrices. (These are matrices with bounding rules, union rules and such, and rules for directions of operations within the field and between field sets). I don't know of anyone currently doing any work with this but I discovered its usefulness long ago. Does that allow me to claim that I invented vector factoring? Certain automata might also involve vector factoring in the way knots and matrices can be adapted. Theoretically imagine a dispute over your claim of invention. If I filed suit to challenge your claim, what would I get if I won the judgment? What is the prize for the person who holds this claim? How would you present and defend your claim to the invention of vector factoring in a suit? How would you disprove the counterclaim? -- ███████████████████████████████████ █░░░░░░░░░░░█░░░░░░░░███░░░░░░░░███ █░░███████░░█░░████░░███░░████░░███ [chan] 711 █░░░░░░░██░░█░░░░██░░███░░░░██░░███ spooky mart ██████░░██░░███░░██░░█████░░██░░███ always open ██████░░██░░███░░██░░█████░░██░░███ stay spooky ██████░░██░░█░░░░██░░░░█░░░░██░░░░█ https://bitmessage.org ██████░░██░░█░░██████░░█░░██████░░█ ██████░░░░░░█░░░░░░░░░░█░░░░░░░░░░█ ███████████████████████████████████
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The Elegance of the Encryption/Decryption Model in Vector Cryptography austin obyrne <ao402468@gmail.com> - 2021-09-18 09:33 -0700
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography David Harrison <daveh69422@gmail.com> - 2021-09-18 09:55 -0700
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography Richard Heathfield <rjh@cpax.org.uk> - 2021-09-18 18:17 +0100
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography David Harrison <daveh69422@gmail.com> - 2021-09-19 07:19 -0700
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography Richard Heathfield <rjh@cpax.org.uk> - 2021-09-19 15:36 +0100
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography Rich <rich@example.invalid> - 2021-09-19 22:21 +0000
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography 711 Spooky Mart <711@spooky.mart> - 2021-09-27 11:08 -0500
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography austin obyrne <ao402468@gmail.com> - 2021-09-18 10:48 -0700
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography MM <mrvmurray@gmail.com> - 2021-09-18 11:30 -0700
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography Richard Heathfield <rjh@cpax.org.uk> - 2021-09-18 19:36 +0100
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography austin obyrne <ao402468@gmail.com> - 2021-09-19 01:03 -0700
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography Richard Heathfield <rjh@cpax.org.uk> - 2021-09-19 10:08 +0100
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography MM <mrvmurray@gmail.com> - 2021-09-19 02:47 -0700
Re: The Elegance of the Encryption/Decryption Model in Vector Cryptography 711 Spooky Mart <711@spooky.mart> - 2021-09-27 10:54 -0500
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