proprietary cryptosystem - перевод на русский
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proprietary cryptosystem - перевод на русский

Damgaard-Jurik cryptosystem; Damgaard–Jurik cryptosystem; Damgård-Jurik cryptosystem; Damgard–Jurik cryptosystem; Damgard-Jurik cryptosystem

proprietary cryptosystem      
фирменная криптосистема, криптосистема пользователя фирменная криптосистема, криптосистема пользователя
copyrighted software         
COMPUTER SOFTWARE RELEASED UNDER A LICENSE RESTRICTING USE, STUDY OR REDISTRIBUTION
Closed source software; Closed source movement; Non-free software; Closed-source; Proprietary computer software; Semi-free software; Closed software; Proprietary software license; Proprietary Software; Proprietary Technology; Non free software; Closed Source; Proprietary software licence; Closed source; Closed-source software; Proprietary technology application; Proprietary (software); Closed Source Software; Binary-only software; Proprietary license; Closed-source Software; Proprietary software licenses; Proprietary licence; Proprietary program; Proprietary app; Copyrighted software; Privative software; Proprioty software; Nonfree software; Proprietize; Proprietization; Proprietary software development; Closed-source app; Proprietary application; Proprietary programs; Proprietary apps; Proprietary applications; Closed-source apps; Closed-source program; Closed-source programs
программное обеспечение, защищенное авторским правом
proprietary colony         
  • [[Cecil Calvert, 2nd Baron Baltimore]] was the first Proprietor, and his brother [[Leonard Calvert]] was the first Proprietary Governor of the [[Province of Maryland]].
TYPE OF BRITISH COLONY ESPECIALLY IN NORTH AMERICA AND THE CARIBBEAN IN THE 17TH CENTURY
Proprierty Governor; Proprietary governor; Proprietary Colony; Proprietary colonies; Proprietary Governor

[prəpraiət(ə)ri'kɔləni]

история

колония

пожалованная Британской короной какому-л. лицу или лицам (с полным правом управления)

Определение

P/L

Википедия

Damgård–Jurik cryptosystem

The Damgård–Jurik cryptosystem is a generalization of the Paillier cryptosystem. It uses computations modulo n s + 1 {\displaystyle n^{s+1}} where n {\displaystyle n} is an RSA modulus and s {\displaystyle s} a (positive) natural number. Paillier's scheme is the special case with s = 1 {\displaystyle s=1} . The order φ ( n s + 1 ) {\displaystyle \varphi (n^{s+1})} (Euler's totient function) of Z n s + 1 {\displaystyle Z_{n^{s+1}}^{*}} can be divided by n s {\displaystyle n^{s}} . Moreover, Z n s + 1 {\displaystyle Z_{n^{s+1}}^{*}} can be written as the direct product of G × H {\displaystyle G\times H} . G {\displaystyle G} is cyclic and of order n s {\displaystyle n^{s}} , while H {\displaystyle H} is isomorphic to Z n {\displaystyle Z_{n}^{*}} . For encryption, the message is transformed into the corresponding coset of the factor group G × H / H {\displaystyle G\times H/H} and the security of the scheme relies on the difficulty of distinguishing random elements in different cosets of H {\displaystyle H} . It is semantically secure if it is hard to decide if two given elements are in the same coset. Like Paillier, the security of Damgård–Jurik can be proven under the decisional composite residuosity assumption.

Как переводится proprietary cryptosystem на Русский язык