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YOU SAID:

Some encryption schemes can be proven secure based on the presumed hardness of a mathematical problem like factoring the product of two large primes or computing discrete logarithms.

INTO JAPANESE

2 つの大きな素数の積を素因数分解や離散対数の計算のような数学的問題の推定の硬さに基づくに、一部の暗号化スキームはセキュリティで保護された証明できます。

BACK INTO ENGLISH

Some encryption schemes are secure based on the hardness of a mathematical problem like factoring and discrete logarithm computing the product of two large primes, can attest.

INTO JAPANESE

一部の暗号化スキームが数学の問題の硬さに基づくセキュリティで保護されたように素因数分解と離散対数の計算の 2 つの大きな素数の積を証明することができます。

BACK INTO ENGLISH

You can prove a product of factoring and discrete logarithm of two large primes was protected by security encryption scheme in part based on the hardness of a mathematical problem.

INTO JAPANESE

素因数分解の製品を証明することができます、2 つの大きな素数の離散対数は部分的に数学の問題の硬さに基づくセキュリティ暗号化方式によって保護されました。

BACK INTO ENGLISH

Discrete logarithm of a large prime factoring products prove that the two were protected by security encryption method partially based on the hardness of a mathematical problem.

INTO JAPANESE

製品の大規模な素因の離散対数は 2 つが部分的に数学の問題の硬さに基づくセキュリティ暗号化方式によって保護されていたことを証明します。

BACK INTO ENGLISH

Discrete logarithm of a large factoring products proves that were protected by security encryption scheme based on the hardness of a mathematical problem in part two.

INTO JAPANESE

素因数分解の大型製品の離散対数は、パート 2 では数学の問題の硬さに基づくセキュリティ暗号化方式によって保護されていたことを証明します。

BACK INTO ENGLISH

Discrete logarithm of factoring products proves that were protected by security encryption scheme based on the hardness of a mathematical problem in part 2.

INTO JAPANESE

製品を素因数分解の離散対数は、パート 2 では数学の問題の硬さに基づくセキュリティ暗号化方式によって保護されていたことを証明します。

BACK INTO ENGLISH

Products discrete logarithm of a factoring proves, that were protected by security encryption scheme based on the hardness of a mathematical problem in part 2.

INTO JAPANESE

製品、素因数分解の離散対数を証明する、パート 2 では数学の問題の硬さに基づくセキュリティ暗号化方式によって保護されていたこと。

BACK INTO ENGLISH

It was protected by security encryption method to prove the discrete logarithm of products, factoring, part 2 is based on the hardness of a mathematical problem.

INTO JAPANESE

それは、製品、素因数分解、パート 2 の離散対数は数学の問題の硬度に基づいて証明するセキュリティ暗号化方式で保護されました。

BACK INTO ENGLISH

It was protected by security encryption scheme based on the hardness of a mathematical problem to prove the discrete logarithm of products, factoring, part 2.

INTO JAPANESE

それは、数学の問題の硬度で製品、ファクタリング、パート 2 の離散対数を証明するためにセキュリティ暗号化方式で保護されました。

BACK INTO ENGLISH

Because it proves the discrete logarithm of products, factoring, part 2 in the hardness of a mathematical problem was protected by security encryption.

INTO JAPANESE

製品、ファクタリング、離散対数を証明するため数学の問題の硬さのパート 2 はセキュリティの暗号化によって保護されていました。

BACK INTO ENGLISH

Part 2 of the hardness of a mathematical problem was protected by security encryption to demonstrate products, factoring and discrete logarithm.

INTO JAPANESE

数学の問題の硬度のパート 2 は、製品、素因数分解や離散対数を示すセキュリティ暗号化で保護されていました。

BACK INTO ENGLISH

Part 2 of the hardness of a mathematical problem was protected by security encryption products, factoring and discrete logarithm indicates.

INTO JAPANESE

数学の問題の硬度のパート 2 はセキュリティ暗号化製品、因数分解によって保護された、離散対数を示します。

BACK INTO ENGLISH

Part 2 of the hardness of a mathematical problem is protected by security encryption products, factoring and discrete logarithm.

INTO JAPANESE

数学の問題の硬度のパート 2 は、セキュリティ暗号化製品、素因数分解や離散対数によって保護されます。

BACK INTO ENGLISH

Part 2 of the hardness of a mathematical problem is protected by security encryption products, factoring and discrete logarithm.

Equilibrium found!

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