Similarities between Confusion and diffusion and Substitution–permutation network
Confusion and diffusion and Substitution–permutation network have 5 things in common (in Unionpedia): Advanced Encryption Standard, Avalanche effect, Ciphertext, Cryptography, Plaintext.
Advanced Encryption Standard
The Advanced Encryption Standard (AES), also known by its original name Rijndael, is a specification for the encryption of electronic data established by the U.S. National Institute of Standards and Technology (NIST) in 2001.
Advanced Encryption Standard and Confusion and diffusion · Advanced Encryption Standard and Substitution–permutation network ·
Avalanche effect
In cryptography, the avalanche effect is the desirable property of cryptographic algorithms, typically block ciphers and cryptographic hash functions, wherein if an input is changed slightly (for example, flipping a single bit), the output changes significantly (e.g., half the output bits flip).
Avalanche effect and Confusion and diffusion · Avalanche effect and Substitution–permutation network ·
Ciphertext
In cryptography, ciphertext or cyphertext is the result of encryption performed on plaintext using an algorithm, called a cipher.
Ciphertext and Confusion and diffusion · Ciphertext and Substitution–permutation network ·
Cryptography
Cryptography or cryptology (from κρυπτός|translit.
Confusion and diffusion and Cryptography · Cryptography and Substitution–permutation network ·
Plaintext
In cryptography, plaintext or cleartext is unencrypted information, as opposed to information encrypted for storage or transmission.
Confusion and diffusion and Plaintext · Plaintext and Substitution–permutation network ·
The list above answers the following questions
- What Confusion and diffusion and Substitution–permutation network have in common
- What are the similarities between Confusion and diffusion and Substitution–permutation network
Confusion and diffusion and Substitution–permutation network Comparison
Confusion and diffusion has 15 relations, while Substitution–permutation network has 41. As they have in common 5, the Jaccard index is 8.93% = 5 / (15 + 41).
References
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