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  2. AES Corporation - Wikipedia

    en.wikipedia.org/wiki/AES_Corporation

    AES is headquartered in Arlington, Virginia, and is one of the world's leading power companies, generating and distributing electric power in 15 countries [2] and employing 10,500 people worldwide. AES Corporation is a global Fortune 500 power company. [3] AES Ranks in the Top Ten of Fast Company's 2022 Best Workplaces for Innovators.

  3. Jarmila Wolfe - Wikipedia

    en.wikipedia.org/wiki/Jarmila_Wolfe

    Wimbledon. 3R ( 2015) US Open. QF ( 2011) Team competitions. Fed Cup. 6–10. Jarmila Wolfe [1] [2] (née Gajdošová, formerly Groth; born 26 April 1987) is a Slovak-Australian former tennis player. In her career, she won two singles titles and one doubles title on the WTA Tour, as well as 14 singles and ten doubles titles on the ITF Women's ...

  4. Advanced Encryption Standard process - Wikipedia

    en.wikipedia.org/wiki/Advanced_Encryption...

    Advanced Encryption Standard process. The Advanced Encryption Standard (AES), the symmetric block cipher ratified as a standard by National Institute of Standards and Technology of the United States (NIST), was chosen using a process lasting from 1997 to 2000 that was markedly more open and transparent than its predecessor, the Data Encryption ...

  5. Jarmila Gajdosova - Wikipedia

    en.wikipedia.org/?title=Jarmila_Gajdosova&...

    This page was last edited on 3 January 2016, at 23:51 (UTC).; Text is available under the Creative Commons Attribution-ShareAlike License 4.0; additional terms may ...

  6. Galois/Counter Mode - Wikipedia

    en.wikipedia.org/wiki/Galois/Counter_Mode

    Galois/Counter Mode. In cryptography, Galois/Counter Mode ( GCM) [1] is a mode of operation for symmetric-key cryptographic block ciphers which is widely adopted for its performance. GCM throughput rates for state-of-the-art, high-speed communication channels can be achieved with inexpensive hardware resources.

  7. Advanced Encryption Standard - Wikipedia

    en.wikipedia.org/wiki/Advanced_Encryption_Standard

    For AES-128, the key can be recovered with a computational complexity of 2 126.1 using the biclique attack. For biclique attacks on AES-192 and AES-256, the computational complexities of 2 189.7 and 2 254.4 respectively apply. Related-key attacks can break AES-256 and AES-192 with complexities 2 99.5 and 2 176 in both time and data, respectively.

  8. AES instruction set - Wikipedia

    en.wikipedia.org/wiki/AES_instruction_set

    AES-NI (or the Intel Advanced Encryption Standard New Instructions; AES-NI) was the first major implementation. AES-NI is an extension to the x86 instruction set architecture for microprocessors from Intel and AMD proposed by Intel in March 2008. A wider version of AES-NI, AVX-512 Vector AES instructions (VAES), is found in AVX-512.

  9. AES key schedule - Wikipedia

    en.wikipedia.org/wiki/AES_key_schedule

    The key schedule. AES key schedule for a 128-bit key. Define: N as the length of the key in 32-bit words: 4 words for AES-128, 6 words for AES-192, and 8 words for AES-256. K0, K1, ... KN-1 as the 32-bit words of the original key. R as the number of round keys needed: 11 round keys for AES-128, 13 keys for AES-192, and 15 keys for AES-256 [note 4]