Searching for authors named "John Black" – sorted by Relevance.
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1 Introduction Strengthening Cryptosystems by Re-Keying
- 1 Introduction Strengthening Cryptosystems by Re-Keying John Black February 9, 1999 In light
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PMAC: Proposal to NIST for a parallelizable message authentication code
- +1 530 752 4767 fax Inventor and Owner: Same as submitter Auxiliary submitter: John Black jrb
- Cited by 2 (0 self) – Add To MetaCart
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A Suggestion for Handling Arbitrary-Length Messages with the CBC MAC
- -Length Messages with the CBC MAC 1 Introduction John Black University of Nevada, Reno (USA) jrb@(email omitted); www
- Cited by 5 (0 self) – Add To MetaCart
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Side-Channel Attacks on Symmetric Encryption Schemes: The Case for Authenticated Encryption
- Side-Channel Attacks on Symmetric Encryption Schemes: The Case for Authenticated Encryption John
- Cited by 19 (1 self) – Add To MetaCart
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A Block-Cipher Mode of Operation for Parallelizable Message Authentication
- A Block-Cipher Mode of Operation for Parallelizable Message Authentication J. Black # P. Rogaway
- Cited by 36 (5 self) – Add To MetaCart
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Ciphers with Arbitrary Finite Domains
- Ciphers with Arbitrary Finite Domains John Black 1 and Phillip Rogaway 2 1 Dept. of Computer
- Cited by 14 (3 self) – Add To MetaCart
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CBC MACs for arbitrary-length messages: The three-key constructions
- CBC MACs for Arbitrary-Length Messages: The Three-Key Constructions John Black 1 and Phillip
- Cited by 37 (11 self) – Add To MetaCart
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Strengthening Cryptosystems by Re-Keying
- Strengthening Cryptosystems by Re-Keying John Black February 9, 1999 1 Introduction In light
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A Suggestion for Handling Arbitrary-Length Messages with the CBC MAC
- -Length Messages with the CBC MAC John Black University of Nevada, Reno (USA) jrb@(email omitted); www
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Explicit Network Scheduling
- Explicit Network Scheduling Richard John Black Churchill College University of Cambridge A
- Cited by 28 (4 self) – Add To MetaCart

