Theory of Cryptography [electronic resource] : 9th Theory of Cryptography Conference, TCC 2012, Taormina, Sicily, Italy, March 19-21, 2012. Proceedings / edited by Ronald Cramer.

Contributor(s): Cramer, Ronald [editor.] | SpringerLink (Online service)Material type: TextTextSeries: Lecture Notes in Computer Science ; 7194Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2012Description: 672 p. 6 illus. online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9783642289149Subject(s): Computer science | Computer Communication Networks | Data protection | Data encryption (Computer science) | Coding theory | Computer software | Computer Science | Data Encryption | Computer Communication Networks | Systems and Data Security | Coding and Information Theory | Math Applications in Computer Science | Algorithm Analysis and Problem ComplexityAdditional physical formats: Printed edition:: No titleDDC classification: 005.82 LOC classification: QA76.9.A25Online resources: Click here to access online In: Springer eBooksSummary: This book constitutes the thoroughly refereed proceedings of the 9th Theory of Cryptography Conference, TCC 2012, held in Taormina, Sicily, Italy, in March 2012. The 36 revised full papers presented were carefully reviewed and selected from 131 submissions. The papers are organized in topical sections on secure computation; (blind) signatures and threshold encryption; zero-knowledge and security models; leakage-resilience; hash functions; differential privacy; pseudorandomness; dedicated encryption; security amplification; resettable and parallel zero knowledge.
Item type: E-BOOKS
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This book constitutes the thoroughly refereed proceedings of the 9th Theory of Cryptography Conference, TCC 2012, held in Taormina, Sicily, Italy, in March 2012. The 36 revised full papers presented were carefully reviewed and selected from 131 submissions. The papers are organized in topical sections on secure computation; (blind) signatures and threshold encryption; zero-knowledge and security models; leakage-resilience; hash functions; differential privacy; pseudorandomness; dedicated encryption; security amplification; resettable and parallel zero knowledge.

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