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Lecture
Number Theory: Foundations and Applications in Cryptography
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Related lectures (25)
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Number Theory: Division, Remainder, Congruence
Covers number theory, division, remainder, congruence, prime numbers, integer representation, and the Euclidean algorithm.
Public-Key Cryptography: Standards and Applications
Discusses public-key cryptography, focusing on standards like RSA, DSA, and AES, and their applications in secure communications.
RSA Cryptosystem: Encryption and Decryption Process
Covers the RSA cryptosystem, encryption, decryption, group theory, Lagrange's theorem, and practical applications in secure communication.
Introduction to Cryptography: One-Time Pad and Public-Key Systems
Introduces cryptography, focusing on the one-time pad and public-key systems, emphasizing privacy and authenticity in information security.
Cryptography: Tools and Techniques
Explores cryptography basics, key exchange protocols, elliptic curve cryptography, and digital signatures for secure data transmission.
Introduction to Cryptography: Fundamentals and Applications
Covers the fundamentals of cryptography, including symmetric encryption, digital signatures, and secure communication standards.
Public-Key Cryptography: Post-Quantum and Access Control
Explores public-key cryptography, post-quantum systems, and access control mechanisms in depth.
RSA Encryption: Principles and Applications
Explores RSA encryption principles, factorization challenges, and practical applications in data security.
Public-Key Cryptography: ECDSA and BLS
Explores ECDSA and BLS signature schemes, NFC credit card payment, and breaking RSA and DH cryptography.
Cryptography Basics
Introduces cryptography basics, covering encryption, data integrity, error detection, digital signatures, and authentication.