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Elliptic Curves and Lattices
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Related lectures (32)
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Asymmetric Cryptography and Password-based Authentication
Covers asymmetric cryptography, hybrid encryption, Diffie-Hellman key exchange, authentication challenges, secure password storage, and transfer methods.
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Covers fundamental concepts of cryptography, including primitives, security, encryption, and authentication, exploring symmetric and public-key cryptography, key agreement, commitment schemes, and hash functions.
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Introduces cryptography, focusing on the one-time pad and public-key systems, emphasizing privacy and authenticity in information security.
Public-Key Cryptography: Fundamentals and Applications
Explores public-key cryptography, covering key exchange, signature schemes, and real-world applications like the Signal protocol.
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Explores the practical applications of elliptic curve cryptography in various real-world scenarios and cryptographic operations.
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Untitled
Asymmetric Cryptography: RSA, Elliptic Curves, Lattices
Explores RSA, elliptic curves, and lattice-based cryptography for secure communication.
Applied Cryptography: Assymetric Cryptography
Introduces asymmetric cryptography, digital signatures, and hybrid encryption for secure communication.
Introduction to Elliptic Curves
Covers the basics of elliptic curves, their significance in cryptography, and their applications in public key cryptography.