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Lecture
Cryptography Fundamentals
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Related lectures (30)
Cryptography basics: Quantum Systems
Covers the basics of cryptography, encryption, decryption, error detection, and the impact of quantum computing.
Diffie-Hellman Cryptography: Key Exchange & ElGamal
Covers Diffie-Hellman key exchange, DDH problem, ElGamal cryptosystem, and security implications.
Applied Cryptography: Assymetric Cryptography
Introduces asymmetric cryptography, digital signatures, and hybrid encryption for secure communication.
Time-Lock Encryption: Practical Applications and Algorithms
Provides an overview of time-lock encryption and its practical applications, focusing on threshold time-lock encryption algorithms and their security properties.
Diffie-Hellman and ElGamal Cryptosystems
Explores Diffie-Hellman key exchange, ElGamal cryptosystem, and their security applications in cryptography.
Public-Key Cryptography: ECDSA and BLS
Explores ECDSA and BLS signature schemes, NFC credit card payment, and breaking RSA and DH cryptography.
Asymmetric Cryptography: RSA, Elliptic Curves, Lattices
Explores RSA, elliptic curves, and lattice-based cryptography for secure communication.
Public-Key Cryptography: Fundamentals and Applications
Explores public-key cryptography, covering key exchange, signature schemes, and real-world applications like the Signal protocol.
Public Key Cryptography: RSA
Explores public key cryptography, focusing on RSA, key generation, encryption, decryption, security challenges, and vulnerabilities.
Postquantum TLS: Key Exchange and Authentication
Explores Post-Quantum TLS implementation without handshake signatures, focusing on key exchange and authentication using KEM.
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