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Lecture
Information Security: Integrity and Responsibility
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Related lectures (31)
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Explores public-key cryptography, key exchange, and digital signatures, discussing practical applications and security mechanisms.
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Covers the fundamentals of cryptography, including symmetric encryption, digital signatures, and secure communication standards.
Cryptography: Fundamentals and Applications
Introduces the fundamentals of cryptography, covering symmetric and asymmetric encryption, hash functions, key infrastructure, and data integrity.
Asymmetric Cryptography: Basics and Applications
Explores asymmetric cryptography basics, including encryption, signatures, and Diffie-Hellman, along with advanced topics like RSA and quantum computing implications.
Cryptography: Tools and Techniques
Explores cryptography basics, key exchange protocols, elliptic curve cryptography, and digital signatures for secure data transmission.
Public-Key Cryptography: Post-Quantum and Access Control
Explores public-key cryptography, post-quantum systems, and access control mechanisms in depth.
Public-Key Cryptography: ECDSA and BLS
Explores ECDSA and BLS signature schemes, NFC credit card payment, and breaking RSA and DH cryptography.
RSA Encryption: Principles and Applications
Explores RSA encryption principles, factorization challenges, and practical applications in data security.
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Explores distributed randomness using Drand, covering cryptographic tools, key exchange, elliptic curve cryptography, and practical applications in blockchain systems.
Public-Key Cryptography: Standards and Applications
Discusses public-key cryptography, focusing on standards like RSA, DSA, and AES, and their applications in secure communications.
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Introduces cryptography basics, covering encryption, data integrity, error detection, digital signatures, and authentication.
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 the basics of cryptography, encryption, decryption, error detection, and the impact of quantum computing.
Public-Key Cryptography: Fundamentals and Applications
Explores public-key cryptography, covering key exchange, signature schemes, and real-world applications like the Signal protocol.
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.
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Explains public-key cryptography, digital signatures, and key distribution for secure communication.
Asymmetric Cryptography: Signature and Diffie-Hellman
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Introduces asymmetric cryptography, digital signatures, and hybrid encryption for secure communication.
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Explores RSA, elliptic curves, and lattice-based cryptography for secure communication.
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