Media Summary: The back door that may not be a back door... The suspicion about Dual_EC_DRBG - The Dual In this video, John Wagnon from DevCentral provides an overview of How do we exchange a secret key in the clear? Spoiler: We don't - Dr Mike Pound shows us exactly what happens. Mathematics ...

Elliptic Curves Computerphile - Detailed Analysis & Overview

The back door that may not be a back door... The suspicion about Dual_EC_DRBG - The Dual In this video, John Wagnon from DevCentral provides an overview of How do we exchange a secret key in the clear? Spoiler: We don't - Dr Mike Pound shows us exactly what happens. Mathematics ... Knuth talked about "Literate Programming" over forty years ago, but what does it mean to have code that a developer and a client ... Prepping for Post-Quantum, Mike Pound explains why now! -- Try Jane Street's neural net puzzle: ... Professor Brailsford returns to the subject of why Colossus was built. The professor's notes: ...

Matt Godbolt continues the story of the CPU and explains how machines do addition Correction : as oodles of commenters have pointed out, the clock face should go from 0 to n-1. Also, worth reminding people that ... Scaling images is usually smoother using bicubic interpolation. Dr Mike Pound explains why. More on bicubic: ... The Bit Blit algorithm dates back to Xerox PARC, but was famously used to sell the Amiga home computer among others. Dr Steve ... This Supercomputer is doing some of the most difficult computations in the world, about things that are out of this world. Thanks to ...

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Secret Key Exchange (Diffie-Hellman) - Computerphile
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Human Readable Code - Computerphile
Post Quantum Cryptography - Computerphile
Exploiting the Tiltman Break - Computerphile
How CPUs Do Math(s) - Computerphile
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Elliptic Curves - Computerphile

Elliptic Curves - Computerphile

Just what are

Elliptic Curve Back Door - Computerphile

Elliptic Curve Back Door - Computerphile

The back door that may not be a back door... The suspicion about Dual_EC_DRBG - The Dual

Elliptic Curve Cryptography Overview

Elliptic Curve Cryptography Overview

In this video, John Wagnon from DevCentral provides an overview of

Secret Key Exchange (Diffie-Hellman) - Computerphile

Secret Key Exchange (Diffie-Hellman) - Computerphile

How do we exchange a secret key in the clear? Spoiler: We don't - Dr Mike Pound shows us exactly what happens. Mathematics ...

Elliptic Curve Cryptography in less than 5 minutes

Elliptic Curve Cryptography in less than 5 minutes

ECC, or

Human Readable Code - Computerphile

Human Readable Code - Computerphile

Knuth talked about "Literate Programming" over forty years ago, but what does it mean to have code that a developer and a client ...

Post Quantum Cryptography - Computerphile

Post Quantum Cryptography - Computerphile

Prepping for Post-Quantum, Mike Pound explains why now! -- Try Jane Street's neural net puzzle: ...

Exploiting the Tiltman Break - Computerphile

Exploiting the Tiltman Break - Computerphile

Professor Brailsford returns to the subject of why Colossus was built. The professor's notes: ...

How CPUs Do Math(s) - Computerphile

How CPUs Do Math(s) - Computerphile

Matt Godbolt continues the story of the CPU and explains how machines do addition https://www.facebook.com/

Diffie Hellman -the Mathematics bit- Computerphile

Diffie Hellman -the Mathematics bit- Computerphile

Correction : as oodles of commenters have pointed out, the clock face should go from 0 to n-1. Also, worth reminding people that ...

Bicubic Interpolation - Computerphile

Bicubic Interpolation - Computerphile

Scaling images is usually smoother using bicubic interpolation. Dr Mike Pound explains why. More on bicubic: ...

Bit Blit Algorithm (Amiga Blitter Chip) - Computerphile

Bit Blit Algorithm (Amiga Blitter Chip) - Computerphile

The Bit Blit algorithm dates back to Xerox PARC, but was famously used to sell the Amiga home computer among others. Dr Steve ...

Supercomputer and the Milky Way - Computerphile

Supercomputer and the Milky Way - Computerphile

This Supercomputer is doing some of the most difficult computations in the world, about things that are out of this world. Thanks to ...

Mouse Pointers & Fitts's Law - Computerphile

Mouse Pointers & Fitts's Law - Computerphile

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