Ethereum Founder Reveals The Magic Code For Secure Data Processing

Ethereum founder Vitalik Buterin published an article outlining an innovative technology called fully homomorphic encryption. [FHE] it acts as a privacy tool Enables developers to process data on untrusted domains without decrypting it. Encryption is the act of encoding a user’s message in a secret code so that only the people the user wants can understand the message. However, when users typically perform operations such as addition or multiplication on encoded messages, they must first decode the messages, which can make them less secure.

Fully Homomorphic Encryption (FHE) has gotten a lot of people interested lately, so I’m re-uploading my 2020 article that details how the math works.

This is where it differs from fully homomorphic encryption. It’s like having a magic code that allows you to calculate a secret message without having to decipher it first. So if you want to add two coded numbers, you can do it without knowing what those numbers are. Why is this important? It makes you very secure, especially when transmitting sensitive information over the Internet. Even the people who helped you with your calculations won’t know what your message is about.

Ethereum

The author of this article, Ethereum’s Vitalik Buterin, is a big name in the cryptocurrency world and gauges the popularity of this emerging class of cryptocurrencies. In his previous article in 2020, he explained the math behind it and provides a kind of guide to understanding the secret sauce behind this highly secure method of keeping your information safe. It was something.

From Ethereum to Shiba Inu: FHE integration redefines data encryption

FHE is also known as the “holy grail” of cryptography and has received a lot of attention in cryptography, from Ethereum to Shiba Inu. A while ago, Memecoin Network partnered with open source cryptocurrency company Zama to launch a new privacy-focused network on the Shibarium blockchain. As Tron Weekly reported, traditional data encryption involves the cumbersome process of first decrypting the data, processing it, and then encrypting it again, making it vulnerable to privacy breaches. FHE integration is designed to significantly enhance the privacy and security of online interactions across SHIB domains.

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