# $CNFT Social Sentiment & Intelligence — 2026-07-08 19:30 UTC > **Asset:** $CNFT > **Momentum Status:** Trending Up > **Timestamp:** 2026-07-08 19:30 UTC (2026-07-08T19:30:00Z) > **Canonical URL:** https://cryptitalk.com/2026-07-08-19-30/crypto/CNFT > **Overview Brief:** https://cryptitalk.com/2026-07-08-19-30/crypto.md --- ## 10-Minute Social Metrics - **Posts Analyzed:** 1 - **Total Impressions:** 52 - **Likes:** 2 - **Retweets:** 0 - **Comments:** 1 --- ## Momentum & Sentiment Analysis Total Engagement - Comments: 1, Retweets: 0, Likes: 2, Impressions: 52 --- ## Cited Community Posts & Evidence ### Post #1 by @fathy_sol > **Author:** [@fathy_sol](https://x.com/fathy_sol) > **Metrics:** 12 likes · 1 retweets · 8 comments · 120 views > **Source Link:** [https://x.com/fathy_sol/status/2074901142136377821](https://x.com/fathy_sol/status/2074901142136377821) > **Visual Context:** The image is a flowchart titled "Zk101" illustrating how earlier cryptographic protocols evolved into zkSNARKs (which "create & verify proofs for any statement encoded as an algebraic expression"), enabling a "Cambrian Explosion of General-Purpose Cryptography" applied to passwords, digital identity, financial information, and computation—with supporting open-source libraries including Circom, Halo2, Arkworks, and Zokrates. It visually answers the post's question by showing that algebraic encoding allows zkSNARKs to prove knowledge of a password without revealing it, alongside broader applications in digital identity, sensitive financial data, and privacy-preserving computation. > > "A zero-knowledge proof allows one party to prove that a statement is true without revealing any information beyond the validity of that statement. 𝙃𝙤𝙬 𝙘𝙖𝙣 𝙩𝙝𝙚 𝙨𝙖𝙢𝙚 𝙩𝙚𝙘𝙝𝙣𝙤𝙡𝙤𝙜𝙮 𝙗𝙚 𝙪𝙨𝙚𝙙 𝙩𝙤 𝙥𝙧𝙤𝙫𝙚 𝙠𝙣𝙤𝙬𝙡𝙚𝙙𝙜𝙚 𝙤𝙛 𝙖 𝙥𝙖𝙨𝙨𝙬𝙤𝙧𝙙," --- ## Contributing Accounts - `@cNFTfART` (https://x.com/cNFTfART)