palkernads (Ø,G) ☭ π² ♦ (@rahbanithoriq) 's Twitter Profile Photo

TL;DR 🏁 FastSet = speed + scalability + trustless parallelism. ⚡ 100K+ TPS ⚡ Finality <100ms ⚡ Cross-chain ready ⚡ Dev-friendly Discover the future → pi2.network/papers/fastset #Web3 #FastSet #PiSquared

palkernads (Ø,G) ☭ π² ♦ (@rahbanithoriq) 's Twitter Profile Photo

Inclusive & decentralized 💻 Run a FastSet validator on hardware under $1K. More participants → stronger security → better decentralization. This makes Web3 accessible to everyone 🌍

palkernads (Ø,G) ☭ π² ♦ (@rahbanithoriq) 's Twitter Profile Photo

Why it matters 🌐 FastSet enables: DeFi at web2 speed Real-time gaming AI agent micro-payments Cross-chain communication without bridges Built for the future of Web3.

palkernads (Ø,G) ☭ π² ♦ (@rahbanithoriq) 's Twitter Profile Photo

FastSet uses an actor-based architecture where transactions (claims) are settled independently. Each actor manages its own state, removing the need for global synchronization. Result? Massive scalability + low latency 🚀

palkernads (Ø,G) ☭ π² ♦ (@rahbanithoriq) 's Twitter Profile Photo

🚀 Meet FastSet by Pi Squared — a next-gen distributed protocol designed for speed, scalability & trustless execution. Unlike traditional blockchains, FastSet processes claims in parallel — no blocks, no global consensus. #Web3 #FastSet

🚀 Meet FastSet by <a href="/Pi_Squared_Pi2/">Pi Squared</a> — a next-gen distributed protocol designed for speed, scalability &amp; trustless execution.

Unlike traditional blockchains, FastSet processes claims in parallel — no blocks, no global consensus.

#Web3 #FastSet
Son Tran Thanh π² (@transon1302) 's Twitter Profile Photo

FastSet in 7 Simple Steps: 1. Lock. 2. Commit. 3. Prove. 4. Verify. 5. Validate. 6. Finalize. 7. Trust. Achieve 100,000+ TPS with under 100 ms finality—no global consensus needed, just efficient, parallel, verifiable settlement. Pi Squared

Hòa DZ π² (@hoatn92) 's Twitter Profile Photo

Unlike blockchains, FastSet doesn’t order every transaction globally. Instead, it uses parallel execution + verifiable proofs to settle instantly. The result: 100k+ TPS, <100ms finality, independent verification. Pi Squared

wappo π² (@cordiscofranco) 's Twitter Profile Photo

FastSet revolutionizes on-chain membership proofs. Here's how it works in simple steps: 1/ Start with a list (e.g., whitelist addresses). 2/ Use a VRF to assign each item a unique random index. 3/ Create a bit vector (binary string) where each bit represents an index.

Hòa DZ π² (@hoatn92) 's Twitter Profile Photo

Benefits of FastSet (Pi²) 100k+ TPS, <100ms finality Independently verifiable transactions Supports Python, Rust, JS, C++ Scales via parallel execution (not blockchain) Pi Squared

Kiarra_Manaudouπ² (@kmanaudou) 's Twitter Profile Photo

FastSet enables scalable, decentralized settlement with 100K+ TPS and sub-100ms finality by allowing conflict-free, parallel claim processing without global consensus, while ensuring cryptographic verifiability and determinism. Pi Squared

FastSet enables scalable, decentralized settlement with 100K+ TPS and sub-100ms finality by allowing conflict-free, parallel claim processing without global consensus, while ensuring cryptographic verifiability and determinism.
<a href="/Pi_Squared_Pi2/">Pi Squared</a>
Yagerjja (@yagerjja) 's Twitter Profile Photo

FastSet delivers speed, scalability, security, and efficiency in one design—making it a powerful consensus protocol for the future. Pi Squared #FastSet