On the rise in the U.S., Bitcoin Lightning Network usage hits a record high, promising transformative changes—discover how this growth could reshape digital payments.
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How AI Detects Illicit Bitcoin Flows—and What It Gets Wrong
Keen AI methods analyze Bitcoin transactions to detect illicit flows, but understanding their limitations reveals why they might sometimes miss or misidentify crimes.
Bridging Bitcoin to Other Chains: The Rise of Trust‑Minimized Relays
More secure and decentralized ways to bridge Bitcoin to other chains are emerging through trust-minimized relays—discover how they could revolutionize your crypto experience.
The Silent Sync: How Block‑Pruning Saves Terabytes for Node Runners
A explores how block-pruning reduces storage requirements for node runners, enabling efficient, secure blockchain validation—discover the secrets behind this silent sync.
The Anatomy of a 51 % Attack and Why It Remains Impractical
Just understanding a 51% attack reveals why such exploits are nearly impossible on large, decentralized networks and why their security endures.
Unpacking CTV (CheckTemplateVerify): Will It Finally Enable Covenants?
Gaining insight into CTV’s potential to unlock covenants could transform Bitcoin’s transaction capabilities—discover how this innovation might reshape the future of digital assets.
Proof‑of‑Work vs. Proof‑of‑Useful‑Work: Will Bitcoin Ever Switch?
By exploring whether Bitcoin can shift from energy-intensive Proof-of-Work to beneficial Proof-of-Useful-Work, you’ll discover the key challenges standing in the way.
BRC‑20 Tokens: Bubble or Building Block?
On the cusp of innovation or a fleeting craze, BRC‑20 tokens could reshape Bitcoin’s future—discover the truth behind this emerging trend.
Lightning Liquidity Pools: The New Frontier for Yield Seekers
Jump into Lightning liquidity pools to unlock new earning opportunities and discover how they are reshaping the future of Bitcoin transactions.
Mining Difficulty Explained: How the Network Self‑Balances Every 2,016 Blocks
Mining difficulty adjusts every 2,016 blocks to maintain steady block times; discover how this self-balancing mechanism ensures network stability.