#TBC tbc, as the first large public chain adopting a UTX0 smart contracts architecture, demonstrates distinct advantages at the underlying technical level:
✅The UTXO model of TBC is inherently resistant to MEV #ETH miner-extractable value #BTC attacks, supporting efficient parallel transaction execution with a throughput exceeding 10,000 TPS, and transaction costs only 1/10003 of Ethereum, significantly lowering the barrier for user participation.
✅In contrast, account-based public chains like Ethereum must maintain global state synchronization, which can easily lead to the "state #SOL explosion" problem—similar to the case of CryptoKitties, which once caused severe network congestion.
🚀On the other hand, TBC utilizes the UTXO++ protocol to "shard" the contract state, with each UTXO carrying an independent execution container, thereby achieving true parallel computing -- this is the technical realization of the scalability vision of Bitcoin scripts.
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#TBC tbc, as the first large public chain adopting a UTX0 smart contracts architecture, demonstrates distinct advantages at the underlying technical level:
✅The UTXO model of TBC is inherently resistant to MEV #ETH miner-extractable value #BTC attacks, supporting efficient parallel transaction execution with a throughput exceeding 10,000 TPS, and transaction costs only 1/10003 of Ethereum, significantly lowering the barrier for user participation.
✅In contrast, account-based public chains like Ethereum must maintain global state synchronization, which can easily lead to the "state #SOL explosion" problem—similar to the case of CryptoKitties, which once caused severe network congestion.
🚀On the other hand, TBC utilizes the UTXO++ protocol to "shard" the contract state, with each UTXO carrying an independent execution container, thereby achieving true parallel computing -- this is the technical realization of the scalability vision of Bitcoin scripts.