Lagrange Coprocessor disrupts the traditional logic of off-chain computing participation. Each node only needs to stake LA to enter the task pool, and the platform uses the VRF algorithm to randomly assign off-chain computing tasks, ensuring equal opportunities regardless of device configuration.

After a node is selected, it will complete data processing or model inference off-chain and generate zk-STARK proofs, ensuring that both the computation process and results can be securely verified on-chain. Once the proofs and data are uploaded, the contract requires only minimal Gas fees for verification, greatly enhancing on-chain efficiency.

In terms of economic incentives, LA is used for payment, staking, incentives, and risk isolation. Task qualifiers receive rewards, while errors or delays result in partial stake destruction, with the remainder supplementing the insurance pool to reduce ecological risks. Protocol parameters and governance are collectively decided by the LA holder community, ensuring the system's continuous evolution and transparency.

The innovative mechanism of Lagrange Coprocessor creates a universal foundation for trusted off-chain computing and accelerates the innovation implementation of blockchain in practical scenarios.

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