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Diving deep into Binius M3 arithmetization using Merkle tree inclusion as an example
Introduction At the heart of any Zero-Knowledge Proof (ZKP) system lies the concept of arithmetization, the process of transforming a computational problem into a mathematical problem that can be expressed and verified within a specific algebraic structure, such as polynomials or arithmetic circuits. Within the Binius framework, this arithmetization is
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Diving deep into Binius M3 arithmetization using Merkle tree inclusion as an example
Introduction At the heart of any Zero-Knowledge Proof (ZKP) system lies the concept of arithmetization, the process of transforming a computational problem into a mathematical problem that can be expressed and verified within a specific algebraic structure, such as polynomials or arithmetic circuits. Within the Binius framework, this arithmetization is
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Diving deep into Binius M3 arithmetization using Merkle tree inclusion as an example
Introduction At the heart of any Zero-Knowledge Proof (ZKP) system lies the concept of arithmetization, the process of transforming a computational problem into a mathematical problem that can be expressed and verified within a specific algebraic structure, such as polynomials or arithmetic circuits. Within the Binius framework, this arithmetization is
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