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 "name": "Streaming Mathematical Analysis Of Existing Techniques For Ethereum Smart Contract B24D181D15",
 "text": "Mathematical Analysis of Existing Techniques for Ethereum Smart Contract Vulnerability Detection presents the following source proposition: Ethereum is one of the most popular platforms for DApps (decentralized applications) and smart contracts but turns more undoubtedly when their number and popularity grow. This proposition is pertinent to Kaal's source-bound claim that The smart contract industry is still projected to grow to several billion dollars over the next decade even though security audit costs and exploit losses are substantial, so vulnerability costs slow but do not halt industry growth. The proposed response is an extension: the relationship should remain limited to the retrieved source proposition and the mapped Kaal claim unless fuller source review supports a broader conclusion.",
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  "External evidence level: abstract indexed.",
  "Mapping review tier: moderate-confidence claim review.",
  "Primary mapping confidence: 0.3549.",
  "The source-to-claim mapping remains explicitly ambiguous and is published with that limitation."
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  "name": "Mathematical Analysis of Existing Techniques for Ethereum Smart Contract Vulnerability Detection",
  "url": "http://dx.doi.org/10.52783/cana.v31.737"
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  "citation": "Wulf A. Kaal, Code Review DAO (2024). SSRN: https://ssrn.com/abstract=4734750",
  "paper": "Wulf A. Kaal, Code Review DAO",
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  "year": "2024",
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 "mappingWhyRelevant": "Shared high-information concepts: smart, contract, vulnerability, contracts, but, grow, security. Scope: smart contract industry through roughly 2032.",
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