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  2. Zero-knowledge proof - Wikipedia

    en.wikipedia.org/wiki/Zero-knowledge_proof

    A zero-knowledge password proof is a special kind of zero-knowledge proof of knowledge that addresses the limited size of passwords. [ citation needed ] In April 2015, the one-out-of-many proofs protocol (a Sigma protocol ) was introduced. [ 14 ]

  3. Zero-knowledge password proof - Wikipedia

    en.wikipedia.org/wiki/Zero-knowledge_password_proof

    In cryptography, a zero-knowledge password proof (ZKPP) is a type of zero-knowledge proof that allows one party (the prover) to prove to another party (the verifier) that it knows a value of a password, without revealing anything other than the fact that it knows the password to the verifier.

  4. Non-interactive zero-knowledge proof - Wikipedia

    en.wikipedia.org/wiki/Non-interactive_zero...

    Pass [5] showed that in the common reference string model non-interactive zero-knowledge protocols do not preserve all of the properties of interactive zero-knowledge protocols; e.g., they do not preserve deniability. Non-interactive zero-knowledge proofs can also be obtained in the random oracle model using the Fiat–Shamir heuristic.

  5. Understanding Zero-Knowledge Proofs: Keeping Sensitive Data ...

    www.aol.com/news/understanding-zero-knowledge...

    Photo by Clint Adair on Unsplash The following post was written and/or published as a collaboration between Benzinga’s in-house sponsored content team and a financial partner of Benzinga. The ...

  6. Category:Zero-knowledge protocols - Wikipedia

    en.wikipedia.org/wiki/Category:Zero-knowledge...

    Pages in category "Zero-knowledge protocols" The following 6 pages are in this category, out of 6 total. ... Zero-knowledge proof This page was last ...

  7. Commitment scheme - Wikipedia

    en.wikipedia.org/wiki/Commitment_scheme

    One particular motivating example is the use of commitment schemes in zero-knowledge proofs.Commitments are used in zero-knowledge proofs for two main purposes: first, to allow the prover to participate in "cut and choose" proofs where the verifier will be presented with a choice of what to learn, and the prover will reveal only what corresponds to the verifier's choice.