<--- Back to Details
First PageDocument Content
Cryptography / Randomized algorithms / Computational complexity theory / Mathematics / Probabilistically checkable proof / Complexity classes / Interactive proof system / IP / NP / Soundness / PCP theorem / Commitment scheme
Date: 2017-11-11 14:59:54
Cryptography
Randomized algorithms
Computational complexity theory
Mathematics
Probabilistically checkable proof
Complexity classes
Interactive proof system
IP
NP
Soundness
PCP theorem
Commitment scheme

Taking proof-based verified computation a few steps closer to practicality1 Srinath Setty, Victor Vu, Nikhil Panpalia, Benjamin Braun, Andrew J. Blumberg, and Michael Walfish The University of Texas at Austin Abstract. W

Add to Reading List

Source URL: www.pepper-project.org

Download Document from Source Website

File Size: 434,93 KB

Share Document on Facebook

Similar Documents

Notes on Computational Complexity Theory CPSC: Spring 2017 James Aspnes:25

Notes on Computational Complexity Theory CPSC: Spring 2017 James Aspnes:25

DocID: 1uCk4 - View Document

On the notion of bit complexity Claus Diem August 21, 2010 Abstract In many works in the fields of computational complexity, algorithmic number theory and mathematical cryptology as well as in related areas, claims on th

On the notion of bit complexity Claus Diem August 21, 2010 Abstract In many works in the fields of computational complexity, algorithmic number theory and mathematical cryptology as well as in related areas, claims on th

DocID: 1uruF - View Document

Madhu Sudan Gordon McKay Professor, John A. Paulson School of Engineering and Applied Sciences, Harvard University Areas of Special Interests Theory of Computing, Algorithms, Computational Complexity, Reliable Communicat

Madhu Sudan Gordon McKay Professor, John A. Paulson School of Engineering and Applied Sciences, Harvard University Areas of Special Interests Theory of Computing, Algorithms, Computational Complexity, Reliable Communicat

DocID: 1ulr8 - View Document

Computational Complexity of the Hamiltonian Cycle Problem in Dense Hypergraphs Marek Karpi´ nski1, , Andrzej Ruci´ nski2, , and Edyta Szyma´ nska2,  

Computational Complexity of the Hamiltonian Cycle Problem in Dense Hypergraphs Marek Karpi´ nski1, , Andrzej Ruci´ nski2, , and Edyta Szyma´ nska2,  

DocID: 1tW23 - View Document

Logic, Computation and Constraint Satisfaction Barnaby D. Martin University of Leicester

Logic, Computation and Constraint Satisfaction Barnaby D. Martin University of Leicester

DocID: 1ruap - View Document