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hard (6)
gap (3)
system (3)
proof (3)
one (2)

Stem amplif$ (all stems)

19 papers:

ICALPICALP-v1-2015-BunT #approximate
Hardness Amplification and the Approximate Degree of Constant-Depth Circuits (MB, JT), pp. 268–280.
ICALPICALP-v1-2015-MolinaroWY #complexity
Amplification of One-Way Information Complexity via Codes and Noise Sensitivity (MM, DPW, GY), pp. 960–972.
HCIHIMI-IKC-2015-UeokaI #development
Development of the Horror Emotion Amplification System by Means of Biofeedback Method (RU, KI), pp. 657–665.
ECOOPECOOP-2015-FangDX #detection #named #performance #problem
PerfBlower: Quickly Detecting Memory-Related Performance Problems via Amplification (LF, LD, G(X), pp. 296–320.
PLDIPLDI-2012-LeungGAGJL #gpu #kernel #verification
Verifying GPU kernels by test amplification (AL, MG, YA, RG, RJ, SL), pp. 383–394.
STOCSTOC-2012-Li #design #privacy
Design extractors, non-malleable condensers and privacy amplification (XL), pp. 837–854.
STOCSTOC-2010-BeameHP #complexity #proving
Hardness amplification in proof complexity (PB, TH, TP), pp. 87–96.
STOCSTOC-2010-ChandranKOR #privacy
Privacy amplification with asymptotically optimal entropy loss (NC, BK, RO, LR), pp. 785–794.
STOCSTOC-2009-AharonovALV #detection #quantum
The detectability lemma and quantum gap amplification (DA, IA, ZL, UVV), pp. 417–426.
STOCSTOC-2009-LinP
Non-malleability amplification (HL, RP), pp. 189–198.
WICSAWICSA-2008-Kennaley #3d #architecture #framework #quote
“The 3+1 Views of Architecture (in 3D)”: An Amplification of the 4+1 Viewpoint Framework (MK), pp. 299–302.
STOCSTOC-2008-ShaltielV #proving
Hardness amplification proofs require majority (RS, EV), pp. 589–598.
STOCSTOC-2006-Dinur #theorem
The PCP theorem by gap amplification (ID), pp. 241–250.
ICALPICALP-v1-2006-Radhakrishnan #lazy evaluation #random #using
Gap Amplification in PCPs Using Lazy Random Walks (JR), pp. 96–107.
STOCSTOC-2005-Trevisan #on the
On uniform amplification of hardness in NP (LT), pp. 31–38.
STOCSTOC-2002-ODonnell
Hardness amplification within NP (RO), pp. 751–760.
STOCSTOC-2000-KitaevW #exponential #interactive #parallel #proving #quantum #simulation
Parallelization, amplification, and exponential time simulation of quantum interactive proof systems (AK, JW), pp. 608–617.
STOCSTOC-1999-CrescenzoI
Security-Preserving Hardness-Amplification for Any Regular One-Way Function (GDC, RI), pp. 169–178.
HCIHCI-SHI-1993-EdmondsC #concept #design
Knowledge Support Systems for Conceptual Design: The Amplification of Creativity (EAE, LC), pp. 350–355.

Bibliography of Software Language Engineering in Generated Hypertext (BibSLEIGH) is created and maintained by Dr. Vadim Zaytsev.
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