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By Ekert A., Hayden P., Inamori H.

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S~, respectively. We study the performance of the error estimators by, as reported in Table 1 and 2, the values of the bounds C Land C Uof the effectivity index (C L < 0 _

Z. Zhu, 'Superconvergent patch recovery and a postcriori error estimates. Part I: The recovery technique', Int. J. Numer. Meth. , 33, 1331-1364, (1992). O. C. Zienkiewicz and J. Z. Zhu, 'Superconvergent patch recovery and a posteriori error estimates. Part H: Error estimates and adaptivity', Int. J. Numer. Meth. , 33, 1365-1382, (1992). O. C. Zienkiewicz and J. Z. Zhu, 'Superconvergent patch recovery (SPR) and adaptive finite element refinement', Comp. Meth. Appl. Meth. , 101, 207-224, (1992). 19.

Error estimation in the interior of patchwise uniform grids of triangles', Comp. Meth. Appl. Meth. Eng. 114, 30%378, (1994). I. Babuska, T. StroubouUs, C. S. Upadhyay, S. K. Gangaraj and K. Copps, 'Validation of a posteriori error estimators by numerical approach', Int. I. Numer. Methods Engrg. 37, 1073-1123, (1994). I. Babuska, T. Strouboulis and C. S. Upadhyay, 'A model study of a posteriori error estimators for linear elliptic problems. Part II" Error estimation at the boundary of patchwise uniform grids of triangles', to be published.

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Basic concepts in quantum computation by Ekert A., Hayden P., Inamori H.


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