Editors’ preface for the topical issue “Numerical Methods for Large-Scale Scientific Computing, I”
János Karátson, Sergey Korotov, Svetozar Margenov (2013)
Open Mathematics
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János Karátson, Sergey Korotov, Svetozar Margenov (2013)
Open Mathematics
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Ljiljana Cvetković, Sergey Korotov, Victor Nistor, Lubin Vulkov (2012)
Open Mathematics
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P. Chartier, L. Petzold (2009)
ESAIM: Mathematical Modelling and Numerical Analysis
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Z. Kowalski (1963)
Annales Polonici Mathematici
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Katsuhisa Ozaki, Takeshi Terao, Takeshi Ogita, Takahiro Katagiri (2021)
Applications of Mathematics
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This paper concerns accuracy-guaranteed numerical computations for linear systems. Due to the rapid progress of supercomputers, the treatable problem size is getting larger. The larger the problem size, the more rounding errors in floating-point arithmetic can accumulate in general, and the more inaccurate numerical solutions are obtained. Therefore, it is important to verify the accuracy of numerical solutions. Verified numerical computations are used to produce error bounds on numerical...
E. Cancès, S. Labbé (2012)
ESAIM: Proceedings
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George Biddell Airy
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George Biddell Airy
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Gneiting, Tilmann, Konis, Kjell, Richards, Donald (2001)
Experimental Mathematics
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Bijan Mohammadi, Jukka Tuomela (2010)
ESAIM: Mathematical Modelling and Numerical Analysis
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When analysing general systems of PDEs, it is important first to find the involutive form of the initial system. This is because the properties of the system cannot in general be determined if the system is not involutive. We show that the notion of involutivity is also interesting from the numerical point of view. The use of the involutive form of the system allows one to consider quite general situations in a unified way. We illustrate our approach on the numerical solution of several...
Křížek, Michal
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Anita Dobek (2008)
Discussiones Mathematicae Probability and Statistics
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