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In this paper we consider bilinear forms of matrix polynomials and show that these polynomials can be used to construct solutions for the problems of solving systems of linear algebraic equations, matrix inversion and finding extremal... more
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      ModelingMonte CarloBiasLinear Algebra
Many scientific and engineering applications involve inverting large matrices or solving systems of linear algebraic equations. Solving these problems with proven algorithms for direct methods can take very long to compute, as they depend... more
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      Information SystemsDistributed ComputingGrid ComputingComputational Complexity
Rapid developments in the biomedical sciences have increased the demand for automatic clustering of biomedical publications. In contrast to current approaches to text clustering, which focus exclusively on the contents of abstracts, a... more
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      PublishingScience PolicyCancerContent
In this paper we present error analysis for a Monte Carlo algorithm for evaluating bilinear forms of matrix powers. An almost Optimal Monte Carlo (MAO) algorithm for solving this problem is formulated. Results for the structure of the... more
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    •   10  
      Iterative MethodsModelingMonte CarloMonte Carlo Methods
This article appeared in a journal published by Elsevier. The attached copy is furnished to the author for internal non-commercial research and education use, including for instruction at the authors institution and sharing with... more
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      Information SystemsComputer ScienceDistributed ComputingGrid Computing
In this paper we present error analysis for a Monte Carlo algorithm for evaluating bilinear forms of matrix powers. An almost Optimal Monte Carlo (MAO) algorithm for solving this problem is formulated. Results for the structure of the... more
    • by 
    •   9  
      ModelingMonte CarloMonte Carlo MethodsPerformance Analysis