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[1] Jianfeng Lu and Zhennan Zhou. Frozen Gaussian approximation with surface hopping for mixed quantum-classical dynamics: A mathematical justification of fewest switches surface hopping algorithms. Math. Comp.
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[2] Łukasz Szpruch and Xīlíng Zhāng. $V$-integrability, asymptotic stability and comparison property of explicit numerical schemes for non-linear SDEs. Math. Comp. 87 (2018) 755-783.
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[3] Josef Dick, Domingo Gomez-Perez, Friedrich Pillichshammer and Arne Winterhof. Digital inversive vectors can achieve polynomial tractability for the weighted star discrepancy and for multivariate integration. Proc. Amer. Math. Soc. 145 (2017) 3297-3310.
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[4] Yu. V. Kozachenko and Yu. Yu. Mlavets. An application of the theory of spaces $\mathbf{F}_\psi(\Omega)$ for evaluating multiple integrals by using the Monte Carlo method. Theor. Probability and Math. Statist. 92 (2016) 59-69.
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[5] Helmut Harbrecht, Michael Peters and Markus Siebenmorgen. On the quasi-Monte Carlo method with Halton points for elliptic PDEs with log-normal diffusion. Math. Comp. 86 (2017) 771-797.
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[6] Josef Dick and Friedrich Pillichshammer. The weighted star discrepancy of Korobov's $p$-sets. Proc. Amer. Math. Soc. 143 (2015) 5043-5057.
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[7] Gersende Fort, Benjamin Jourdain, Estelle Kuhn, Tony Lelièvre and Gabriel Stoltz. Convergence of the Wang-Landau algorithm. Math. Comp. 84 (2015) 2297-2327. MR 3356027.
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[8] Z. O. Vyzhva and K. V. Fedorenko. Statistical modelling of a 3D random field by using the Kotelnikov--Shannon decomposition. Theor. Probability and Math. Statist. 88 (2014) 19-34.
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[9] Markos A. Katsoulakis, Petr Plecháč, Luc Rey-Bellet and Dimitrios K. Tsagkarogiannis. Coarse-graining schemes for stochastic lattice systems with short and long-range interactions. Math. Comp. 83 (2014) 1757-1793.
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[10] Peter Kritzer, Friedrich Pillichshammer and Henryk Woźniakowski. Multivariate integration of infinitely many times differentiable functions in weighted Korobov spaces. Math. Comp. 83 (2014) 1189-1206.
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[11] Makoto Matsumoto, Mutsuo Saito and Kyle Matoba. A computable figure of merit for quasi-Monte Carlo point sets. Math. Comp. 83 (2014) 1233-1250.
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[12] Christoph Aistleitner and Markus Hofer. Probabilistic discrepancy bound for Monte Carlo point sets. Math. Comp. 83 (2014) 1373-1381.
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[13] Yu. V. Kozachenko and Yu. Yu. Mlavets$’$. The Banach spaces $\mathbf{F}_\psi(\Omega)$ of random variables. Theor. Probability and Math. Statist. 86 (2013) 105-121.
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[14] Andreas Griewank, Lutz Lehmann, Hernan Leovey and Marat Zilberman. Automatic evaluations of cross-derivatives. Math. Comp. 83 (2014) 251-274.
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[15] Michael Gnewuch. Infinite-dimensional integration on weighted Hilbert spaces. Math. Comp. 81 (2012) 2175-2205.
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[16] J. Dick, F. Y. Kuo, F. Pillichshammer and I. H. Sloan. Construction algorithms for polynomial lattice rules for multivariate integration. Math. Comp. 74 (2005) 1895-1921. MR 2164102.
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[17] Rong-Xian Yue and Fred J. Hickernell. Strong tractability of integration using scrambled Niederreiter points. Math. Comp. 74 (2005) 1871-1893. MR 2164101.
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[18] Christian Lécot and Wolfgang Wagner. A quasi--Monte Carlo scheme for Smoluchowski's coagulation equation. Math. Comp. 73 (2004) 1953-1966. MR 2059745.
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[19] Piotr Gajda, Youming Li, Leszek Plaskota and Grzegorz W. Wasilkowski. A Monte Carlo algorithm for weighted integration over $\mathbb{R}^d$. Math. Comp. 73 (2004) 813-825. MR 2031407.
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[20] Peter Mathé and Gang Wei. Quasi--Monte Carlo integration over $\mathbb{R}^d$. Math. Comp. 73 (2004) 827-841. MR 2031408.
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[21] Carlos M. Mora. Numerical simulation of stochastic evolution equations associated to quantum Markov semigroups. Math. Comp. 73 (2004) 1393-1415. MR 2047093.
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[22] Stefan Heinrich, Fred J. Hickernell and Rong-Xian Yue. Optimal quadrature for Haar wavelet spaces. Math. Comp. 73 (2004) 259-277. MR 2034121.
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[23] Xiaoqun Wang. Strong tractability of multivariate integration using quasi--Monte Carlo algorithms. Math. Comp. 72 (2003) 823-838. MR 1954970.
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[24] Variance reduction techniques. Fields Institute Monographs 16 (2001) 29-52.
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[25] Introduction. Fields Institute Monographs 16 (2001) 1-9.
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[26] Generating random numbers. Fields Institute Monographs 16 (2001) 11-27.
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[27] Statistical analysis of simulation output. Fields Institute Monographs 16 (2001) 83-92.
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[28] Markov chain Monte Carlo. Fields Institute Monographs 16 (2001) 53-81.
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[29] Neal Madras. Lectures on Monte Carlo Methods. Fields Institute Monographs 16 (2001) MR MR1870056.
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[30] The Ising model and related examples. Fields Institute Monographs 16 (2001) 93-100.
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Results: 1 to 30 of 75 found      Go to page: 1 2 3

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