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Journal of Computational and Applied Mathematics, Volume 258
Volume 258, March 2014
- Jiyang Tan, Pingtian Yuan, Yangjin Cheng, Ziqiang Li:

An optimal dividend strategy in the discrete Sparre Andersen model with bounded dividend rates. 1-16 - Mina B. Abd-el-Malek, Amr M. Amin

:
Lie group analysis of nonlinear inviscid flows with a free surface under gravity. 17-29 - Chafik Allouch, Driss Sbibih, Mohamed Tahrichi

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Superconvergent Nyström and degenerate kernel methods for Hammerstein integral equations. 30-41 - Adrianna Gillman

, Per-Gunnar Martinsson:
A fast solver for Poisson problems on infinite regular lattices. 42-56 - Zhenhua Xu, Shuhuang Xiang

, Guo He:
Efficient evaluation of oscillatory Bessel Hilbert transforms. 57-66 - Wendi Bao, Yongzhong Song, Shu-Qian Shen:

Semi-convergence of parameterized Uzawa waveform relaxation method for a class of differential-algebraic equations. 67-77 - Dmitri Kuzmin

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An optimization-based approach to enforcing mass conservation in level set methods. 78-86 - Zengji Du, Zhaosheng Feng:

Periodic solutions of a neutral impulsive predator-prey model with Beddington-DeAngelis functional response with delays. 87-98 - Frédéric Hecht, Raphaël Kuate:

An approximation of anisotropic metrics from higher order interpolation error for triangular mesh adaptation. 99-115 - Luis M. Abia

, Oscar Angulo
, Juan C. López-Marcos
, Miguel Ángel López-Marcos
:
Numerical integration of a hierarchically size-structured population model with contest competition. 116-134 - Amanda M. Rehm, Elizabeth Y. Scribner, Hassan M. Fathallah-Shaykh

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Proper orthogonal decomposition for parameter estimation in oscillating biological networks. 135-150 - Sambit Das, Wenyuan Liao

, Anirudh Gupta:
An efficient fourth-order low dispersive finite difference scheme for a 2-D acoustic wave equation. 151-167 - Arturo J. Fernández

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Computing optimal confidence sets for Pareto models under progressive censoring. 168-180 - Wenrui Hao

, Jonathan D. Hauenstein
, Bei Hu
, Andrew J. Sommese:
A bootstrapping approach for computing multiple solutions of differential equations. 181-190

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