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[31] Yao Cheng, Xiong Meng and Qiang Zhang. Application of generalized Gauss--Radau projections for the local discontinuous Galerkin method for linear convection-diffusion equations. Math. Comp. 86 (2017) 1233-1267.
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[32] Buyang Li and Weiwei Sun. Maximal $L^p$ analysis of finite element solutions for parabolic equations with nonsmooth coefficients in convex polyhedra. Math. Comp. 86 (2017) 1071-1102.
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[33] John W. Barrett, Harald Garcke and Robert Nürnberg. Finite element approximation for the dynamics of asymmetric fluidic biomembranes. Math. Comp. 86 (2017) 1037-1069.
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[34] Christian Klingenberg, Gero Schnücke and Yinhua Xia. Arbitrary Lagrangian-Eulerian discontinuous Galerkin method for conservation laws: Analysis and application in one dimension. Math. Comp. 86 (2017) 1203-1232.
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[35] Francis J. Narcowich, Stephen T. Rowe and Joseph D. Ward. A novel Galerkin method for solving PDES on the sphere using highly localized kernel bases. Math. Comp. 86 (2017) 197-231.
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[36] Emmanuel Audusse, François Bouchut, Marie-Odile Bristeau and Jacques Sainte-Marie. Kinetic entropy inequality and hydrostatic reconstruction scheme for the Saint-Venant system. Math. Comp. 85 (2016) 2815-2837.
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[37] Yingda Cheng, Ching-Shan Chou, Fengyan Li and Yulong Xing. $L^2$ stable discontinuous Galerkin methods for one-dimensional two-way wave equations. Math. Comp. 86 (2017) 121-155.
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[38] C. Bauzet, J. Charrier and T. Gallouët. Convergence of flux-splitting finite volume schemes for hyperbolic scalar conservation laws with a multiplicative stochastic perturbation. Math. Comp. 85 (2016) 2777-2813.
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[39] Martin Campos Pinto and Eric Sonnendrücker. Gauss-compatible Galerkin schemes for time-dependent Maxwell equations. Math. Comp. 85 (2016) 2651-2685.
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[40] Lili Hu, Yao Li and Yingjie Liu. A limiting strategy for the back and forth error compensation and correction method for solving advection equations. Math. Comp. 85 (2016) 1263-1280.
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[41] Alexandre Ern and Friedhelm Schieweck. Discontinuous Galerkin method in time combined with a stabilized finite element method in space for linear first-order PDEs. Math. Comp. 85 (2016) 2099-2129.
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[42] Vivien Desveaux, Markus Zenk, Christophe Berthon and Christian Klingenberg. Well-balanced schemes to capture non-explicit steady states: Ripa model. Math. Comp. 85 (2016) 1571-1602.
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[43] Olivier Bokanowski, Yingda Cheng and Chi-Wang Shu. Convergence of discontinuous Galerkin schemes for front propagation with obstacles. Math. Comp. 85 (2016) 2131-2159.
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[44] Georgios Akrivis. Stability properties of implicit--explicit multistep methods for a class of nonlinear parabolic equations. Math. Comp. 85 (2016) 2217-2229.
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[45] Wenbin Chen, Yuan Liu, Cheng Wang and Steven M. Wise. Convergence analysis of a fully discrete finite difference scheme for the Cahn-Hilliard-Hele-Shaw equation. Math. Comp. 85 (2016) 2231-2257.
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[46] Georgios Akrivis and Emmanuil Katsoprinakis. Backward difference formulae: New multipliers and stability properties for parabolic equations. Math. Comp. 85 (2016) 2195-2216.
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[47] Christophe Berthon and Christophe Chalons. A fully well-balanced, positive and entropy-satisfying Godunov-type method for the shallow-water equations. Math. Comp. 85 (2016) 1281-1307.
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[48] Xiong Meng, Chi-Wang Shu and Boying Wu. Optimal error estimates for discontinuous Galerkin methods based on upwind-biased fluxes for linear hyperbolic equations. Math. Comp. 85 (2016) 1225-1261.
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[49] J. L. Gracia and E. O’Riordan. Numerical approximation of solution derivatives of singularly perturbed parabolic problems of convection-diffusion type. Math. Comp. 85 (2016) 581-599.
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[50] Clément Cancès and Cindy Guichard. Convergence of a nonlinear entropy diminishing Control Volume Finite Element scheme for solving anisotropic degenerate parabolic equations. Math. Comp. 85 (2016) 549-580.
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[51] Anne Bouillard, Erwan Faou and Maxime Zavidovique. Fast weak--KAM integrators for separable Hamiltonian systems. Math. Comp. 85 (2016) 85-117.
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[52] Zhilin Li. On convergence of the immersed boundary method for elliptic interface problems. Math. Comp. 84 (2015) 1169-1188.
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[53] Liviu I. Ignat, Alejandro Pozo and Enrique Zuazua. Large-time asymptotics, vanishing viscosity and numerics for 1-D scalar conservation laws. Math. Comp. 84 (2015) 1633-1662.
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[54] D. C. Antonopoulou, G. D. Karali, M. Plexousakis and G. E. Zouraris. Crank-Nicolson finite element discretizations for a two-dimensional linear Schr{\"o}dinger-type equation posed in a noncylindrical domain. Math. Comp. 84 (2015) 1571-1598.
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[55] Christian Lubich and Dhia Mansour. Variational discretization of wave equations on evolving surfaces. Math. Comp. 84 (2015) 513-542.
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[56] Carsten Carstensen, Dietmar Gallistl and Mira Schedensack. Adaptive nonconforming Crouzeix-Raviart FEM for eigenvalue problems. Math. Comp. 84 (2015) 1061-1087.
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[57] Ohannes Karakashian and Charalambos Makridakis. A posteriori error estimates for discontinuous Galerkin methods for the generalized Korteweg-de Vries equation. Math. Comp. 84 (2015) 1145-1167.
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[58] Boris Baeumer, Mihály Kovács and Harish Sankaranarayanan. Higher order Gr\"unwald approximations of fractional derivatives and fractional powers of operators. Trans. Amer. Math. Soc. 367 (2015) 813-834. MR 3280028.
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[59] Zhonghua Qiao, Zhi-zhong Sun and Zhengru Zhang. Stability and convergence of second-order schemes for the nonlinear epitaxial growth model without slope selection. Math. Comp. 84 (2015) 653-674.
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[60] Yanzhao Cao, Max Gunzburger, Xiaoming He and Xiaoming Wang. Parallel, non-iterative, multi-physics domain decomposition methods for time-dependent Stokes-Darcy systems. Math. Comp. 83 (2014) 1617-1644.
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