Skip to main content Skip to main navigation menu Skip to site footer
  • Register
  • Login
  • Journals
  • Home
  • Editorial Board
  • Archives
  • Guide for Authors
  • Policies
    • Ethical Policy
    • The Use of Artificial Intelligence Policy
  • About
    • About the Journal
    • Order Journal
    • Contact Us
  • Register
  • Login
  1. Home /
  2. Search

Search

Advanced filters
Published After
Published Before

Search Results

##search.searchResults.foundPlural##
  • Taylor Expansion Algorithm for the Branching Solution of the Navier-Stokes Equations

    K. Li & Y. He
    2005-02-01
    29973 2532 Pages:459-478
  • Cell Centered Finite Volume Methods Using Taylor Series Expansion Scheme Without Fictitious Domains

    G.-M. Gie, R. Temam
    2018-08-15
    32052 3754 Pages:1-29
  • Numerical Analysis of the Finite Difference Time Domain Methods with High Accuracy in Time for Maxwell Equations

    Liping Gao, Xiaosong Zhang, Rengang Shi
    2025-08-04
    6226 517 Pages:843-859
  • Error Analysis of an Immersed Finite Element Method for Euler-Bernoulli Beam Interface Problems

    Min Lin, Tao Lin & Huili Zhang
    2017-10-03
    33055 2641 Pages:822-841
  • Convergence of a Cell-Centered Finite Volume Method and Application to Elliptic Equations

    Gung-Min Gie & Roger Temam
    2015-12-01
    32909 2702 Pages:536-566
  • Pollution-Free Finite Difference Schemes for Non-Homogeneous Helmholtz Equation

    K. Wang, Y. S. Wong
    2014-11-01
    33782 2711 Pages:787-815
  • Symplectic Schemes for Stochastic Hamiltonian Systems Preserving Hamiltonian Functions

    C. A. Anton, Y. S. Wong, J. Deng
    2014-11-01
    33123 2685 Pages:427-451
1 - 7 of 7 items
Global Science Press
Follow Us
Useful Links
  • Publish with Us
  • Browse Journals
  • Open Access
  • Ethical Policy
  • Terms and Conditions
Resources
  • Publish with Us
  • Partner with Us
  • For Authors
  • For Institutions
  • For Librarians
  • For Agents
  • For Users
  • Editorial Process
About
  • About Global Science Press
  • Contact Us