Numerical Stability of Finite Difference Algorithms for Electrochemical Kinetic Simulations: Matrix Stability Analysis of the Classic Explicit, Fully Implicit and Crank-Nicolson Methods and Typical Problems Involving Mixed Boundary Conditions

Leslaw K. Bieniasz, Ole Østerby, Dieter Britz. Numerical Stability of Finite Difference Algorithms for Electrochemical Kinetic Simulations: Matrix Stability Analysis of the Classic Explicit, Fully Implicit and Crank-Nicolson Methods and Typical Problems Involving Mixed Boundary Conditions. Computers & Chemistry, 19(2):121-135, 1995. [doi]

@article{BieniaszOB95,
  title = {Numerical Stability of Finite Difference Algorithms for Electrochemical Kinetic Simulations: Matrix Stability Analysis of the Classic Explicit, Fully Implicit and Crank-Nicolson Methods and Typical Problems Involving Mixed Boundary Conditions},
  author = {Leslaw K. Bieniasz and Ole Østerby and Dieter Britz},
  year = {1995},
  doi = {10.1016/0097-8485(94)00054-I},
  url = {http://dx.doi.org/10.1016/0097-8485(94)00054-I},
  tags = {analysis},
  researchr = {https://researchr.org/publication/BieniaszOB95},
  cites = {0},
  citedby = {0},
  journal = {Computers & Chemistry},
  volume = {19},
  number = {2},
  pages = {121-135},
}