C code to perform numerical solution of the 1D Diffusion equation using Crank-Nicolson differencing
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Updated
Nov 29, 2023 - C
C code to perform numerical solution of the 1D Diffusion equation using Crank-Nicolson differencing
Deformable lattice Boltzmann method for diffusion in 1D moving domains
Using a parallel implementation of the fast Fourier transform to solve the diffusion equation
Hybrid Cellular Automata that represents field cancerization.
A solution, written in C, to the heat equation using Crank-Nicholson and finite differences.
Solving the 2D diffusion equation using the FTCS explicit and Crank-Nicolson implicit scheme with Alternate Direction Implicit method on uniform square grid
Solving the 1d diffusion equation using the FTCS and Crank-Nicolson methods
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