fdtd3d is an open source 1D, 2D, 3D FDTD electromagnetics solver with MPI, OpenMP and CUDA support for x64, ARM, ARM64, RISC-V, PowerPC architectures
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Updated
Aug 12, 2024 - C++
fdtd3d is an open source 1D, 2D, 3D FDTD electromagnetics solver with MPI, OpenMP and CUDA support for x64, ARM, ARM64, RISC-V, PowerPC architectures
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Time Domain Maxwell Solver
2D FDTD solver of Maxwell's equations
My lectures for the University of Liverpool PHYS201 (Electromagnetism I) module
Solving the Eddy Current problem with a multiplicative Schwarz smoothed geometric multigrid preconditioned GMRES solver in deal.II.
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FEniCS programs for solving Maxwell's equations in some special cases
simulation of Gauss's Law for electric fields, a fundamental part of Maxwell's equations
Electrodynamics simulator for calculating the fields and potentials generated by moving point charges and simulating oscillating dipoles with and without periodic mechanical motion.
Creation of a software package for calculating particle dynamics in external electromagnetic fields
This project demonstrates the use of finite difference methods to solve Laplace's and Maxwell's equations using MATLAB. It includes a 2D solver for potential distribution and a 1D FDTD simulation for electromagnetic wave propagation.
Determining the magnetic field strength in a slinky / solinoid relative to its turns and the permeability of free space.
Finite-difference time-domain (FDTD) method for modeling computational electrodynamics
Numerical Solution of Maxwell's Equations using js and p5js
Solving the reduced Maxwells equations in 1D using SBP-SAT and SBP-Projection.
A Stabilized Finite Element Solution for a Convection-Diffusion-Reaction system of equations focused on Maxwell's problem
This repository features MATLAB projects using Finite Difference Methods to solve Laplace's equation and Maxwell's equations. It includes a 2D Laplace's Equation Solver and a 1D FDTD Simulation with wave propagation and absorption, providing practical understanding and visualization tools.
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