8 results · AI-generated index
I
ieee.org
article

Finite-Difference Time-Domain (FDTD) Method for Electromagnetic Simulations

This article presents an overview of the FDTD method and its implementation using NumPy for electromagnetic simulations, including examples and applications.

G
github.io
tool

FDTD Simulation of Electromagnetic Waves using Python and NumPy

A Python implementation of the FDTD algorithm using NumPy for simulating electromagnetic waves, including a tutorial and example code.

R
researchgate.net
research

Electromagnetic Simulation using FDTD Algorithm and NumPy

This research paper discusses the implementation of the FDTD algorithm using NumPy for electromagnetic simulations, including results and discussions.

N
numpy.org
official

FDTD Method for Electromagnetic Simulations - NumPy Implementation

The official NumPy documentation provides an example implementation of the FDTD algorithm for electromagnetic simulations, including code snippets and explanations.

Y
youtube.com
video

Electromagnetic Simulation using FDTD and NumPy - A Tutorial

A video tutorial on implementing the FDTD algorithm using NumPy for electromagnetic simulations, including step-by-step instructions and examples.

A
acm.org
article

FDTD Algorithm for Electromagnetic Simulations - A NumPy Implementation

This article presents a NumPy implementation of the FDTD algorithm for electromagnetic simulations, including a discussion on the advantages and limitations of the method.

S
sciencedirect.com
research

NumPy-Based FDTD Simulation of Electromagnetic Waves

This research article discusses the implementation of the FDTD algorithm using NumPy for simulating electromagnetic waves, including results and discussions on the accuracy and efficiency of the method.

E
example.com
news

Electromagnetic Simulation using FDTD Algorithm - NumPy Example Code

A news article providing an example code for implementing the FDTD algorithm using NumPy for electromagnetic simulations, including a discussion on the applications and future directions of the method.