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A series of Jupyter notebooks that walk you through the fundamentals of Machine Learning and Deep Learning in Python using Scikit-Learn, Keras and TensorFlow 2.
This toolkit is a curated collection of machine learning projects, resources, and utilities designed to assist both beginners and seasoned practitioners in their journey through the fascinating wor…
Code Repository for Machine Learning with PyTorch and Scikit-Learn
TensorFlow - A curated list of dedicated resources http://tensorflow.org
The implementation code for "DAGAN: Deep De-Aliasing Generative Adversarial Networks for Fast Compressed Sensing MRI Reconstruction"
A series of Jupyter notebooks that walk you through the fundamentals of Machine Learning and Deep Learning in Python using Scikit-Learn, Keras and TensorFlow 2.
An easy to use on-screen annotation software inspired by Epic Pen.
openEMS is a free and open electromagnetic field solver using the FDTD method.
Single-file implementations of 2D and 3D acoustic and elastic wave propagation in time domain using finite-differences(FDTD). Simple formulation and implementation
This repository provides a MATLAB implementation of the 3D Finite Difference Time Domain (FDTD) method for simulating the propagation of plane electromagnetic waves in a non-dispersive medium.
An algorithm is presented for the rapid evaluation of the potential and force fields in systems involving large numbers of particles whose interactions are Coulombic or gravitational in nature.
This repository provides a MATLAB implementation of the 3D Finite Difference Time Domain (FDTD) method for simulating the interaction between a monopole antenna and skin.
This repository provides a MATLAB implementation of the 3D Finite Difference Time Domain (FDTD) method for simulating the propagation of plane electromagnetic waves in a skin-like medium.
This repository provides a MATLAB implementation of 3D Finite Difference Time Domain (FDTD) methods optimized for both CPU and GPU execution. The approach aims to leverage the computational power o…
This repository provides a MATLAB implementation of the 3D Finite Difference Time Domain (FDTD) method for simulating the propagation of plane electromagnetic waves in real skin.
This repository contains an accelerated parallel implementation of the 3D Finite Difference Time Domain (FDTD) method using GPU computing in MATLAB.
Introduction to the essential Linux commands
The proposed design aims at ensuring high-resolution data acquisition and at predicting samples with precision and accuracy in real-time. To present the collected data, we develop also a web applic…
Examples of how to create colorful, annotated equations in Latex using Tikz.
⚡A fully-featured very fast file manager that runs inside your terminal. It's designed for Linux.
This repository contains a MATLAB implementation of the 1D Finite Difference Time Domain (FDTD) method for simulating the propagation of plane electromagnetic waves in a plasma medium.
This codebase is a set of libraries to compute N-body interactions governed by the Laplace and Helmholtz equations, to a specified precision, in two dimensions, on a multi-core shared-memory machine.
3-D Finite Difference Time Domain Methods for Plane Wave Propagation in a Vacuum.
This repository provides a MATLAB implementation of the 1D Finite Difference Time Domain (FDTD) method for simulating the propagation of plane electromagnetic waves in a vacuum.