A wave-optical path tracer
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Updated
Sep 8, 2025 - C++
A wave-optical path tracer
Public code release for the ACM Transactions on Graphics paper "Breaking Good: Fracture Modes for Realtime Destruction" and the NeurIPS 2022 paper "Breaking Bad: A Dataset for Geometric Fracture and Reassembly"
A collection of free educational materials, most of which are interactive or 3D animated. (See README below). You may find inspiration for measurement techniques here. They may improve your comprehension of STEM topics & even writing.
Collections of MATLAB scripts and functions for the design of systems comprising cylindrically magnetized objects.
This is the home of the Aether model of the thermosphere and ionosphere
A collection of algorithms, simulations, generators, utilities and mathematical scripts written in Python.
PDE solver focused on Navier-Stokes (and related) equations with arbitrary boundary conditions, employing Fourier (FC-Gram) expansions. Parallelized using MPI-OpenMP-CUDA.
Free and open-source code package designed to perform PyMEEP FDTD simulations applied to Plasmonics (UBA+CONICET) [Buenos Aires, Argentina]
Implementation of a Physics Informed Neural Network (PINN) written in Tensorflow v2, which is capable of solving Partial Differential Equations.
Official PyTorch implementation of the CALM layers and CALM-PDE model.
Implements Helmholtz-Hodge decomposition for an AMR velocity field
Wave Simulation Experiment in Python
4×4 transfer matrix method for simulating light reflection from anisotropic multilayer structures with Mueller matrix analysis
Simulating ionospheric effects on radio interferometry observations. This code simulate the MWA radio telescope and applies ionospheric source position offsets to the computed visibilities.
Physics simulations of MecanicaScience.
SimLab is an internet laboratory where anyone can freely add and share their desired simulations.
Advanced Microscopy Simulations - Create realistic fluorescence microscopy data!
This repository contains the LAMMPS and python scripts created from the ground-up, along with the most important data, to conduct a thorough analysis of the Thermal Rectification (TR) in semi-stochastically generated atomistic models of polycrystalline graphene with graded grain size variation - using Molecular Dynamics & mapping of phonon modes.
Proprietry software to solve the 2-electron time-dependent Schrodinger equation including a laser pulse interaction
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