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Blit contains a group of highly efficient iterative sparse solvers that can handle multiple right-hand-sides (i.e. block solvers). We will implement BLQMR, BLGMRES and other block algorithms in MATLAB, FORTRAN 90, C/C++, CUDA and OpenCL.
Set of scripts based on gaussian optics, which allow you to analyze the image waist created from a gaussian beam, and quickly determine 1-lens and 2-lens mode matching configurations to match a beam waist to another waist size
The Tylon Physics Engine is arigid body, iterative, impulse-based physics engine completely written in C#.
Tylon is a general purpose, cross-platform, physics engine.
Dasema is a compact C++ library for interpreting mathematical formula and applying them to data points/sets. It supports multiple variables and comes with a tool for benchmarking, a C++ GNU-like frontend as proof-of-consept and SWIG interface to Python.
PhantomPhysics is a physics equation solving program geared towards students in a High School physics class. This program can solve for just about any variable for any equation you might encounter in High School physics. PhantomPysics is written in Java.
Contains tools and executables for performing isoline retrieval as described in the paper: Peter Mills (2009) "Isoline retrieval: An optimal method for validation of advected contours." Computers & Geoscience, 35 (11); 2020-2031.
To create, as a community, an open-source, GPL-licensed positioning system designed with a service-oriented architecture (SOA) that will run on all major platforms to provide low-cost positioning of any Wi-Fi enabled devices.
A self-sufficient java framework for numerical solution of ODEs (diff eqs) and visualization. Samples are aeronautics/astronautics/physics/rocketry themed. Focus on clean design, modularity, reusability and documentation. Educational project.
Roboter is a 3D simulation of robots, which tries to be flexible and realistic while still being fairly easy to use, even for fun. Individualy designed robots can be either remote controled over network or via KI-scripts. Inspired by US-First Robotics.
Improving the speed of the signal analysis code for Seti@home. Leveraging modern processors advanced features such as SIMD and parallel execution units, as well as identifying better methods to code existing functions.