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Oscilib (Open Science Library) aims to be a comprehensive suite of programs that provide a simple useful way to solve common scientific and mathematical problems.
Excited Energy Levels and Various Shapes (EELViS) was developed for calculation of the Extended Tao-Eldrup model results. The relation between potential well dimensions and positronium (Ps) lifetime can be calculated using this code.
Collection of Java Applications related to Scientific World. All these applications have their sourcecode available and can be easily changed by other programmers.
Visit http://www.hcroboting.com/ for more information.
AppSignal's MCP server hands Claude, Cursor, or Zed your real errors, traces, and the deploy that shipped them. AI writes the fix; you review the diff.
This software analyzes periodic dielectric gratings using an efficient numerical scheme based on Floquet Bloch theory. The software finds the propagation modes of a multilayer dielectric waveguide structure with periodic corrugations.
Geometric modeling, mesh generation and definition of boundary conditions for the numerical solution PDE problems by finite element and finite volume methods.
A state-of-the-art full-potential linearised augmented-planewave (FP-LAPW) code. Designed to be as developer friendly as possible so that new developments in the field of density functional theory (DFT) can be added quickly and reliably.
This program can be used to simulate the thermodynamics of magnetic materials with "classical" spins. It does this using the Metropolis Monte Carlo method. Arbitrary lattices and a number of magnetic interactions can be modelled.
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Henry is an interface for Taylor 1.4.3 package (A. Jorba & M. Zou) and was written for master thesis to compute N-body problems (in Poincare variables) and MEGNO stability factor. Work is supported by Krzysztof Gozdziewski.
GtkPlot is a graphical front-end for Gnuplot, based on gtk+. Features: 2D/3D plotting (parametric as well), labelling, axes management, and much more... Please consider shifting to the pyGtkPlot project: https://launchpad.net/pygtkplot
GGOS is a Graphical Simulator of the gravity interaction written in C. It provides a real-time tracking of the orbit and the user can interact with the universe with a lot of function. There is 2 different version:1(fast)with X11 2(slow)written with GLUT
CFD scientific software.
Provides simulation of 3D CFD problem based on Quasi-Gas Dynamics approach
with radiation processes token into account.
Lots of spectral intervals are considered.
Parallel MPI/OpenMP-based implementation is provided.
A graphical interface for solving exterior ballistics problems, based on the excellent GNU exterior ballistics library. This software generates valid 3-DOF solutions to small arms trajectories, including wind and atmospheric corrections.