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ACRASH is an open implementation of the CRASH Monte-Carlo continuum radiative transfer scheme presented in Ciardi et al. 2001 and Maselli et al. 2003. This code solves the radiative transfer equation for any geometry in 3D using a Monte-Carlo scheme.
Galileo is an open source photo-realistic 3D renderer. Galileo is being developed in an effort to provide an efficient, state of the art, montecarlo renderer for use in research and artistic endeavors.
This project is concerned with developing a MonteCarlo simulation code for a simple hopping model of diffusion on a comb-like lattice. It is coded in C.
gkbench is a benchmark application using a multithreaded version of MonteCarlo method to estimate the value of pi. The program can be used to test the performance of modern hyper-threaded/ multi-core systems.
Use SASSIE to generate and manipulate large numbers of molecular structures and then calculate the SAXS, SANS, and neutron reflectivity profiles from atomistic structures. Use for intrinsically disordered proteins. We need alpha-testers and developers.
Source code for the paper J. Keiner and B. Waterhouse. Fast Principal Components Analysis method for finance problems with unequal time steps. In P. L'Ecuyer and A. B. Owen, editors, MonteCarlo and Quasi-MonteCarlo Methods 2008, Springer Verlag, 2010
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SEMSIM is designed for single-electron device (SET) and circuit simulation using the MonteCarlo method. It uses adaptive techniques to significantly improve the time efficiency while maintaining accuracy.
Yans is a extensible, mixed-level, Monte-Carlo Method based, discrete event network simulator. Yans is divided into interacting layers, namely: core, topology, nodes, monitors; and is driven by a config-file that describes the setup of the network.
This program can be used to simulate the thermodynamics of magnetic materials with "classical" spins. It does this using the Metropolis MonteCarlo method. Arbitrary lattices and a number of magnetic interactions can be modelled.
The Tomographic Image Reconstruction Interface of the Universite de Sherbrooke (TIRIUS) is a Qt-based user-interface software for reconstructing 3D images from data generated by real apparatus or generated by the GATE MonteCarlo simulator.
QMcBeaver is an object-oriented program to perform Quantum MonteCarlo calculations on atoms and molecules. It is designed to be easy to modify, allowing new ideas to be quickly implemented.
PIMC++ is a code designed to perform fully-correlated simulations of quantum systems in continuous space at finite temperature using Path Integral MonteCarlo.
It is designed in a modular way to facilitate easy addition of new algorithms.
...-parametric MonteCarlo likelihood methods were chosen for their ability to treat both one-dimensional and multivariate SDE systems, although the quality of the inferential results can't match those obtained using more advanced techniques. Nevertheless the toolbox capabilities to simulate numerical solutions of SDE systems are still valid and can serve as a useful starting point to those willing to simulate stochastic dynamical models easily.
TAROT is a easy-to-use framework for MonteCarlo simulations in python. Calculations between different kinds of randomly distributed numbers are made as easy as basic arithmetics. Tarot provides an interactive graphical interface for interpretation.
Garrett is a simple scripting language for MonteCarlo portfolio evaluation. It has applications in energy, economics and more. Garrett automatically parallelizes and vectorizes the input simulation for maximum performance.
RL Poker is a study project Java implementation of an e-soft on-policy MonteCarlo Texas Hold'em poker reinforcement learning algoritm with a feedforward neural network and backpropagation. It provides a graphical interface to monitor game rounds.
GRAY (High Energy Photon Ray Tracer) is a Monte-Carlo ray-driven high energy photon transport engine for mainly PET and SPECT applications that supports complex mesh based primitives for source distributions, phantom shapes, and detector geometries.
NullAllEst is the implementation of a maximum likelihood algorithm to estimate the frequency of a null allele in microsatellite genetic data. A Markov Chain MonteCarlo simulation is used to solve the likelihood function.
MonteCarlo implementation for the "Mobile Charge Densities in Harmonic Oscillators" (MCDHO) Molecular Force Field for Numerical Simulations of Biological Systems
MANIKK is a toolkit for generating numerical interaction parameters -- describing the interaction between metallic atoms in a coherent lattice -- and for performing numerical MonteCarlo-simulations of physical properties of alloy systems.