Showing 1720 open source projects for "physics"

View related business solutions
  • MongoDB Atlas runs apps anywhere Icon
    MongoDB Atlas runs apps anywhere

    Deploy in 115+ regions with the modern database for every enterprise.

    MongoDB Atlas gives you the freedom to build and run modern applications anywhere—across AWS, Azure, and Google Cloud. With global availability in over 115 regions, Atlas lets you deploy close to your users, meet compliance needs, and scale with confidence across any geography.
    Start Free
  • Ship Agents Faster Icon
    Ship Agents Faster

    Transform your applications and workflows into powerful agentic systems at global scale.

    Gemini Enterprise Agent Platform lets you rapidly build, scale, govern and optimize production-ready agents grounded in your organization's data. The platform enables developers to build custom or pre-built agents for virtually any use case. New customers get $300 in free credits.
    Get Started Free
  • 1
    EPICS Qt Framework

    EPICS Qt Framework

    Qt based GUI system for use on EPICS control systems. (Now on GitHub)

    (Now mantained on GitHub - https://qtepics.github.io/) A layered framework based on Qt for accessing Experimental Physics and Industrial Control System (EPICS) data using Channel Access (CA). Designed for rapid development of control system graphical interfaces. Initially developed by Glenn Jackson, Anthony Owen, and Andrew Rhyder at the Australian Synchrotron. Later, Andrew Starritt and Ricardo Fernandes joined the development team.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 2
    Coffee-Physics

    Coffee-Physics

    A simple, lightweight physics engine written in CoffeeScript

    Coffee-Physics is a minimalist physics engine written in CoffeeScript that favors approachable, creative-coding workflows over heavyweight simulation frameworks. It models motion with a particle system and uses simple constraints and behaviors—such as gravity, attraction/repulsion, drag, and springs—to create believable movement with very little code.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 3
    Heat transfer in a bar and sphere

    Heat transfer in a bar and sphere

    Heat transfer in a bar and sphere using finite differences.

    Simulation of the heat transfer in a bar and a sphere (1D) using finite differences in Matlab. Authors: -Jheyson A. Mogollon R. - jheyson260@gmail.com -Luca Meinardo - lucameinardo@gmail.com -Angie Xiomara González - angiegduque@gmail.com Current Version: 2.0 Date: 30/05/2017
    Downloads: 0 This Week
    Last Update:
    See Project
  • 4

    fairy

    flexible analysis of irradiation yields in nucelar spectroscopy

    This program is for easy, fast and intuitive visualization and analysis of nuclear spectroscopic data. The program's functionality can be extended with plugins.
    Downloads: 0 This Week
    Last Update:
    See Project
  • $300 Free Credits for Your Google Cloud Projects Icon
    $300 Free Credits for Your Google Cloud Projects

    Start building on Google Cloud with $300 in free credits. No commitment, no credit card required until you're ready to scale.

    Launch your next project with $300 in free Google Cloud credits—no strings attached. Test, build, and deploy without risk. Use your credits across the entire Google Cloud platform to find what works best for your needs. After your credits are used, continue with always-free tier services. Only pay when you're ready to scale. Sign up in minutes and start exploring.
    Start Free Trial
  • 5
    This package includes a collection of MATLAB files which are designed to: 1. Given a calibration scan of the image of a point emitter with an engineered point spread function (PSF), 2. Perform a phase retrieval algorithm based on maximum likelihood estimation (MLE) of a phase aberration term which is added to the theoretical pupil function of the imaging system. 3. Use the phase-retrieved pupil function to perform single-emitter localization. Accompanying publication available here:...
    Downloads: 0 This Week
    Last Update:
    See Project
  • 6
    MuPIF

    MuPIF

    Multi-Physics Integration Framework (MuPIF)

    Multi-Physics Integration Framework (MuPIF) is an integration framework, that will facilitate the implementation of multi-physic and multi-level simulations, built from independently developed components. The principal role of the framework is to steer individual components (applications) and to provide high-level data-exchange services. Each application should implement an interface that allows to steer application and execute data requests.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 7
    MathFu

    MathFu

    C++ math library developed primarily for games focused on simplicity

    ...The design emphasizes minimal dependencies and clear ownership so the library can be embedded into engines without dragging in heavyweight frameworks. It fits equally well in rendering math, physics helpers, animation blending, and camera control logic where determinism and speed matter.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 8

    Political economy library

    Political economy simulation toolkit

    Political economy library is a set of classes and accompanied tools for simulation of economy based on employment by companies, production of goods and consumption - EPC model. Actually it includes market-based model for research of the effects of Tobin tax. The library is based on Zarja library.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 9

    Aire

    Astrophysical Integrated Research Environment

    AIRE (Astrophysical Integrated Research Environment) is a set of computing facilities initiated by Tsinghua Center for Astrophysics , which aims to aid astrophysicists collect, store and analyze data.
    Downloads: 1 This Week
    Last Update:
    See Project
  • Fully Managed MySQL, PostgreSQL, and SQL Server Icon
    Fully Managed MySQL, PostgreSQL, and SQL Server

    Automatic backups, patching, replication, and failover. Focus on your app, not your database.

    Cloud SQL handles your database ops end to end, so you can focus on your app.
    Try Free
  • 10
    ImagingAnalysis

    ImagingAnalysis

    Direct tissue-level image quantification package for Mathematica

    ImagingAnalysis is a Mathematica package that performs grid-based analysis of time-lapse imaging data saved in a sequence of TIFF files. This package requires Mathematica 7.0. Revised on 14 May 2017: Bugs are fixed and incompatibility issues are resolved. The current version runs on Mathematica 11.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 11

    dyn4fx

    A 2d physics game engine for JavaFX

    Dyn4FX is a 2d physics game engine for JavaFX. This project extends the Dyn4j physics engine and makes it into a full fledged 2d game engine. It has support for input , application states , audio , animations and other common game features. If you want to learn more about the underlying physics engine please visit. http://www.dyn4j.org/
    Downloads: 0 This Week
    Last Update:
    See Project
  • 12
    Grin is a set of tools for solving 2D elliptic equations using boundary elements (Green's functions)
    Downloads: 0 This Week
    Last Update:
    See Project
  • 13

    Advanced Numerical Instruments 3D

    Advanced numerical instruments: adaptive meshing, FE methods, solvers

    Ani3D provides portable libraries for each step in the numerical solution of systems of PDEs with variable tensorial coefficients: (1) unstructured adaptive mesh generation, (2) metric-based mesh adaptation, (3) finite element discretization and interpolation, (4) algebraic solvers.
    Downloads: 1 This Week
    Last Update:
    See Project
  • 14
    PhysX: An physical IDE

    PhysX: An physical IDE

    An physical IDE

    PhysX is an tiny IDE, wich may help you learn physics (Newton's laws) and basics of computer graphics. Powered by PainterIDE Here you can find documentation: https://drive.google.com/open?id=0B59hmminR8i9cU1qOWUzQTRIZ2s
    Downloads: 11 This Week
    Last Update:
    See Project
  • 15
    ChiantiPy is a Python package for the CHIANTI atomic database for astrophysical spectroscopy. It provides access to the database and the ability to calculate various physical quantities for the interpretation of astrophysical spectra.
    Downloads: 2 This Week
    Last Update:
    See Project
  • 16

    MSU's Sparse Fourier Repository

    The Home of DMSFT, AAFFT, GFFT, and MSFFT.

    A collection of sparse Fourier transform codes developed by faculty at MSU. Currently codes for four different prototype sparse FFTs are here: 1.) DMSFT, implemented by Ruochuan Zhang. This is a fast, stable, noise robust, and *fully discrete* improvement on the ideas in GFFT below. It is THE BEST sparse FFT around!!! If you're looking for AAFFT, try this out first. 2.) AAFFT, implemented by Mark Iwen in 2008. This code is easy to use, and documented well, but not implemented...
    Downloads: 0 This Week
    Last Update:
    See Project
  • 17
    J-ICE
    J-ICE stands for Jmol interface for crystallographic and electronic properties. Is an extension of the powerful, platform independent molecular visualizer Jmol, towards crystallographic and electronic properties. More info will be given soon.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 18
    vision2

    vision2

    Binocular vision examination using shutter glasses

    Vision2 serves as tool for ophthalmologists and other vision testing professionals. It's useful for a variety of ophthalmology testing applications related to stereo vision. It implements many of classical tests but also new types of vectographic and random dot exams. Program was created as part of diploma thesis in Wroclaw University of Technology in Poland.
    Downloads: 1 This Week
    Last Update:
    See Project
  • 19
    Grid-based Coupled Electron and Electromagnetic field Dynamics (GCEED) is an open-source software package for massively parallel first-principles calculations of electron dynamics in real time and real space. The program codes are written in the Fortran 90/95 language with MPI and OpenMP. Time dependent density functional theory (TD-DFT) calculations can be performed on 100,000 CPU cores of K Computer with high parallel efficiency.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 20
    UnityConverter

    UnityConverter

    Simple software to convert many kinds of unity.

    Unity Converter is the software, which have really good tools to convert many kinds of unity, it helps people whose works with physics too much, and also people who are engineer.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 21

    GQGMC

    Driver for GQ LLC GMC-300 Geiger Counter

    GQGMC is a user level driver for interfacing a Linux host to GQ Electronic's GMC-300 geiger-muller counter. Written in C++, the driver provides an interface method for each of the capabilities of the GMC-300. A sample command line text only program and sample Qt based GUI program are provided.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 22
    The Virtual Geometry Model (VGM) provides abstract interfaces to geometry objects and functions for conversion between supported geometry formats (Geant4, Root, GDML, AGDD).
    Downloads: 0 This Week
    Last Update:
    See Project
  • 23

    openepics_model

    Accelerator physics modeling framework

    This project contains relational database schema, data API and service (future) for accelerator physics modeling needs.
    Downloads: 0 This Week
    Last Update:
    See Project
  • 24

    RAtom

    solves nonlinear Kohn-Sham equation for the neutral atom.

    ...Sci. Eng. vol. 17, 045001 (2009) 2. Z. Romanowski, "Application of h-adaptive, high order finite element method to solve radial Schrödinger equation", Molecular Physics, vol. 107, pp. 1339-1348 (2009). Further questions: romz@wp.pl
    Downloads: 0 This Week
    Last Update:
    See Project
  • 25

    RSchr-5

    Solves one-electron Schrödinger equation, with SLEPc and PETSc

    RSchr-5 calculates the smallest eigenvalues of the one-electron Schrödinger equation. The solved problem is defined on the finite domain, which is a box. The problem is solved with the zero Dirichlet boundary conditions. The implemented algorithm uses Finite Element Method with B-splines as basis functions. Disctretization leads to generalized eigenvalue problem. Program RSchr-5 solves the generalized eigenvalue problem by algorithms implemented in SLEPc amd PETSc libraries. It uses...
    Downloads: 0 This Week
    Last Update:
    See Project