Python Physics Software for Linux

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Browse free open source Python Physics Software for Linux and projects below. Use the toggles on the left to filter open source Python Physics Software for Linux by OS, license, language, programming language, and project status.

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  • 1
    Acoustic Research Tool (ART)

    Acoustic Research Tool (ART)

    Acoustic Simulation Library for Frequency and Time Domain Simulations.

    ART is a flexible simulation framework for wind instruments. It includes a growing library of modelling elements. So far bore discontinuities, branches, tone holes, cylindrical and conical tubes, Bessel horns and bent tubes are available for frequency domain modelling. In the time domain generic bidirectional propagation elements, scattering elements, fractional delays, convolution with reflection functions and general z-domain networks are available and can be described using MuParserX expressions. Cylindrical and conical ducts can also be defined based on their geometry. Available models and their parameters can be enumerated and combined to form simulators for complex acoustical structures. Parameters can be specified symbolically by expressions containing other parameter values or global variables. Dependencies between parameters are resolved at run time. However, MuParserX expressions are compiled at design time. Zero-delay loops are detected and reported.
    Downloads: 14 This Week
    Last Update:
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  • 2
    pyBallistics is a graphical small arms ballistics program used to calculate ballistic coefficients, and model bullet trajectories. Future improvements will be a reloading database, and web links to industry reloading data.
    Downloads: 5 This Week
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  • 3
    MaxFEM

    MaxFEM

    Software for electromagnetic simulation

    MaxFem is an open software package for electromagnetic simulation by using finite element methods. The package can solve problems in electrostatics, direct current, magnetostatics and eddy-currents. Since version 0.4.0, MaxFEM requires Python 3. We have moved the installers to the MaxFEM website (see below). In order to improve MaxFEM, we will require you to fill out a simple form before downloading them.
    Downloads: 2 This Week
    Last Update:
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  • 4
    This toolkit allows complete control of a microscopy setup from Labview, Matlab, Scilab, Python, .Net, VB, IgorPro, Mathematica and more. Included is a standalone program for image acquisition and scripting control of a scientific microscope.
    Downloads: 2 This Week
    Last Update:
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  • 5
    KU1K is a set of tools for 4D,5D and 6D compact U(1) lattice gauge theory Monte Carlo simulation using the Skipis-Vantzos algorithm. As the calculations involved, even for the 4D case, are consuming, the project is modular so as to run on the Grid.
    Downloads: 1 This Week
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  • 6
    A Python package extending NumPy and SciPy to allow specification of numbers and arrays with physical units.
    Downloads: 1 This Week
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  • 7
    CT8K is an experimental quantum chemistry program intended to bring state of the art methods to the desktop PC
    Downloads: 0 This Week
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  • 8
    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: 0 This Week
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  • 9
    Dielectrophoresis for microfluidic applications, especially those biological, implemented in python
    Downloads: 0 This Week
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  • 10
    Damocles is a game engine programmed in C++.(Opengl/SDL) ||| OS:Linux / Windows ||| 3 main modules in Damocles: ||| Damocles : 3D engine |||Junior : Physic and Mathematics engine ||| Unik : Network engine (Only for Windows version for the moment)
    Downloads: 0 This Week
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  • 11
    Downloads: 0 This Week
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  • 12
    ED Software project contains several programs used (mostly) for processing gas-phase electron diffraction (GED) experimental data.
    Downloads: 0 This Week
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  • 13
    The EMCD Utility Program is designed to process EELS spectra (filtering, shift/stretch on a common energy scale) in order to generate qualitative EMCD signal by substracting the spectra. See also:
    Downloads: 0 This Week
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  • 14
    The goal of this project is to develop a generic and powerful 3D simulation framework mainly but not exclusively targeted at game development. Important aspects are efficency and simplicity of use.
    Downloads: 0 This Week
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  • 15
    **we moved to github** https://github.com/gimli-org/gimli Geophysical Inversion and Modeling Library
    Downloads: 0 This Week
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  • 16

    GMES

    GMES is a free Python package for FDTD electromagnetic simulations.

    GMES is a free finite-difference time-domain (FDTD) simulation Python package developed at GIST to model photonic devices. Its features include simulation in 1D, 2D, and 3D Cartesian coordinates, distributed memory parallelism on any system supporting the MPI standard, portable to any Unix-like system, variuos dispersive ε(ω) models, CPML absorbing boundaries and/or Bloch-periodic boundary conditions, and arbitrary material and source distributions. GMES officially stands for GIST Maxwell’s Equations Solver.
    Downloads: 0 This Week
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  • 17
    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
    Downloads: 0 This Week
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  • 18
    HOPSA
    HOPSA, high oxygen pressure sputter automation, is a Python 3 project to control a step wise sample creation Process. Although written for this specific task it is easy to adopt for any experimental task which changes hardware parameters and waits for a specific condition before proceeding. The graphical interface (QT4) includes plotting (matplotlib), instrument configuration/monitoring and a program step creator. The communication with the hardware is independent of the GUI and any number of devices can be selected. To modify the code for any other task only the hardware interface needs to be redefined.
    Downloads: 0 This Week
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  • 19
    LabRAD Experimenter
    A python package that allows scientists to easily create configurable and reusable experiments. Intended for use with the LabRAD framework. Developed by the Haeffner group studying quantum simulation at UC Berkeley. Wiki at lrexp.wikispaces.com
    Downloads: 0 This Week
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  • 20

    Liquid rocket engine parameter solver

    This is the liquid rocket engine parameter solver Alpha release 1.

    This is the liquid rocket engine parameter solver Alpha release 1 which is the first version for this project. This first version will help to find thrust values by giving some values to the system
    Downloads: 0 This Week
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  • 21
    Modama is a new software project for processing and analysing 2d detector data (images) provided by any available detectors, mainly SAX and WAX.
    Downloads: 0 This Week
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  • 22

    OpenSQUID

    Superconducting QUantum Interference Devices (SQUIDs) control software

    OpenSQUID is a Python framework for the control of SQUID (superconducting quantum interference device) readout electronics. It currently supports the Star Cryoelectronics PCI-1000 electronics with PFL-100 and PFL-102 flux-locked loops. Simultaneous operation of both PFL-100s and PFL-102s from a single PCI-1000 is supported. More features are under development. The software is implemented in Python and aims to be easily integrated with user-defined measurement and control code.
    Downloads: 0 This Week
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  • 23
    PyNewton provides an object oriented binding to access the Newton Game Dynamics engine from Python programs
    Downloads: 0 This Week
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  • 24
    PyPhys is a set of physical quantity classes written in Python. The classes represent physical quantities (like length, pressure, energy, etc.) that can be assigned and extracted in many different units.
    Downloads: 0 This Week
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  • 25
    Qutranpy

    Qutranpy

    Interactive electronic quantum transport

    Interactive program to perform quantum transport calculations by means of the Landauer and scattering matrix formalism, in a two terminal geometry. The Hamiltonians of leads and scattering region can be modified, adding exchange fields, mass, spin-orbit coupling or superconductivity.
    Downloads: 0 This Week
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