Python Physics Software

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

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  • 1
    pyCRYS

    pyCRYS

    X-ray spectrometer designer

    This program allows to design a x-ray spectrometer. A particular aspect is the large options of crystal shape. The source, crystal and detector are freely positionnable in 3D space (allowing to check the effect of misalignment)
    Downloads: 2 This Week
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  • 2

    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: 1 This Week
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  • 3
    Pulse Programmer
    A programmable signal generator and RF synthesizer for scientific experiments, especially quantum computing and quantum information processing. It includes hardware, firmware, software, and documentation, all under an open source license.
    Downloads: 1 This Week
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  • 4

    Larch: Data Analysis for X-ray Spectra

    Data Processing and Analysis for X-ray Spectroscopy and More

    Larch is a scientific data processing language that is designed to be easy to use for novices and complete enough for advanced data processing and analysis. Larch provides a wide range of functionality for dealing with arrays of scientific data, and basic tools to make it easy to use and organize complex data. Larch has been primarily developed for dealing with x-ray spectroscopic and scattering data, especially the kind of data collected at modern synchrotrons and x-ray sources. Larch is written in Python and relies heavily on the standard tools for scientific computing with Python (numpy, scipy, matplotlib, and h5py).
    Downloads: 1 This Week
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  • 5

    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: 1 This Week
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  • 6
    QPendulum is a python module and a documentation for researcher, students and amateurs who wants to evaluate the Quantum Macroscopic Effects.
    Downloads: 1 This Week
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  • 7
    We have moved to github! Please visit us at https://github.com/ROOTPWA-Maintainers/ROOTPWA. ######################## ROOTPWA is a toolkit for partial-wave analysis of multi-particle final states produced in high-energy particle reactions. It is used to determine hadron spectra from experimental data. NOTE: The code is only accessible through the git repository in the "Code" section of this website. Please refer to the README file on how to get and install ROOTPWA and on how to contribute to the project. In case you are using ROOTPWA on a regular basis, please consider signing up for our low-traffic user's mailing list. In case you encounter problems using ROOTPWA, please use the bug-ticket system to get help.
    Downloads: 1 This Week
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  • 8

    Scientific data elaborator

    The data elaborator is a new project to manage scientific data

    This program can make histograms, table and graphics of datas, study the error propagation during a measure, it is usefull if you have to do study errors propagations. The output are latex files, so it is easy for you just put them into your relations.
    Downloads: 1 This Week
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  • 9
    The igraph library

    The igraph library

    Library for creating and manipulating graphs

    This is a library for creating and manipulating graphs with focus on speedy operations for large, sparse graphs.
    Downloads: 1 This Week
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  • 10
    2DFLT

    2DFLT

    Program for Normalization, Averaging and Editing of In Situ Data Sets

    2DFLT it is first out of two programs which allows implementation of Phase Sensitive Detection (PSD) and/or Modulated Enhanced Diffraction (MED) techniques on the in situ data. This software allows collecting individual data files from in situ experiment into one dataset. After that this data set can be visualized, edited, normalized and averaged. Resulted data can be saved as one flat file (FLT-format) which can be used for PSD/MED calculations via 2DMED software (http://sourceforge.net/projects/twodmed/?source=directory). 2DFLT specifically was written to target in situ X-ray Powder Diffraction data from synchrotron measurements. Hence it can read CHI, XYE (TOPAS), FXYE(GSAS/ GSASII) and XY- files formats. However it can read general in situ data written into individual TXT or XY – files.
    Downloads: 0 This Week
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  • 11
    2DMED

    2DMED

    Phase Sensitive Detection and Modulated Enhanced Diffraction Software

    2DMED it is the second out of two programs which allows implementation of Phase Sensitive Detection (PSD) and/or Modulated Enhanced Diffraction (MED) techniques on the in situ data. This software takes normalized and averaged in situ data in flat file format (FLT) and performs PSD transformation which has been described in Urakawa, A.et al. Chem. Eng. Science 2008, 63, 4902. User can choose demodulation index k and perform several demodulation calculations. This is extremely important since demodulation calculations at k = 2 on in situ powder diffraction data represent implementation of MED method which been described in Chernyshov, D. et al. Acta Cryst. 2011, A67, 327. Demodulated data can be then viewed on 2D and/or 1D plot and analyses with different tools including In Phase Plot, Maximum Amplitude Plot and Positive Pattern Plot. Demodulated data also can be saved in ASCII format for further analysis.
    Downloads: 0 This Week
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  • 12
    APBS

    APBS

    Biomolecular electrostatics software

    This software has moved to http://www.poissonboltzmann.org/.
    Downloads: 0 This Week
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  • 13

    Aircraft Trajectory Predictor

    Compute Aircraft Trajectories

    Compute Aircraft (jet) Trajectories based upon Eurocontrol BADA Aircraft Performance Model
    Downloads: 0 This Week
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  • 14
    Autonomous Robot Simulator

    Autonomous Robot Simulator

    Physically-accurate robotics simulator written in Python

    ARS is a physically-accurate robotics simulator written in Python. It's main purpose is to help researchers with to develop mobile manipulators and, in general, any multi-body system. It is open-source, modular, easy to learn and use, and can be a valuable tool in the process of robot design, in the development of control and reasoning algorithms, as well as in teaching and educational activities.
    Downloads: 0 This Week
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  • 15
    Python library for Wageningen B-Series Propeller calculations
    Downloads: 0 This Week
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  • 16
    Combines Blender's graphical interface and rendering capabilities with MBDyn's multi-body dynamics, aerodynamics, and aeroelastics simulation and analysis, for rapid modeling and realistic rendering of physics based multi-body simulations.
    Downloads: 0 This Week
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  • 17
    BrennerMD is a public domain Fortran molecular dynamics program by Donald Brenner and other people. This project is to maintain the original source code and to build a Python interface on top of it.
    Downloads: 0 This Week
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  • 18
    C++QED

    C++QED

    A framework for simulating open quantum dynamics

    C++QED is an application-programming framework for simulating open quantum dynamics in general. It has demonstrated the ability to simulate full Master equation of up to several thousand, and quantum trajectories of up to several hundred thousand dimensions. The basic idea is to allow users to build arbitrarily complex interacting quantum systems out of free subsystems and interactions (elements), and simulate their time evolution with a number of available time-evolution drivers. C++QEDv2 specifies a small grammar to describe composite quantum systems. Apart from providing a number of elements out of the box, there are tools which facilitate the implementation of new elements. These are being added continuously, as the need arises. The principal concept of the design of C++QEDv2 is that all information available at compile time should be processed as such, with the help of TMP. The framework is very sensitive to performance both in computer resources and coding/design.
    Downloads: 0 This Week
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  • 19
    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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  • 20

    Cambridge Rocketry Simulator

    Simulate high power rocket flights with splash down plots

    This software allows you perform six degree of freedom simulations of High Power Rocket (HPR) and model rocket flights. Parachute descent is also simulated. 3D flight trajectories are produced as well as detailed tabular flight data. Running in Monte Carlo mode allows generates multiple possible flight paths and splash down plots, indicating the probability of landing in an area. Peer-reviewed publication in the Journal of Open Research Software (JORS) http://doi.org/10.5334/jors.137 "Cambridge Rocketry Simulator – A Stochastic Six-Degrees-of-Freedom Rocket Flight Simulator"
    Downloads: 0 This Week
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  • 21
    Charybdis is a Python-driven set of applications for solving partial differential equations on irregular domains.
    Downloads: 0 This Week
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  • 22
    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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  • 23
    A toolkit in C++ and python to process both experimental and simulation data of colloidal particles. Includes among others * a multiscale particle tracking algorithm [1] whose C++ implementation is optimised for 3D confocal data. Python implementation is more versatile (2D and 3D data). * a Leica file reader, * Steindhard bond orientational order calculation * a VTK file writer 1. Leocmach, M. & Tanaka, H. A novel particle tracking method with individual particle size measurement and its application to ordering in glassy hard sphere colloids. Soft Matter 9, 1447–1457 (2013). https://dx.doi.org/10.1039/C2SM27107A (http://arxiv.org/pdf/1301.7237.pdf)
    Downloads: 0 This Week
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  • 24
    Compilation of Physics Calculators

    Compilation of Physics Calculators

    A compliation of Physics derived claculators

    A NEW GUI VERSION WILL BE RELEASED SOON! Thank you for visiting the Physics Calculator, provided by PIezoSystems Inc., please visit their company website at https://piezosystems.org. For other downloads, please visit our github page, https://github.com/PiezoSystems. We hope that you find this program useful and easy to use, for troubleshooting, please email us, contact@piezosystems.org. If any bugs were found, please email us at bugs@piezosystems.org.
    Downloads: 0 This Week
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  • 25
    Cute Converter
    Cute Converter is now part of LibreEngineering suite: http://sourceforge.net/projects/libreeng/
    Downloads: 0 This Week
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