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MM XRD MD: Free open-source, GPL C++, Qt, extensible via Python modules BALL: Molecular dynamics MM NMR: LGPL open-source: Standalone program [7] Cn3D: Free open-source: Standalone program [8] In the NCBI C++ toolkit Coot: XRD: Free open-source: Gabedit: XRD MM: Free open-source: C [9] Jmol: Free open-source: Java (applet or standalone program ...
The software is designed to be easy-to-learn for novice users, achieved by ensuring that tools for common tasks are 'discoverable' through familiar user interface elements (menus and toolbars), or by intuitive behaviour (mouse controls).
This is a list of free and open-source software for geological data handling and interpretation. The list is split into broad categories, depending on the intended use of the software and its scope of functionality. Notice that 'free and open-source' requires that the source code is available and users are given a free software license.
To determine the crystallographic orientation of the grains in the considered sample, the following software packages are in use: Fable [8] and GrainSpotter. [9] Reconstructing the 3D shape of the grains is nontrivial and three approaches are available to do so, respectively based on simple back-projection, forward projection, algebraic ...
It is positioned to fill the gap between general plotting software and programs specific for one field, e.g. crystallography or XPS. [1] Originally, Fityk was developed to analyse powder diffraction data. It is also used in other fields that require peak analysis and peak-fitting, like chromatography or various kinds of spectroscopy. [2]
Older (.OPJ), but not newer (.OPJU), Origin project files can be read by the open-source LabPlot or SciDAVis software. The files can also be read by QtiPlot but only with a paid "Pro" version. Finally the liborigin [1] library can also read .OPJ files such as by using the opj2dat script, which exports the data tables contained in the file.
However, several open source software packages are also available: Refnx and Refl1D for X-ray and neutron relectometry, [14] [15] and GenX [16] [17] are commonly used open source X-ray reflectivity curve fitting software. They are implemented in the Python programming language and runs therefore on both Windows
graph-tool is a Python module for manipulation and statistical analysis of graphs (AKA networks). The core data structures and algorithms of graph-tool are implemented in C++ , making extensive use of metaprogramming , based heavily on the Boost Graph Library . [ 1 ]