gVirtualXRay is a C++ library to simulate X-ray imaging. It is based on the Beer-Lambert law to compute the absorption of light (i.e. photons) by 3D objects (here polygon meshes). It is implemented on the graphics processing unit (GPU) using the OpenGL Shading Language (GLSL).
SimpleGVXR is a smaller library build on the top of gVirtualXRay. It provides wrappers to Python, R, Ruby, Tcl, C#, Java, and GNU Octave.
!!! This project is currently CLOSED.
There is a new version of API available under LGPL license at
https://github.com/gehtsoft-usa/BallisticCalculator1
There is a new version of application in progress (ported to net framework 5.0)
https://github.com/nikolaygekht/ballistic.calculator.app
Ballisitic Calculator based on JBM's implementation 3-degree of freedom model, ported to C#, improved to support metric system and extended by some math from Litz's "Applied Ballistic"...
IQWorks is a project to provide Medical Physicists with automated image analysis software for use with DICOM test images, such as CT, mammography and digital radiography.
...The primary goal of the project is to deliver the open source that provides the foundation for potentially complex CFD solutions capable of carrying computing in the distributed environment and particularly the Cloud computing.
Edit/create settings and data files(.bdf) of Bugale N-Body Simulator.
This project simply provides a convenient graphic user interface to create and edit the data files (simulation settings and body properties) for Bugale N-Body Simulator.
You can find the Bugale N-Body Simulator project here: https://sourceforge.net/projects/bugalesimulator/
You must have Microsoft .NET Framework 2.0 (or later) installed on your system in order to use this editor: http://www.microsoft.com/download/en/details.aspx?id=21
For starters a DirectX (Direct3D-Panel) A suite to display simple x/y/measurements, which has to be fast, because those analogue position encoders never "rest" at the same position and we want to see our table-position in realtime (mswin-realtime)
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This project demonstrates the use of a sniper gun (physics), and the behaviour of agents in a 3D world in case of a catastrophy like the assassination of a person.
The goal of this project is to produce a CAx-System for all people. Definition of CAx: en: http://en.wikipedia.org/wiki/CAx de: http://de.wikipedia.org/wiki/CAx