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A Python package that provides classes and tools for dealing with dimensional quantities. Includes a parser for the quantity language (i.e. calculates "3 meters per second in miles per hour") and a class for constructing matrices containing dimensions.
C++ library for calculating the light propagation through large and very small structures (sub wavelength). The used method is the Fourier Modal Method. It can be solve one and two dimensional dielectric structures such as gratings, waveguides etc.
Ever needed a powerfull-n-simple calculator? Do you need to parse strings to expresions? This calculator can handle math functions, variables and a lot of libraries. By the way, you can easily write your own library.
A family of programs for building coarse-grained models (eg. of macromolecules), manipulating them (geometrical transformations and more) and calculating their X-ray scattering patterns (1D and 2D too). Uses PVM for parallelization.
DEXA is dedicated to providing post-experiment signal processing of DiffXAS signals. By combining ab initio theory with measured spectra, structural strain parameters may be extracted from the differential signals at an intrinsic, atomic scale.
IFEFFIT is a library and set of interactive programs for the analysis of x-ray
absorption fine-structure (XAFS) data. IFEFFIT combines state-of-the-art
analysis algorithms with graphical display of XAFS data, and general data
manipulation. It can be
User space driver to log data from PICO ADC 11/12 for Linux/Mac.
This is a user space driver to log data from PICO ADC 11/12 for Linux. It has been tested on Linux 32 and 64 and on Mac OS X based on Fink project.
You find more information about PICO ADC 11/12 here http://www.picotech.com/discontinued/USB-ADC-11.html.
This little driver is based on libusb-0.1 (legacy API) which you can find here http://www.libusb.org.
SunThink! is an INRIA Scilab-based program that assists in the good design of solar electricity systems. Its primary purpose is to facilitate the accurate, appropriate sizing of these systems to fit the specific design goals that are held for them.
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Wcalc is a tool for the analysis and synthesis of electronic components. Some of the models include coupled microstrip lines, single layer air core solenoid inductors, etc. Wcalc can analyze the electrical parameters based on the physical dimensions a
A collection of .h macros selected by #defines that support writing C or C++ programs that can be retargeted to Intel SSE, PowerPC, the IBM/Sony CBE, or scalar architectures under recompilation.
Geometric modeling, mesh generation and definition of boundary conditions for the numerical solution PDE problems by finite element and finite volume methods.
This program can be used to simulate the thermodynamics of magnetic materials with "classical" spins. It does this using the Metropolis Monte Carlo method. Arbitrary lattices and a number of magnetic interactions can be modelled.
A state-of-the-art full-potential linearised augmented-planewave (FP-LAPW) code. Designed to be as developer friendly as possible so that new developments in the field of density functional theory (DFT) can be added quickly and reliably.
GtkPlot is a graphical front-end for Gnuplot, based on gtk+. Features: 2D/3D plotting (parametric as well), labelling, axes management, and much more... Please consider shifting to the pyGtkPlot project: https://launchpad.net/pygtkplot
This is my vector calculator, wrote in Object-Pascal I made this, because I needed a vector calc, and I didn't find any on the internet! My classmates and my professor liked it, so I released here! This is also for novice programers, who want to study.
GGOS is a Graphical Simulator of the gravity interaction written in C. It provides a real-time tracking of the orbit and the user can interact with the universe with a lot of function. There is 2 different version:1(fast)with X11 2(slow)written with GLUT
CFD scientific software.
Provides simulation of 3D CFD problem based on Quasi-Gas Dynamics approach
with radiation processes token into account.
Lots of spectral intervals are considered.
Parallel MPI/OpenMP-based implementation is provided.
The purpose of the Programmable Chip EEG BCI project is to create a EEG that is modernized with some of the latest hardware. The Design uses lower amplification and higher bit analog to digital converters to remove the need for filtering and amplifying.