Lesezeichen  172

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    R is a language and environment for statistical computing and graphics. It is a GNU project which is similar to the S language and environment which was developed at Bell Laboratories (formerly AT&T, now Lucent Technologies) by John Chambers and colleagues. R can be considered as a different implementation of S. There are some important differences, but much code written for S runs unaltered under R. R provides a wide variety of statistical (linear and nonlinear modelling, classical statistical tests, time-series analysis, classification, clustering, ...) and graphical techniques, and is highly extensible. The S language is often the vehicle of choice for research in statistical methodology, and R provides an Open Source route to participation in that activity. One of R's strengths is the ease with which well-designed publication-quality plots can be produced, including mathematical symbols and formulae where needed. Great care has been taken over the defaults for the minor design choices in graphics, but the user retains full control. R is available as Free Software under the terms of the Free Software Foundation's GNU General Public License in source code form. It compiles and runs on a wide variety of UNIX platforms and similar systems (including FreeBSD and Linux), Windows and MacOS.
    vor 15 Jahren von @thorade
     
     
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    # sK1 illustration program sK1 is an open-source illustration program that can substitute professional proprietary software like Corel Draw or Adobe Illustrator*. Currently GNU/Linux is our main development platform, but porting on Win32 and MacOS X desktops has been scheduled. sK1 supports professional publishing features, such as CMYK color, separations, ICC color management and press-ready PDF output. # UniConvertor UniConvertor is a universal vector graphics translator. It is a command line tool which uses sK1 object model to convert one file format to another. The project is a multiplatform software and can be compiled under GNU/Linux (and other UNIX-like systems), MacOS X and Win32/64 operation systems. # CDR Explorer CDR Explorer is a research tool for CorelDraw file formats. It was used to create a CDR import filter for sK1 Editor and UniConvertor. This tool is written on Python and works under GNU/Linux, MacOS X and Win32. # WMF format parser (pymfvu) pymfvu is a small research project. This project was started to prepare new WMF/EMF filter for sK1 and Uniconvertor. The pymfvu program can open and render both Windows Metafile and Enchanced Metafile files.
    vor 15 Jahren von @thorade
     
     
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    In short, Solver is a what-if analysis tool for optimization. It is an add-in licensed from Frontline Systems that has shipped with Excel for many years.
    vor 14 Jahren von @thorade
     
     
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    Gene Expression Programming (GEP) is a new evolutionary algorithm that evolves computer programs (they can take many forms: mathematical expressions, neural networks, decision trees, polynomial constructs, logical expressions, and so on). The computer programs of GEP, irrespective of their complexity, are all encoded in linear chromosomes. Then the linear chromosomes are expressed or translated into expression trees (branched structures). Thus, in GEP, the genotype (the linear chromosomes) and the phenotype (the expression trees) are different entities (both structurally and functionally), and because of this apparently trivial fact, this new evolutionary system can finally make a difference, successfully assisting researchers in the design of robust and accurate computer models. As in nature, the linear chromosomes of GEP consist of the genetic material that is passed on with modification to the next generation. This, in other words, means that in GEP all the genetic modifications take place in the linear chromosomes (much easier to do than in complex branched structures as is done in GP), and it also means that only the linear chromosomes are transmitted in the process of reproduction (linear strings are much easier to replicate than complicated tree structures). And also as in nature, it's only during development that the information encoded in the chromosomes is finally expressed into fully developed computer programs or expression trees (ETs). Expression trees are sophisticated computer programs that are usually evolved to solve a particular problem and are therefore selected according to their fitness at solving that task. With time, populations of such computer programs (encoded, of course, in linear chromosomes) will discover new traits (thanks to genetic modification) and therefore will become better adapted to the particular environment chosen for their breeding (this environment defines obviously the problem at hand). And this means that, given enough time and that we've set the stage correctly, a good solution to the problem at hand will be discovered. So, GEP is a full-fledged genotype/phenotype system, with the genotype totally separated from the phenotype. In Genetic Programming, though, we have a totally different scenario: genotype and phenotype are one entangled mess or what is more formally called a simple replicator system. And the consequences of this are huge: the full-fledged genotype/phenotype system of GEP surpasses the old GP system by a factor of 100-60,000!
    vor 14 Jahren von @thorade
     
     
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    VirtualDub is a video capture/processing utility for Windows platforms, licensed under the GNU General Public License (GPL). It lacks the editing power of a general-purpose editor such as Adobe Premiere, but is streamlined for fast linear operations over video. It has batch-processing capabilities for processing large numbers of files and can be extended with third-party video filters. VirtualDub is mainly geared toward processing AVI files, although it can read (not write) MPEG-1 and also handle sets of BMP images.
    vor 14 Jahren von @thorade
     
     
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    Mission The Thermophysical Properties Division provides the best available measurements, theory, computations, and data evaluation for the thermophysical property information required to enable development of standards, enhance productivity, facilitate trade, ensure scientific and technological progress, and improve the quality of life. Overview The Thermophysical Properties Division (TPD) was formed at the beginning of 2008 by a reorganization which separated the old Physical and Chemical Properties Division into two entities with distinct focuses and each housed on one of the two main campuses of NIST. The TPD is a Division of the Material Measurement Laboratory located on the Boulder campus. The Thermophysical Properties Division strives to be the foremost and best source of high quality thermophysical property information. This vision is driven by the ubiquitous importance of this information to commerce, industry, manufacturing, and national policy objectives. The Division meets its challenges through an integrated program of experimental measurement, data collection and evaluation, development of theoretically based models, and simulation of model systems. Among the outputs of the Division are computerized standard reference databases which synthesize thermophysical property information in forms which are conveniently used by our stakeholders. The vast majority of commodity exchanges in chemicals, energy related fluids, and materials are based on physical and chemical properties. In some cases, national and international standards for these properties are needed, such as the AGA-8 equation of state for the properties of natural gas, ASME-IAPWS Properties of Water and Steam, ISO-Standard Equations for refrigerants. Generally these standards are presented in the form of high accuracy equations of state which allow determination of a wide range of thermodynamic properties. Additionally, performance criteria of working fluids, feedstock, chemicals, and cryogenic systems are inextricably linked to thermophysical properties, e.g. density, viscosity, boiling point, phase behavior, heat capacity, stability, etc. Engineering design, optimal operation, and innovation for engines, chemical manufacturing, power generation, heating and air conditioning, distillation, etc. depends critically on knowledge of these properties. Reliable properties data are critical to competitive advantage, sustainability, and innovation. Finally, we note that widespread reliance of industry on properties information, success in setting and achieving national energy, environmental, and security goals often requires an extensive and trustworthy properties information-base. To meet the broad spectrum of needs, only briefly sketched above, the Division’s work is structured along four synergistic themes: * Develop and maintain the measurement capabilities, standard materials and reference data needed to underpin a national system of thermophysical property measurements; * Develop large-scale, readily accessible data resources providing trustworthy property information meeting high priority needs for a broad range of industries and national agendas; * Develop empirical and fundamental predictive capabilities to enable reliable estimation of property values when experimental data are unavailable; Research experimental techniques and address key data-gaps in support of specific, high priority industrial and national initiatives. These themes allow effective response to customer needs and are consistent with the Division’s operating strategy to maintain a highly synergistic research program that includes an appropriate balance of measurement, theory, and predictive models. The combination of the Division’s world class expertise and unrivaled resources in measurement, archiving, and provision of high-quality property data is complemented by its forefront research to develop reliable and highly adaptable methods for estimating property data in cases where measurements are unavailable or extremely difficult and/or costly to obtain. Core Expertise The expertise in the Division is broadly distributed within the fields of thermophysical properties and processes, emphasizing (1) data infrastructure and access; (2) predictive theory and models; and (3) experimental tools and measurements. More specifically, the Division maintains competence in data evaluation and dissemination; property models for industrial use; measurement of thermophysical properties; cryogenic technologies; separation technologies; fuel properties; and properties for environmental chemistry. Key Interactions with Customers Division outputs are routinely used in a variety of industrial, governmental, and academic settings. For instance, through a collaboration with Aspen Technology, evaluated data from the NIST Thermodynamic Data Engine are available to some 60,000 chemical plants world-wide. A consortium of chemical and related companies provides direct input to the data collection and evaluation programs of the Thermodynamic Research Center Group. The NIST REFPROP database was purchased by some 1200 customers in 2008, and all cryogenic flow meters in the U.S. are tied to the Division’s calibration and testing services. The Division houses the editorial offices of the International Journal of Thermophysics (and provides an editor of the Journal of Physical and Chemical Reference Data) and organizes the triennial Symposium on Thermophysical Properties to maintain connections. Sponsored research in the Division also provides direct links to key customers: work with DOD (primarily the Air Force) is important to our fuels program; DHS funds some of our work on properties and data for explosives; DARPA works with the Division in its micro-cryocooler project; DOE is engaged in our properties work related to advanced power generation and in gas hydrates data. Future Directions and Plans The National challenges related to energy security and monitoring/mitigating anthropogenic climate (or other environmental) changes are reflected in the Division’s plans. The Division recently held workshops on property needs for biofuels and aerospace fuels: alternative fuels and feedstocks will command an increased emphasis in the future.
    vor 14 Jahren von @thorade
     
     
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    WordPress is web software you can use to create a beautiful website or blog. We like to say that WordPress is both free and priceless at the same time.
    vor 14 Jahren von @thorade
     
     
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    Texmaker is a free, modern and cross-platform LaTeX editor for linux, macosx and windows systems that integrates many tools needed to develop documents with LaTeX, in just one application. Texmaker includes unicode support, spell checking, auto-completion, code folding and a built-in pdf viewer with synctex support and continuous view mode.
    vor 13 Jahren von @thorade
     
     
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    SimulationX is a graphically-interactive tool for the holistic modeling, simulation and analysis of multi-domain systems from 1D to 3D. Multi-level customizing options and SimulationX’s capability to adjust the model’s complexity by mouse-click allow modeling in every step of the design process. Ready-to-use model libraries, e.g., for mechanics, multi-body systems, power transmission, hydraulics, pneumatics, thermodynamics, and electric drives are written in Modelica language. Libraries are extendable by Modelica-based modeling using the SimulationX TypeDesigner. A comprehensive API supports the integration into any CAE, CFD, CAD or database tool environment. Versatile interfaces offer plenty of opportunities for exporting models in terms of Simulink S-function and C-Code for HiL, RCP and other real-time applications. Different features (tracing, performance analyzer, switchable model complexity) support users in achieving real-time-capabilities.
    vor 13 Jahren von @thorade
     
     
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    Dymola provides a powerful object-oriented modeling and simulation tool, which can handle large and complex multi-domain models with no manual equation manipulation.
    vor 15 Jahren von @thorade
     
     
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    MinGW, a contraction of "Minimalist GNU for Windows", is a minimalist development environment for native Microsoft Windows applications. MinGW provides a complete Open Source programming tool set which is suitable for the development of native MS-Windows applications, and which do not depend on any 3rd-party C-Runtime DLLs. (It does depend on a number of DLLs provided by Microsoft themselves, as components of the operating system; most notable among these is MSVCRT.DLL, the Microsoft C runtime library. Additionally, threaded applications must ship with a freely distributable thread support DLL, provided as part of MinGW itself). MinGW compilers provide access to the functionality of the Microsoft C runtime and some language-specific runtimes. MinGW, being Minimalist, does not, and never will, attempt to provide a POSIX runtime environment for POSIX application deployment on MS-Windows. If you want POSIX application deployment on this platform, please consider Cygwin instead. Primarily intended for use by developers working on the native MS-Windows platform, but also available for cross-hosted use, (see note below -- you may need to follow the "read more" link to see it), MinGW includes: A port of the GNU Compiler Collection (GCC), including C, C++, ADA and Fortran compilers; GNU Binutils for Windows (assembler, linker, archive manager) A graphical and a command-line installer for MinGW and MSYS deployment on MS-Windows MSYS, a contraction of "Minimal SYStem", is a Bourne Shell command line interpreter system. Offered as an alternative to Microsoft's cmd.exe, this provides a general purpose command line environment, which is particularly suited to use with MinGW, for porting of many Open Source applications to the MS-Windows platform; a light-weight fork of Cygwin-1.3, it includes a small selection of Unix tools, chosen to facilitate that objective, and using it is a necessary prerequisite for building mingwPORTs. mingwPORTs are user contributed additions to the MinGW software collection. Rather than providing these "add-ons" as precompiled binary packages, they are supplied in the form of interactive Bourne shell scripts, which guide the end user through the process of automatically downloading and patching original source code, then building and installing it. Users who wish to build any application from a mingwPORT must first install both MinGW and MSYS.
    vor 13 Jahren von @thorade
     
     
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    Modelon offers Modelica-based solutions for a range of industries and applications. Our unique expertise is consulted by customers all over the world.
    vor 13 Jahren von @thorade
     
     
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    The GNU Scientific Library (GSL) is a numerical library for C and C++ programmers. It is free software under the GNU General Public License. The library provides a wide range of mathematical routines such as random number generators, special functions and least-squares fitting. There are over 1000 functions in total with an extensive test suite. The complete range of subject areas covered by the library includes, Complex Numbers Roots of Polynomials Special Functions Vectors and Matrices Permutations Sorting BLAS Support Linear Algebra Eigensystems Fast Fourier Transforms Quadrature Random Numbers Quasi-Random Sequences Random Distributions Statistics Histograms N-Tuples Monte Carlo Integration Simulated Annealing Differential Equations Interpolation Numerical Differentiation Chebyshev Approximation Series Acceleration Discrete Hankel Transforms Root-Finding Minimization Least-Squares Fitting Physical Constants IEEE Floating-Point Discrete Wavelet Transforms Basis splines Unlike the licenses of proprietary numerical libraries the license of GSL does not restrict scientific cooperation. It allows you to share your programs freely with others.
    vor 13 Jahren von @thorade
     
     
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    This library is written in Modelica. The purpose of this library is to calculate fluid properties from an equation of state (EoS), directly within Modelica and not from an external dll. It supports EoS of the form f=f(T,d) meaning Helmholtz energy as a funtion of temperature and density. In addition to all state properties, this library calculates viscosity, thermal conductivity and surface tension. So far, the fluids n-Butane, R134a and Isobutane are implemented, but not fully validated. The next fluids to be implemented are probably isopentane, propane, ammonia, CO2 and other possible working fluids for Organic-Rankine-Cycles.
    vor 13 Jahren von @thorade
     
     
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    Presents original and review papers on all aspects of numerical algorithms Coverage includes new algorithms, theoretical results, implementation, numerical stability, complexity, parallel computing, subroutines and applications Also provides book reviews and announcements of scientific meetings The journal Numerical Algorithms presents original and review papers on all aspects of numerical algorithms: new algorithms, theoretical results, implementation, numerical stability, complexity, parallel computing, subroutines and applications. Papers on computer algebra related to obtaining numerical results also included. The journal offers high quality papers containing material not published elsewhere. The journal also provides book reviews and announcements of scientific meetings.
    vor 12 Jahren von @thorade
     
     
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    The pack­age that fa­cil­i­tates ex­pres­sive syn­tax high­light­ing in LaTeX us­ing the pow­er­ful Pyg­ments li­brary. The pack­age also pro­vides op­tions to cus­tomize the high­lighted source code out­put us­ing fan­cyvrb.
    vor 11 Jahren von @thorade
     
     
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    Scilab ist ein freies Software-Paket für Anwendungen aus der numerischen Mathematik, das seit 1990 als Alternative zu MATLAB entwickelt wird. Die Funktionalität und Syntax von Scilab ist zu weiten Teilen mit der von MATLAB identisch und es gibt Konverter von MATLAB nach Scilab.
    vor 16 Jahren von @thorade
     
     
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    JabRef is an open source bibliography reference manager. The native file format used by JabRef is BibTeX, the standard LaTeX bibliography format.
    vor 15 Jahren von @thorade
     
     
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    Zotero is a free, easy-to-use Firefox extension to help you collect, manage, and cite your research sources. It lives right where you do your work — in the web browser itself.
    vor 15 Jahren von @thorade
     
     

Publikationen  27