CrimeStat IV (version 4.02) is the most recent version of CrimeStat, a spatial statistics program for the analysis of crime incident locations. CrimeStat was developed by Ned Levine & Associates of Houston, Texas, under the direction of Ned Levine, Ph.D., and funded by grants from NIJ (grants 1997-IJ-CX-0040, 1999-IJ-CX-0044, 2002-IJ-CX-0007, and 2005-IJ-CX-K037).
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The program includes more than 100 statistical routines for the spatial analysis of crime and other incidents. CrimeStat inputs incident locations (e.g., robbery locations) in dbf, point shp or ASCII formats using either spherical or projected coordinates. It calculates various spatial statistics and writes graphical objects to ArcGIS, MapInfo, Surfer for Windows and other GIS packages.
CrimeStat is accompanied by sample datasets and a manual that gives the background behind the statistics and examples. The manual also discusses applications of CrimeStat developed by other analysts and researchers. The program and sample data sets are in Windows-based zipped files that can be downloaded. The manual is a set of individual chapters in PDF files. They can be viewed online or downloaded. If downloading the PDF chapters separately, they should be saved into the same directory as the CrimeStat program. If the PDF file names are not renamed, they can be accessed directly from other chapters or from the program's help menu.
The CrimeStat Libraries (version 1.1) are component objects that allow for the functions of CrimeStat to be programmed directly into custom software or systems. The CrimeStat Libraries include all of the routines that were developed through version 2.0 of the regular CrimeStat program, including spatial description, hot spot analysis and kernel density interpolation routines. Additional spatial autocorrelation routines have been included. The libraries can input dbf, point shape and ASCII text files and can output to shape file, ASCII text files and kml files.
TopSpin is Bruker's standard NMR software used in a wide range of workflows. Starting with the control of the spectrometer up to the processing and analysis of multidimensional NMR spectra. The acquisition interface provides easy access to vast NMR experiment libraries including standard Bruker pulse sequences and user generated experiment libraries, for both routine and advanced NMR users. TopSpin provides numerous options for setting up and optimizing NMR experiments, making the setup of sophisticated experiments simple and efficient. For users who must be compliant with the GxP regulations, the software supports the various principles of data integrity.
PhysMo is an open-source (free!) video motion analysis program, primarily designed as a learning tool for teachers and students of high school physics. PhysMo interactively demonstrates the fundamental principles of motion.
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"Written in an engaging and accessible manner, this book does a marvelous job of balancing its coverage on principles, techniques, and software tools for spatial analysis. ... It is truly a tour de force of geospatial analysis and is likely to become a classic ...I would highly recommend this book to anyone who is interested in learning about the latest developments in geospatial analysis and modeling." Prof D Z Sui, Review in: Annals, Association of American Geographers
This course takes Java beginners to the next level by covering object-oriented analysis and design. You will discover how to create modular, flexible, and reusable software, by applying object-oriented design principles and guidelines. And, you will be able to communicate these designs in a visual notation known as Unified Modelling Language (UML).
We use R throughout the book and we intend students to learn how to forecast with R. R is free and available on almost every operating system. It is a wonderful tool for all statistical analysis, not just for forecasting. See the Using R appendix for instructions on installing and using R.
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R is a free software environment for statistical computing andgraphics. It compiles and runs on a wide variety of UNIX platforms,Windows and MacOS. To download R,please choose your preferred CRAN mirror.
Diagonally-weighted factor rotation. As with weighted robust schemas in the extraction stage of factor analysis, robust rotation is expected to be particularly advantageous when the sampling errors of the bivariate correlations are considerably different and these errors can be estimated with reasonable accuracy. Different sampling errors are more likely to occur if the input correlations are tetrachoric and polychoric, because in this case the correlation matrix is estimated not jointly but pairwise. In order to compute a diagonally weighted factor rotation with FACTOR, the user has to select: (1) the robust factor analysis option, and (2) one of these three rotation methods: Promin, Weighted Varimax, or Weighted Oblimin. The output of the program informs the researcher that a robust rotation has been computed.
CADAM2D has been offered free since 1997 for educational purposes only. However, we are aware that the product is heavily used commercially by many users. For this reason, we have removed from the software the possibility of generating new models as well as modifying the geometry. However, several models are available to allow users to familiarize themselves with the stability calculations of hydraulic concrete structures. If you would like to use a stability analysis software in your commercial activities, we offer CADAM3D.
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