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visualize

  • JCCKit is a Java library which can be used in any Java application or applet to visualize scientific

    JCCKit is a Java library which can be used in any Java application or applet to visualize scientific data by plots or charts

    標簽: Java application scientific visualize

    上傳時間: 2014-01-23

    上傳用戶:三人用菜

  • 3D visualizer to visualize 3D gridded Data

    3D visualizer to visualize 3D gridded Data

    標簽: visualizer visualize gridded 3D

    上傳時間: 2013-12-04

    上傳用戶:ggwz258

  • PSO’s precursor was a simulator of social behavior, that was used to visualize the movement of a bi

    PSO’s precursor was a simulator of social behavior, that was used to visualize the movement of a birds’ flock. Several versions of the simulation model were developed, incorporating concepts such as nearest-neighbor velocity matching and acceleration by distance

    標簽: precursor was simulator visualize

    上傳時間: 2013-12-16

    上傳用戶:chenjjer

  • Example - 3-D Stem Plot of an FFTFor example, fast Fourier transforms are calculated at points aroun

    Example - 3-D Stem Plot of an FFTFor example, fast Fourier transforms are calculated at points around the unit circle on the complex plane. So, it is interesting to visualize the plot around the unit circle. Calculating the unit circle.

    標簽: calculated transforms Example Fourier

    上傳時間: 2013-12-17

    上傳用戶:wpwpwlxwlx

  • Core JSP In recent years, a large amount of software development activity has migrated from the cl

    Core JSP In recent years, a large amount of software development activity has migrated from the client to the server. The client-centric model, in which a client executes complex programs to visualize and manipulate data, is no longer considered appropriate for the majority of enterprise applications. The principal reason is deployment—it is a significant hassle to deploy client programs onto a large number of desktops, and to redeploy them whenever the application changes. Instead, applications are redesigned to use a web browser as a "terminal". The application itself resides on the server, formatting data for the user as web pages and processing the responses that the user fills into web forms.

    標簽: development activity migrated software

    上傳時間: 2014-01-13

    上傳用戶:duoshen1989

  • Recent work by Petricoin and Liotta and co-workers (Petricoin et al. Use of proteomic patterns in se

    Recent work by Petricoin and Liotta and co-workers (Petricoin et al. Use of proteomic patterns in serum to identify ovarian cancer. Lancet. 2002 Feb 16 359(9306):572-7. PMID: 11867112) has generated a lot of excitement and controversy. This example shows some ways that MATLAB can be used to read, visualize, pre-process (base-line correction, resample) and classify the data. The data can be downloaded from http://home.ccr.cancer.gov/ncifdaproteomics/ppatterns.asp

    標簽: Petricoin co-workers and proteomic

    上傳時間: 2016-04-28

    上傳用戶:hewenzhi

  • A Convex Hull is the smallest convex polygon that contains every point of the set S. A polygon P is

    A Convex Hull is the smallest convex polygon that contains every point of the set S. A polygon P is convex if and only if, for any two points A and B inside the polygon, the line segment AB is inside P. One way to visualize a convex hull is to put a "rubber band" around all the points, and let it wrap as tight as it can. The resultant polygon is a convex hull.

    標簽: polygon S. the contains

    上傳時間: 2013-12-23

    上傳用戶:it男一枚

  • Matlab 畫三維立體圖形

    Matlab 畫三維立體圖形 The aim of geom3d library is to handle and visualize 3D geometric primitives such as points, lines, planes, polyhedra... It provides low-level functions for manipulating 3D geometric primitives, making easier the development of more complex geometric algorithms.      Some features of the library are:   - creation of various shapes (3D points, 3D lines, planes, polyhedra...)     through an intuitive syntax.      Ex: createPlane(p1, p2, p3) to create a plane through 3 points.     - derivation of new shapes: intersection between 2 planes, intersection between     a plane and a line, between a sphere and a line...   - functions for 3D polygons and polyhedra. Polyhedra use classical vertex-faces     arrays (face array contain indices of vertices), and support faces with any     number of vertices. Some basic models are provided (createOctaedron,     createCubeoctaedron...), as well as some computation (like faceNormal or     centroid)      - manipulation of planar transformation. Ex.:     ROT = createRotationOx(THETA);     P2  = transformPoint3d(P1, ROT);     - direct drawing of shapes with specialized functions. Clipping is performed      automatically for infinite shapes such as lines or rays. Ex:     drawPoint3d([50 50 25; 20 70 10], 'ro');    % draw some points     drawLine3d([X0 Y0 Z0 DX DY DZ]);            % clip and draw straight line Some functions require the geom2d package.       Additional help is provided in geom3d/Contents.m file, as well as summary files     like 'points3d.m' or 'lines3d.m'.

    標簽: Matlab 畫三維立體圖形

    上傳時間: 2015-11-02

    上傳用戶:A1321

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