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Graphic simulation

The graphics capabiUties of the CAD/CAM environment offer a number of opportunities for data manipulation, pattern recognition, and image creation. The direct appHcation of computer graphics to the automation of graphic solution techniques, such as a McCabe-Thiele binary distillation method, or to the preparation of data plots are obvious examples. Graphic simulation has been appHed to the optimisation of chemical process systems as a technique for energy analysis (84). [Pg.64]

Graphic User Interface window and Graphic Simulation window... [Pg.159]

The Graphic Simulation window should be closed before the Graphic User Interface window. [Pg.159]

When the Graphic Simulation window is still open, the Graphic User Interface window should not be used. [Pg.159]

The environmental multimedia and PBPK models were built and linked together on the common platform software called Ecolego (www.facilia.se). One of the main characteristics of Ecolego system is the use of Interaction Matrices to build and visualize models (Fig. 10). The effective graphical simulation interface presented in... [Pg.64]

It can be user-friendly because of its effective graphical simulation interface and its flexibility, which facilitates users to design scenarios for target regions and... [Pg.65]

Tsuji, Y., Tanaka, T., and Ishida, T., Graphic Simulation of Plug Conveying, Proc. of Pneumatech, 4 39-50 (1990)... [Pg.711]

Graphical simulations were performed using the graphing calculator function on an Apple Macintosh PowerPC personal computer. [Pg.234]

Fig. 9.24 A graphic simulation of the experimentally-determined local pz spin and charge-carrier densities. The diameter of the circles is proportional to the spin density. From [37]. Fig. 9.24 A graphic simulation of the experimentally-determined local pz spin and charge-carrier densities. The diameter of the circles is proportional to the spin density. From [37].
Tool path verification graphically simulating the tool motion to ensure that the tool path has no collision with the fixture and the machine and produces correct part geometry. [Pg.482]

Graphical Simulation Model MIDAS provides the user with a set of CAD development tools for both the design and modification of the simulation domain elements. The system also provides for the selection of a set of views or graphical simulation windows. These windows can provide various perspectives into the ongoing simulation, from that of a God s-eye view of the vehicles, environment and operators to views from the eyes of a particular human agent in the simulation. [Pg.2433]

Additionally, an "Interactive Graphic Simulator" (SGI), which uses several computer screens instead of control panels is extensively used. [Pg.322]

The Spanish regulatoiy body (CSN) required the utilities to perform an assessment of the requirements of the full scope simulators. The utilities presented the assessment and the CSN finally has required for four units to have full scope simulators, for three units to perform a new analysis for the adequacy of their training simulators, and for two old plants to develc an integrated graphic simulators (SGI) and to have access to an adequate simulator. [Pg.322]

Once quantum chemistry has provided all the information required, that is, rotational and centrifugal distortion constants and, if the case, hyperfine parameters as well as line intensities, a graphical simulation of the rotational spectrum can be performed. The latter requires the knowledge of the experimental technique involved. For example, if the frequency modulation with second harmonic detection is performed, then the second derivative of the natural spectrum is obtained (as seen in Figure 6.2). The graphical representation of the computed spectrum can then be... [Pg.283]

The methodology designed is conceived from a brief description of differential flatness systems concepts afterwards the concept of parameterization of routes is introduced, with the tracking method from one point to another in order to be implemented in the system. This analysis provides different graphical simulations that show the outcomes. Finally, a discussion is opened about the advantages of the implementation and future possibilities for studies. [Pg.149]


See other pages where Graphic simulation is mentioned: [Pg.64]    [Pg.823]    [Pg.721]    [Pg.159]    [Pg.161]    [Pg.162]    [Pg.77]    [Pg.225]    [Pg.422]    [Pg.410]    [Pg.100]    [Pg.319]    [Pg.2456]    [Pg.389]    [Pg.111]    [Pg.217]    [Pg.389]    [Pg.326]    [Pg.346]    [Pg.10]    [Pg.73]    [Pg.123]    [Pg.154]   
See also in sourсe #XX -- [ Pg.422 ]




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