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Scroll model

Figure 4.4 Cross-sectional view of (a) MWCNT with concentric graphene tubes as described by the Russian doU model (b) scroll model of MWCNT formed by wrapping graphene sheet about the tube axis and (c) mixed model of MWCNT consisting of both concentric cylindrical tubes as well as spiral graphene layers. Figure 4.4 Cross-sectional view of (a) MWCNT with concentric graphene tubes as described by the Russian doU model (b) scroll model of MWCNT formed by wrapping graphene sheet about the tube axis and (c) mixed model of MWCNT consisting of both concentric cylindrical tubes as well as spiral graphene layers.
The scroll bar slides back and forth, and the "step" label is updated during the animation. You can rotate, translate, and scale the model at any point during the animation. [Pg.1273]

The model doesn t even say everything that you could think of to say about the requirements. For example, are the C dI arranged in any given order on the screen How does the user refer to a C eNvhen making a Sum If not all the C dlwill fit on the screen at a time, is there a scrolling mechanism ... [Pg.259]

Go to http //bevond-desians.com/pspice.htm and scroll to the middle of the page to the title "Level 3 spark gap model and test circuit" the second to last sentence says Note that the centre terminal of a spark-plug is normally fired with negative polarity". [Pg.32]

This screen shows that the model name is D1N4734A. The parameter for breakdown voltage is Bv and cannot be seen on the screen. Scroll the text window to the right to see more of the model ... [Pg.217]

Scroll down the window until you see the SPICE Models link ... [Pg.454]

If you scroll down the page, you will see the listing of models you can download ... [Pg.455]

Fig. 9.7 Snapshots of a re-entrant scroll wave in a 6x6x3 cm isotropic and homogeneous epicardial cuboid (left), and a wedge model of the human left ventricular free wall with similar dimensions, and fiber and sheet orientations giving orthotropy of propagation (right). Both examples use the ten Tusscher— Noble—Noble—Panfilov model [42] for excitation kinetics. In the wedge model these kinetics are spatially heterogeneous, with endocardial, mid-myocardial and epicardial tissue occupying approximately equal fractions of the transmural distance. In the cuboid, the diffusion coefficient was 0.154 mm2 ms-1 in all directions. The diffusion coefficient in the wedge was set to 0.154 mm2 ms-1 in the fiber axis direction, with a ratio of... Fig. 9.7 Snapshots of a re-entrant scroll wave in a 6x6x3 cm isotropic and homogeneous epicardial cuboid (left), and a wedge model of the human left ventricular free wall with similar dimensions, and fiber and sheet orientations giving orthotropy of propagation (right). Both examples use the ten Tusscher— Noble—Noble—Panfilov model [42] for excitation kinetics. In the wedge model these kinetics are spatially heterogeneous, with endocardial, mid-myocardial and epicardial tissue occupying approximately equal fractions of the transmural distance. In the cuboid, the diffusion coefficient was 0.154 mm2 ms-1 in all directions. The diffusion coefficient in the wedge was set to 0.154 mm2 ms-1 in the fiber axis direction, with a ratio of...
The next screen that the APW presents allows you to choose the driver for your printer by simply selecting the manufacturer from the list on the left and the model from the list that appears on the right (Figure 16.2). You may need to scroll on either side because the lists can get rather long. If your printer is not listed, or if you would like to install a more current driver, you can click the Have Disk button and... [Pg.659]

Step 1 It is easy to add the convective diffusion equation by starting with the fluid flow model of the T-sensor. Choose Multiphysics/Model Navigator. A window appears with a hst of possible equations. Scroll down and select Chemical Engineering Module/Mass Balance/Convection and Diffusion/Steady-state Analysis. Click Add. Now FEMLAB will solve both equations. [Pg.214]

To place a model or unit operation on your flowsheet (now called a block), click on the desired model and then click in the screen where you want the block to appear. Figure C.4 shows a DSTWU block. Continue in this fashion until you have the blocks you want. To delete a block, click on it and either choose Edit/Delete or right click and scroll down to delete. [Pg.261]

Our first step was the construction and testing of a breadboard model of the system, as shown in Figure 2. In this configuration, a conventional automotive turbocharger (in the foreground) was coupled to the scroll compressor portion of the First Generation Compressor/Expander Module (in the... [Pg.509]

Figure 8-59. Idealized models of multi-wall nanotubes (a) Russian doll (b) hexagonal prism (e) scroll. Figure 8-59. Idealized models of multi-wall nanotubes (a) Russian doll (b) hexagonal prism (e) scroll.
CFD has been usend to extend the experimental results to the geometries shown in Fig. (8). The numerical simulation was done using a three-dimensional RANS commercial software (CFX-12.1) with standard settings (unstructured 1.5 million node grid with K-co SST turbulence model and smooth walls). First, the three tested scrolls were simulated to get confidence with CFD accuracy and the results of this comparison are shown in Fig. (10)... [Pg.188]


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