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Parallel configuration

Fig. 19 shows an example of the orientational density profile evaluated for the system 10. Most of the particles of the first adlayer assume two limiting configurations parallel to the surface and vertical to the surface. The second adlayer exhibits also well pronounced orientational ordering ... [Pg.231]

Fig. 11. Dual-electrode cell configurations. I, series configurations, thin-layer (A) and packed-bed (B) cell designs. II, parallel configurations, parallel adjacent (A) and parallel opposed (B) cell designs... Fig. 11. Dual-electrode cell configurations. I, series configurations, thin-layer (A) and packed-bed (B) cell designs. II, parallel configurations, parallel adjacent (A) and parallel opposed (B) cell designs...
Types of printer connections and configurations Parallel Network USB Infrared Serial... [Pg.269]

The following two configurations (parallel and angular), which are shown in Figure 2.14, are in common use to improve the monochromatization of the beam. Both diffracting plates can be crystal monochromators, or one can be the sample while another is the monochromator. The latter arrangement is especially common in powder diffractometry. [Pg.125]

Thermomechanical analysis (TMA) provides a convenient and more reproducible, scientific approach to gel time measurement. Using a specific TMA probe configuration (parallel plate rheometer), TMA-measured dimensional changes can be converted to gel time and viscoelastic values. [Pg.472]

Coplanar electrodes are used when one wants to obtain orientation in the plane of the film [45], while a sandwich (electrode-film-electrode) configuration (parallel plate electrodes) can be used to achieve perpendicular poling (Fig. 3.7). [Pg.131]

Fig. 3.7 Sketch of two configuration for contact poling. Left coplanar waveguide geometry (CPW), right sandwich configuration (parallel plate electrodes)... Fig. 3.7 Sketch of two configuration for contact poling. Left coplanar waveguide geometry (CPW), right sandwich configuration (parallel plate electrodes)...
The fluid flow through the core, through the SG and the PRHRS HEX, is characterized by flow through parallel channels. The channels in the core are formed by the fuel rods and those in the SG and PRHRS by closed flow-tube channels. Such flow configurations, parallel flow channels, are susceptible to instabilities for single-and two-phase flows. Under long-term safe shut-down conditions the PRHRS is expected to be a two-phase flow system. [Pg.494]


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See also in sourсe #XX -- [ Pg.297 ]




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