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Display modes

The scan mode display is divided into a number of windows, that display the data recorded from the active inspections. In addition, the A-scan data from the ultrasonic probes can be displayed in probe monitor windows, for monitoring the signal quality. Figure 7 shows the scan mode display for simultaneous recording of two P-scan inspections (displayed in the same presentation window) and a T-scan inspection together with 3 probe monitor windows. [Pg.787]

Figure 8 Analyze mode display of P-scan and TOFD Inspection. Figure 8 Analyze mode display of P-scan and TOFD Inspection.
The analyze mode display is similar to the scan mode display used online. Analyze mode includes functions for evaluation of data, e. g. markers, measure functions, zoom function and selection of cross-section views. In addition, A-scan data can be reconstructed into images and displayed. [Pg.789]

Among its many useful features is the ability to simulate both discrete and continuous CA, run in autorandoinize and screensaver modes, display ID CAs as color spacetime diagrams or as changing graphs, display 2D CAs either as flat color displays or as 3D surfaces in a virtual reality interface, file I/O, interactive seeding, a graph-view mode in which the user can select a sample point in a 1-D CA and track the point as a time-series, and automated evolution of CA behaviors. [Pg.718]

It is obvious from Figure 3.9 that both the frequency and bandwidth of the C=0 stretching mode displays remarkable sensitivity to the polarity and the H-bonding ability of the solvent. The frequency downshift and slight bandwidth broadening observed when changing the solvent from cyclohexane to MeCN is due to the nonspecific electrostatic solvent-solute interaction affected mainly by the solvent... [Pg.140]

Density mode Displays the 2D data set in the less common density plot representation. [Pg.126]

Stacked mode Displays the data set in a stacked plot form. Local functional... [Pg.126]

Infrared data were consistent with the presence of coordinated tertiary phosphines and the absence of rhenium-oxygen contaminants. The low-frequency bands assigned to Re—G stretching modes displayed the normal shift to lower frequency upon reduction of the metal in the series Re2G6(PR3)2 > Re2 Cls (PR3 )3 > Re2 Cl4(PR3)4 (124). [Pg.286]

The FAB, TSP, APCI and ESI mass spectra in the positive ionization mode display the protonated molecular ion, generally accompanied by other adducts of the molecular species and fragments resulting from the loss of one or several water molecules originating from the ring hydroxyl groups. [300-302] As an acidic function is always present in these compounds, they also yield intense ions in the negative ion mode. [303-305] The spectra... [Pg.383]

Figure 6.26 Coordination modes displayed by hydroxo ligand in its lanthanide complexes. Figure 6.26 Coordination modes displayed by hydroxo ligand in its lanthanide complexes.
Quantum dynamics simulations were run within a nine-dimensional model subspace including the nine most important modes displayed on Fig. 10 and a fivedimensional model including only the pseudo-branching-plane modes 1 and 15, and the three out-of-plane photoactive modes 4, 16x, and 16 j [31,53]. The results were interpreted with regard to the topological features of the extended seam of conical intersection and their influence on the photoreactivity. This is illustrated with Fig. 11. [Pg.189]

In the FV approach the deflection data are shced and sorted in deflection values that are larger and smaller than some arbitrarily chosen value. Hence, this mode displays the deflection values with respect to a reference point, which is different from true pull-off forces. For instance, f-d curves displaying a large hysteresis may show a strongly negative (deflection = force) value in the FV image, which may erroneously imply large pull-off forces (for an illustrative example see hands-on example 38). [Pg.193]

As important examples, IR investigations on SOj, H2S and HjO molecules adsorbed on zeolites should be mentioned. All three of them proved to be non-hnear, exhibiting the fundamental modes displayed in Fig. 41 (cf. [645]). [Pg.124]

Modes define mutually exclusive sets of automation behaviors. Modes can be used to determine how to interpret inputs or to define required controller behavior. Four general types of modes are common controller operating modes, supervisory modes, display modes, and controlled process modes. [Pg.289]

Our studies with aphids clearly suggest that thiamethoxam, like the other examined neonicotoinoids, binds to nicotinic receptors. However, there are clear differences to the other commercial neonicotinoids as documented by a kinetic analysis of competition experiments. While thiamethoxam binds to receptors with nanomolar affinity, micromolar concentrations are required to displace imidacloprid. Further, the interaction between the two compounds is noncompetitive meaning that binding of thiamethoxam reduces the binding capacity of the receptor preparation for imidacloprid but not its affinity. Thiamethoxam shares this unusual mode of inhibition with other neonicotinoids (not commercialized) also featured by an W-Methyl group in die pharmacophore. In the competitive mode, displayed by the other commercial neonicotinoids, the capacity is unchanged, while the affinity is reduced. [Pg.79]

A known technical solution to obtain retardation compensation over a wider temperature range is to replace the retarder film by a second STN cell filled with LC molecules of low molecular weight showing a temperature dependence of the optical retardation similar to the switchahle cell [2]. However, these DSTN-mode displays are heavier and more expensive. These disadvantages are removed by a new retarder film which shows a reversible retardation change with temperature adapted to the given cell s retardation change. [Pg.665]

Fig. 14 Several density modes displayed on a logarithmic scale versus time. The results were obtained through DSCFT calculations in a three-dimensional system of length Lx=Ly=Lz = 635Re using 7x7x7 functions for a quench from yJV = 0.314 to /JV = 5. The expected exponential behavior during early stages of demixing is well reproduced. From [29]... Fig. 14 Several density modes displayed on a logarithmic scale versus time. The results were obtained through DSCFT calculations in a three-dimensional system of length Lx=Ly=Lz = 635Re using 7x7x7 functions for a quench from yJV = 0.314 to /JV = 5. The expected exponential behavior during early stages of demixing is well reproduced. From [29]...
It is interesting that the band due to Vas(C=C) has not been observed experimentally, or calculated on the twisted model (Figure 8.11). This is explained on the basis of increasing dynamic decoupling upon rotation of the motions of the C=C bonds located on different rings. By contrast, this normal mode displays considerable IR activity for the TT-Me2T [84]. [Pg.391]

Other Uses. The breast is scanned by placing the transducer over it. The liver and gallbladder are scanned by an abdominal transducer placed just under the ribs. The kidneys are imaged between the ribs on the back, and the heart is imaged between the ribs on the chest. In addition to the standard two-dimensional real-time image of the heart, M-mode is employed. This mode displays the motion of the heart in a linear display somewhat like an electrocardiogram. M-mode is used for analyzing the function... [Pg.1882]


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See also in sourсe #XX -- [ Pg.2 , Pg.284 ]

See also in sourсe #XX -- [ Pg.2 , Pg.284 ]




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Display modes, switching between

Liquid crystal display dynamic scattering mode

Nematic liquid crystals display modes

Page Layout Dialog Box in Normal ID Display Mode

Page Layout Dialog Box in the Dual and Multiple Display Mode

Polarized modes, displays

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