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The spatial distribution of soil-plant formations over the 4 x 5 geographical grid and their representation by pixels in the GMNSS spatial structure. Identifiers of the types of soil-plant formations are explained in Table 3.9.

The spatial distribution of the EL emission represented by the amount of emission from a block of 10 monolayers as a function of its distance from the A1 electrode in a PPP LED

The spatial distribution of the EL intensity in a 90 um-thick tetracene crystal at two different voltages

The spatial distribution of the o L-aspartic acid .

The spatial distribution of the particles in the system at a given instant shows a well-developed droplet containing 19 particles. The size of the points in the picture corresponds to the size of the outer wall of the potential .

The spatial distribution of the positron density at the Ps formation stage when an external electric field E is imposed. efn is that part of the positron density that is bound within the blob and not biased by the external electric field. is the part perturbed by the field. The depth of the trapping potential is about several tenths of eV.

The spatial distribution oflaterite and silcrite in Australia .

The spatial distributions of electrons and are described by the orbital products fla XnXv and Qb XxXcr centered about A and B, respectively. The distance between both centers is denoted as R.

The spatial distributions of salinity

The spatial effects of replacing Pd atoms with Au in the Pd surface. The middle curve is that for a gold atom substituted at a neighboring palladium site, but not directly involved with the adsorbate-surface complex. The top curve corresponds to substituting Au at one of the sites where acetate adsorbs. The final plot, which is not shown here, has a barrier of 550 kJ mol and corresponds to the system where Au is substituted at the central Pd cite which is responsible for activating the C-H bond.

The spatial frequence of composite 4. The spatial frequencies increasing led to the decreasing of the diffraction efficiencies.

The spatial geneva wheel

The spatial pair correlation function for a system of water-like particles, with parameters given in . The HB energies shb bT are indicated next to each curve. The locations of the various maxima are indicated on the abscissa.

The spatial pair correlation function for water-like particles in two dimensions.

The spatial pair correlation functions for a two-component system in two dimensions. The computations were carried out by solving the four Percus-Yevick equations . For more details see appendix 9-E.

The spatial relationships between selected US Atlantic and Gulf of Mexico Coastal watersheds and airsheds. The airsheds are depicted from modeled depositional patterns of oxidized forms of N, cf. Paerl et al., 2002 . Shown are the air- and watersheds for Narragansett

The spatial representation, d. of structural changes corresponding to

The spatial representations of four different types of experimental designs that are useful for process analyzer calibration

The spatial variation of agglomerate sizes in simulations of erosion in the journal bearing flow. Initially there are 10000 agglomerates consisting of 400-500 aggregates. The grey scale represents the number of aggregates in the agglomerates, .

The spatial variation of leveling-agent surface coverage for 06

The spatial variation of surface free energy factor.

The spatially symmetrical wave function for the two electrons in the delta-well model of the hydrogen molecule has two peaks, for electrons at different wells

The spatio-temporal variation of the variable u are the same as in Figure 5.

The Spberilene process.

The SPC-5 pulse sequence .



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