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Evolution of the degree of polymerization, DPn, of primary chains for polymerization.

Evolution of the degree of reduction

Evolution of the density of states at the Fermi energy, N.

Evolution of the density of states of an adsorbate in the absence of Sid band for an oxidation reaction .

Evolution of the density of states of an adsorbate in the presenee of a thin d band loealized near the Fermi level for an oxidation reaetion .

Evolution of the density of states of an adsorbed molecule in the absence of a hand for an oxidation reaction .

Evolution of the density, p, of polycarbosilane-derived amorphous silicon carbide with the firing temperature. 900 C 1000 C 950 C.

Evolution of the desired products with temperature in the oxidation of TCE over noble metal-based catalysts, in the absence and presence of water data from Lopez-Fonseca et

Evolution of the desorbed COoas a fimction of the cesium loading.

Evolution of the diagonal elements of the variance-covariance matrix .

Evolution of the diagonal ladder diagrams

Evolution of the diameter of the colhsion complex for various Deborah numbers

Evolution of the diameter of the collision complex for Newtonian droplets with effective viscosity and for shear-thinning droplets

Evolution of the diameter of the collision complex for various viscosity ratios P nj

Evolution of the diastereo-meric composition of methylphenyl-.

Evolution of the difference reflectance spectra as function of time as standard. Spectra taken with probe configuration No 1.

Evolution of the differential absorbance of a 10 mol.dm potassium ferrocyanide solution as a function of the dose

Evolution of the differential enthalpies of adsorption at 300 K.

Evolution of the differential optical density in the O-H stretching region for MCM-41 irradiated with increasing doses

Evolution of the diffraction pattern according to the sample annealing temperature

Evolution of the diffraction patterns of zirconia depending on the temperature of the thermal treatment

Evolution of the diffusion coefficient along the penetration zone, and collapse of the diffusion coefficient at the polymer-gel interface.

Evolution of the diffusion field during chronoamperometry at an electrode with active and inactive areas on its surface. In this case the electrode is a regular array such that the active areas are of equal size and spacing, but the same principles apply for irregular arrays, long times. Arrows indicate flux lines to the electrode.

Evolution of the diffusion fronts corresponding to the a- phase boundary .

Evolution of the dimensionless fluid temperature l of a cooled stirred tank vs. dimensionless time Xl.



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