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Filling degree

Fiillungsgrad, m. degree of filling, degree to which something is filled, fulminant, a, fulminating, fulminieren, v.i. fulminate, film., abbrev. fumaroid. [Pg.166]

The fluid inclusions can be divided into two types vapor- and liquid-rich fluid inclusions. The filling degree of fluid inclusions from some samples from the silicified and alunite zones is variable and homogenization temperatures vary widely. This indicates... [Pg.109]

Table 14.3 Calculated endohedral He chemical shifts and symmetry of He C2o, He C6o and He Cgo species with different filling degree of the k electron system [107],... Table 14.3 Calculated endohedral He chemical shifts and symmetry of He C2o, He C6o and He Cgo species with different filling degree of the k electron system [107],...
Figure 15 Variation coefficient v as a function of the dimensionless mixing time for different L/D ratios. Copper and nickel particles of Figure 15 Variation coefficient v as a function of the dimensionless mixing time for different L/D ratios. Copper and nickel particles of <ip = 300 00 pm, fill degree of the drum (/) = 35%, Froude number of the paddle shaft Fr = 0.019. Source From Ref. 15.
The catalytic activity of hematin on the surface of alumina gel and graphitized carbon black has already been comprehensively studied by the adsorption method [93, 94], It is shown that at low filling degrees hematin molecules are placed flatly, and the iron atom contacts with the surface playing the role of the sixth ligand in this case. The deactivation process is associated with reorientation of the surface hematin molecule which induces iron bond break with the carrier and simultaneous formation of hematin dimer by sixth catalytically active coordinate position. [Pg.276]

Physical and mechanical properties of the filled polymer composite materials (PCM) in dependence on the extent of filling, the rate of deformation were investigated. It was found out that structural properties of the filled composite materials are determined with the nature of polymer matrix, filling degree, nature of the fillers, structural organization of FCM, that is being formed in the process of receiving of the composite materials, and conditions of tests. [Pg.89]

Fig. 20 Maximal back pressure without leakage flow and switching time of a microvalve in dependence on the filling degree VoeiA c of the valve chamber. The valve chamber (800 pm x 800 pm X 200 pm) is filled with dry PNIPAAm MBAAm 4 particles particle size 82.5 5 pm (according to (Richter et al. 2004b)). Toei bulk volume of dry hydrogel particles, Vc valve chamber volume... Fig. 20 Maximal back pressure without leakage flow and switching time of a microvalve in dependence on the filling degree VoeiA c of the valve chamber. The valve chamber (800 pm x 800 pm X 200 pm) is filled with dry PNIPAAm MBAAm 4 particles particle size 82.5 5 pm (according to (Richter et al. 2004b)). Toei bulk volume of dry hydrogel particles, Vc valve chamber volume...
It is thus possible to calculate the time needed to attain a given exudation value. In Figs. 2.30a and b one can see the lines of equal time values required for isolation of 2 wt% of the inhibiting liquid. The isolation rate at the initial stage of exudation is seen to have a strong dependence on the film-filling degree of the Cl. It is also a parameter that is sensitive to variations in the PhCI ratio, which is specifically evident at their low thermodynamic compatibility (Fig. 2.30b). [Pg.126]

As it is known [13, 14], the scale effects are often found at the study of different materials mechanical properties. The dependence of failure stress on grain size for metals (Holl-Petsch formula) [15] or of effective filling degree on filler particles size in case of polymer composites [16] are examples of such effect. The strong dependence of elasticity modulus on nanofiller particles diameter is observed for particulate-filled elastomeric nanocomposites [5], Therefore, it is necessary to elucidate the physical grounds of nano- and micromechanical behavior scale effect for polymer nanocomposites. [Pg.145]

Further the real value p for aggregated nanofiller can be calculated according to the Eq. (41) and real filling degree (p —according to the Eq. (40). In Fig. 14, the dependences (lE ), obtained experimentally and calculated according to the Eq. (43) with (p values using, evaluated by the three indicated above methods, comparison is adduced. As one can see, the... [Pg.286]

There is also the fact that bulk material has to be pre-compacted two to three times over in order to increase the filling degree of the receiver or to obtain the longest possible extrusion time per batch. [Pg.299]

Surface resistivity of plane constructions (fabrics, rugs, etc.) is generally measured with ring-shaped electrodes In the case of loose fibers, the measurement is performed in cells between flat electrodes at a distance of 2 cm, the filling degree being 20%. From the volumetric resistivity pv, relating to the cross section between the electrodes, the lonptudinal resistivity pc is calculated. This value can also be measured direct on a continuous filament and un yarns between clanq> electrodes. [Pg.110]

Degree of filling (degree of protonation, etc.), fractional coverage (201, 396)... [Pg.656]

Fig. 2.4-5 Pore filling degree against the adsorption potential with v= 2 according to... Fig. 2.4-5 Pore filling degree against the adsorption potential with v= 2 according to...
A variety of factors have been cited as affecting cleat development. These factors include coal rank, coal composition, and layer thickness. To the extent that the impact of these factors on cleat-ing has been explored quantitatively, average cleat spacing has been used to characterize the cleats. Other factors, such as mineral fill, degree of tectonic and compactional deformation, and coal age, have received little to no attention (Laubach et al., 1998). [Pg.23]


See other pages where Filling degree is mentioned: [Pg.140]    [Pg.234]    [Pg.247]    [Pg.249]    [Pg.252]    [Pg.110]    [Pg.205]    [Pg.271]    [Pg.148]    [Pg.176]    [Pg.547]    [Pg.399]    [Pg.94]    [Pg.148]    [Pg.550]    [Pg.86]    [Pg.244]    [Pg.245]    [Pg.625]    [Pg.23]    [Pg.186]    [Pg.191]    [Pg.191]    [Pg.232]    [Pg.292]    [Pg.223]    [Pg.308]    [Pg.697]    [Pg.16]    [Pg.316]    [Pg.46]   
See also in sourсe #XX -- [ Pg.146 ]




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Degree of fill

Degree of filling

Filling degree covering

Isotherms pore filling degree

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