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Kinetics of transfer of the diffusing substance calculated with D 10 cm s and L 0.01 cm either with R 10 . Two scales of time are used, one with 500 minutes, the other with 25 minutes.

Kinetics of transfer of the diffusing substance into ,

Kinetics of transfer of the diffusing substance into the sheet with a sheet of thickness 2 L and a finite value of h, and infinite value of the ratio of volumes defined by a. These master curves are drawn by using the dimensionless numbers and the square root of time for the co-ordinates.

Kinetics of transfer of the diffusing substance into the sheet with a sheet of thickness 2 L, and an infinite value of h, and various values of the ratio of volumes defined by a. The values of a are shown in the figure. These master curves are drawn by using the dimensionless numbers and D t L for the co-ordinates.

Kinetics of transfer of the diffusing substance into the sheet with a sheet of thickness 2L and a finite value of h, and an infinite value of the ratio of volumes defined by a. The values of R h L D are shown in the figure. These master curves are drawn by using the dimensionless numbers M M and D-tHJ for the co-ordinates.

Kinetics of transfer of the diffusing substance into the sheet with a sheet of thickness 2L and a finite value of h, and infinite value of the ratio of volumes defined by a. These master curves are drawn by using the dimensionless numbers M M and the square root of time for the co-ordinates.

Kinetics of transfer of the diffusing substance into the sheet with a sheet of thickness 2L and infinite value of h, and infinite value of the ratio of volumes defined by a. These master curves are drawn by using the dimensionless numbers M M o and D-t L2 for the co-ordinates.

Kinetics of transfer of the diffusing substance into the sheet with a sheet of thickness 2L, and an infinite value of h, with various values of the ratio of volumes defined by a. The values of a are shown in the figure. These master curves are drawn by using the dimensionless numbers M M and D-t L for the co-ordinates.

Kinetics of transfer of the diffusing substance into the solid food, for various values of the diffusivity in the solid food expressed in cmVs. The diffusivity in the bottle is 10 cm s. The dimensions of the bottle are

Kinetics of transfer of the first electron from to Qg in chromatophoies foUowing a single laser flash, observed at 760 nm, corrected for the instantaneous rise and slow decay of P. Lifetimes of the L212Ala-L213Ala double mutant strain resemble that of the wild-type.

Kinetics of transformation of Co in the ERO fraction in two Israeli soils according to the two-constant rate model

Kinetics of transformation of Co in the ERO fraction in two Israeli soils according to the two-constant rate model and the simple

Kinetics of transport across a filter-immobilized artificial membrane

Kinetics of transport of D- and L-xylose in the yeast Rhodotorula gracilis. Adapted from Dusinsky .

Kinetics of tritiated leucine incorporation. Curve A for additional details.

Kinetics of UC02 expiration in rats after oral and intravenous administration of U-14S-i,-lysine and e

Kinetics of unloading of a glass ball on polyurethane for the same imposed displacement and various stiffnesses .

Kinetics of unloading of a smooth sphere and a flat-ended sphere on polyurethane.

Kinetics of unstabilized fibrin hydrolysis with complexes of immobilized heparin with fibrinogen

Kinetics of uptake and incorporation of U- C-L-Phe

Kinetics of uptake of LCM by tumor cells in culture. C6 cells were incubated with diO-LCM

Kinetics of uranium catalyzed polymerization of butadiene. Catalyst system and polymerization conditions are shown in Table I. Conditions

Kinetics of variation of electric conductivity of the ZnO sensor on Si02 plate activated with Pd after leaking-in hydrogen

Kinetics of variation of electric conductivity of ZnO sensor following leaking-in H2 into the reaction cell and subsequently pumping it out activation of the working plate with palladium

Kinetics of variation of resistance of pure ZnO sensor and of ZnO sensor covered with a layer of H2O



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