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This distribution has its maximum below 1 nm and a finite intercept g(0) that indicates pores with sharp edges.
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In this image several of the larger choriocapillaris pores are marked with white arrows to indicate pores with a similar size as those observed in Fig. 6(C).
Microstructure evaluation indicated pore refinement in the microstructure of cement pastes modified with glass powders.
N2-sorption measurements indicated cylindrical pores with a mean diameter of 0.9 nm which was confirmed by filtration tests using molecular weight standards.
Results indicate that pores with high Reynolds numbers are not among the pores with the highest or lowest volume fraction of particles for a given time.
This is in agreement with the measurement result, which indicates average pore size of 102 Å.
It can also be observed that the hysteresis loop was closed at high relative pressure (P/P0 = 1) and this observation indicating the presence of pores with large size [38].
Simulation results indicate that pores of larger size with higher interconnectivity and porosity support rapid and extensive angiogenesis.
The predicted pore pressure after calibration to formation pore pressure measurements indicated different pore pressure regimes at different depths.
The pore distributions of casting thin sections which were made from the rock samples were recorded and are shown in Fig. 15, where the ordinate indicates the volume ratio of pores with a certain diameter to the total pores.
This results indicates that the PVM possesses pores with an exclusion size of <10 kDa similar to most studied hemichannels [ 100].
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