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The adsorption capacities of the different materials were measured at 25 and 75 °C under atmospheric pressure (Fig. 6).
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In order to estimate the absorption performance indirectly, the wetting properties of different supporting materials were measured in this study.
Average compression failure planes for the different composite materials were measured to range from 31° to 38° from the load axis.
Several capacitors based on MPS with different oxide thicknesses and materials were measured.
Erosive wear losses of copper, nickel, and carbon steel as sample materials were measured at different temperatures.
The electrical conductivity of studied materials were measured in different medium including dry air, dry H2, wet H2, wet N2 and D2O.
The composition, FT-IR spectra, and conductometric titrations of the pretreated materials were measured to characterize variations of the CCR in different sulfite pretreated environments.
To validate the model, the transition behaviour of different bed materials was measured in cylinders of three different sizes.
PID due to different particle materials is measured: lead spheres, steel spheres, glass spheres, tungsten carbide pellets, lead dust, steel dust, and sand.
The concentration of Mn ions in 25 mL of electrolyte in contact with 0.12 g of active material was measured under different acidic environments as shown in Table 1.
Thermal conductivity of the proposed insulation material is measured for four different densities and the results show that the minimum and maximum values are 0.0475 and 0.0697 W/m-K, respectively.
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