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The low-C sample exhibited a larger coercivity increase by a post-sinter annealing, reaching the highest coercivity of 1.85 T, while the high-C sample reached a lower coercivity of 1.54 T.
Under these conditions the reduction of phosphorus content in iron ore sample reached a value of 52.47% was possible to demonstrate the positive effect of the sample heating process of iron ore and may therefore be regarded as increasing the acid leaching technique to reduction of the phosphorus content.
The results show that the thermal conductivity of the powdered sample reached a constant only when the pressure was less than 20 Pa, while the thermal conductivity of the granular sample became constant when the pressure was less than 3 Pa due to the macropore effect.
Under the conditions of unloading both the axial and confining pressures at the same time (UAUC), when the unloading rates of the confining pressure were 0.01 MPa/s, 0.02 MPa/s, and 0.05 MPa/s, the coal sample reached a rupture state in a relatively short period of time.
Once the temperature of the sample reached a steady state, the measurements were started.
When the temperature of the sample reached a steady value, the authors waited for further 20 min to make sure that the initial state is at equilibrium.
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Density of Fe-Nd-0 sample reaches a maximum value of 4.13 g/cm2 after being sintered at 1325 °C for 42 h.
The Cu1.97Ag0.03Se sample reaches a zT of 1.0 at 870 K.
Before EXAFS measurements at each target temperature, the sample was heat preserved at least 30 min to ensure the sample reaching a thermal equilibrium.
To study the performance of the samples deposited onto the COC substrates as pressure detectors, different weights were placed over a rectangular glass (14 × 18 mm) situated onto the sample, reaching a maximum pressure of 4 Pa.
Figure 6b shows that the HA nucleation formed by co-precipitation method consists of agglomerates, in some parts of sample, reaching a height of approximately 2 μm with respect to the PS surface.
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