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After atropine injection, γ RS/H (m) ( s ) increased toward values of γ RS (m) ( s ).
For all Φ CEA values, M rapidly increased with an increase in H from 0 to 1000 Oe, and then gradually reached M S. Furthermore, for each H, M (including M S) increased with Φ CEA.
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It is observed that the M s increases monotonously and reaches to the maximum value of 62.8 emu/g corresponding to the sample with the Co/Sr2+ molar ratio of 1.8.
The saturation magnetization M s increases with x increasing from 0 to 0.33, reaches a maximum value of 108 emu/g at x = 0.33, and then decreases to 5 emu/g with x further increasing from 0.33 to 0.99 as shown in Fig. 7.
And with increasing ratio of SrFe12O19, the exchange coupling interactions between the hard/soft magnetic phases are enhanced, and the H c and M s all increased.
However, there is little benefit to improving the early age reaction rates in activated slag pastes by decreasing the M s (or increasing the Na2O content in the mixture) because the later-age strengths are found to be higher at higher M s values (or higher silica contents) as will be shown in a forthcoming section.
Decrease in K 1 and increase in M s with x increasing from 0 to 0.33 lead to a decrease of H c. For x > 0.33, both K 1 and M s decrease with increasing x.
The NSSM coefficients show a much more consistent reduction with increase in M s, attributable to the increased dependence of NSSM coefficients on the pore structure, whereas the RCP values are dependent on the pore solution conductivity also.
Saturation magnetization (M s ) decreases with increasing T an from 100 °C to 400 °C for all metallic capping layer as shown in Fig. 3(c).
For the spindle-shaped superstructures, increased H c of 18 Oe and increased M s of 62 emu/g were also obtained along H // compared to the results measured along H ⊥ (H c = 6 Oe, M s = 52 emu/g).
As shown in Figure 6, the magnetic properties, including saturation magnetization (M s ), coercivity, and remanence proportionally increased with increased ZVI NPs in the nanocomposites (Table 2).
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