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The saturation magnetization values of Fe3O4/PCC MNPs were 53.5 emu g− 1, higher than that of Fe3O4 (49.6 emu g− 1), suggesting that they could be easily separated by an external magnetic field [33].
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There exist significant differences in the form of in-train connections for domestic electric multiple units (EMU) [1].
The maximum (∼3 emu g−1) and remanent (∼1.5 emu g−1) magnetization values were obtained.
The saturation magnetization, remnant magnetization and coercive force of FHPC are 11.3 emu g−1, 2.3 emu g−1 and 55.7 Oe.
The saturation magnetization of MMIPs was 19.45 emu g−1.
The magnetic properties of the RFZ photocatalyst increased compared with the FZ from 12.45 emu g−1 to 20.18 emu g−1.
Saturation magnetization (σs) of composite particles is 42 emu g−1, which is half the saturation magnetization of magnetite (~80 emu g−1) [28, 28].
The saturation magnetization (Ms) of bare magnetic nanoparticles is 50.10 emu cm−3, while modification with β-CD and CS gave values of 37.48 and 65.01 emu cm−3, respectively.
The highest saturation magnetization achieved is 190 emu g−1 (1.79 T) for the Fe67Co20Ti7Zr6 system.
Si-MNPs showed a saturation magnetization of 40 emu g−1 at 300 K (data not shown).
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