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The low pressure synthesized sample with smallest average particle size approached super-paramagnetic behavior (saturation magnetization = 51.8 emu/g, ratio of remnant to saturation magnetization = 4.9 and coercive field = 52 Oe), which may be ideal for biomedical applications.
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So the uniformity of sample with large reduction per pass was better than that of sample with small reduction per pass.
Its Je value was also higher than that of sample with small reduction per pass with the same diameter and there were the higher maximum Je value for it.
The results show that the sample with smaller foam pore size has larger volume mean diameter of secondary droplets in the outflow, due to its weaker liquid drainage ability.
For the as-pressed sample with small dAg and dW, severe plastic deformation (SPD) by wear forced the formation of Cu-Ag homogeneous solid solution, leading to low wear resistance.
Most samples showed quite similar values (θwater ~ 29°), whereas only the sample with smaller pores showed a significantly higher θwater.
Fiducial marker tracking is done by decorating the sample with small high-density particles that create high contrast in the projection images [9-12].
On the other hand, we may need to think about the stability of magnetic moment carried by a sample with small magnetic moment (Berndt et al. 2016).
For sample with small-sized nc-Si, the more interface states are introduced due to the larger surface-to-volume ratio.
Similar levels of thermal conductivity could be acquired in samples with smaller pore amounts and/or smaller porosity as compared to those with larger pores.
While the powder samples with smaller particle size (<50 nm), were reported to exhibit higher coercivity8,9,10 because the particle size is coincidental in the range of required grain size for high coercivity13.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com