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Table 1 Calculated and measured Talbot distance and the shrinkage factor Talbot distance Shrinkage factor Theoretical 3.23 μm — SU-8 template 2.31 μm 29.2 ± 1.4%.
Thus, when fabricating precise and accurate 3D structures, it is important to consider the shrinkage factor.
We compared the shrinkage factor of the structure height in this study to that in a similar study [23] using a polymeric template and TiO2 precursor.
We discovered that our proposed process shows an improvement in the shrinkage factor of the structure height from 34%[23]to16%16%.
We also successfully achieved a significant improvement in the shrinkage factor of structure height compared to previous non-vacuum infiltration processes.
where γ∈[μ w,1) is the shrinkage factor, which enables to adjust the shrinkage range of the elements in G.
In successive cycles, the number of levels on each dimension can be decremented and the range of each dimension can be decreased by a defined "shrinkage" factor.
The objective of this work was to determine the relationship between moisture content and shrinkage factor of osmotically dehydrated sardine sheets.
The shrinkage factor in each sardine sheet was calculated according to the Viberg et al. [J. Food Eng. 35 (1998) 135] equation.
Linear simple regression was used to fit the database to the model of the shrinkage factor as a function of moisture content.
The models as fitted explained the 82.54 95.71% of the variability in the shrinkage factor as a function of moisture content and, the 90 99% of the variability in the shrinkage factor as a function of dimensionless moisture content at the 95% confidence level.
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