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It is worth mentioning that the primary problem of the proposed method is determining the optimal values for the related parameters and that an automatic determination of these parameters would be a very interesting direction for future research.
Although the MSEPF-MMSF method has good performance, the primary problem of this method is determining the optimal values for the parameters N m, σ r, and Q.
One of the practical challenges of the proposed method is determining the coefficients which are assigned as cost of opening doors in the lookup tables.
Nevertheless, the disadvantage of this method is determining the threshold value through a scale parameter for the good visualization with no conditions to ensure the sum of the probability density value conserved.
Like ChIP-chip data itself, the method is determining binding rather than biological activity, the latter being inferred from a positive binding prediction.
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The decision process of this method is determined by some basic issues.
The construction method is determined in accordance with surrounding rock conditions.
After applying a rating score to each of the criteria the optimal mining method is determined by the highest priority.
Considering the distances of power sources, level of security, cost, and available technologies, appropriate communication method is determined.
Whether variations in display efficiency affect a particular screening method is determined by the detection sensitivity and specificity of that method.
The specificity of this method is determined by the primers' specificity and by the melting temperature (Tm) of the amplicon.
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