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The fundamental idea is to estimate the DODF based upon the information contained in alignment tensors up to order k, and then use the estimated DODF to evaluate, from Eq. (2), the missing alignment tensor ρ k+1).
The fundamental idea is to use the Maximum Information Entropy Principle (MIEP) in order to estimate the DODF based upon the information contained in alignment tensors up to order k, and then use the estimated DODF to evaluate, from Eq. (2), the missing alignment tensor ρ k+1).
In modeling the missing alignment data, we have estimated the distance matrix that we would expect to see in the absence of missing observations.
Alternative approaches that model the missing alignment data probabilistically or by imputation would allow more accurate (likelihood or Bayesian) phylogenetic techniques to be applied while still retaining all the input sequences.
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This missing alignment shows clearly in the current lack of courage, determination, and imagination to carry through the necessary actions to combat climate disruption.
The complexity in choosing aligner settings and the potential for missing alignments makes the case against dependence on primary alignments.
Therefore, with the help of the sharing map, we can 'restore' these missed alignments from existing aligner's result.
We tested a number of parameter values for alignment and all analyses presented here use a value of n = 0.05, where n is the fraction of missing alignments given 2% uniform base error rate.
The sensitivity effect of the adopted test is almost the same in either single or hybrid FRC. Figure 4 shows that, the mode II fracture toughness K IIc measured from DNC test are the highest values due to the crack propagation miss alignment opposing sliding of crack surfaces.
In a quick comparison between advantages and disadvantages of proposed Mode II fracture toughness test approaches, Sherbini (2014) concluded in an earlier study that, double notched cube (DNC) test setup showed higher values than all other tests due to the crack propagation miss alignment opposing sliding of crack surfaces.
SSAHA2 misses alignments for a different reason.
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