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According to GPC-IR, 13C NMR and CEF characterization results of some polymers, more 1-hexene was incorporated in the high molecular weight region, short chain branches were generated by the chain walking mechanism in low molecular weight region.
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Although a couple of branching methods were tested, the branching procedure stopped before the classification was completed or huge numbers of branches were generated.
In four branches however, low ω (0 0.16) indicated low evolutionary change (conserved branches), while in 10 branches high ω (0.86-infinity) were generated by relatively very high numbers of non-synonymous exchanges.
The model condition with reduced ILS was created by uniformly doubling (2X) the branch lengths, and two model conditions with higher ILS were generated by uniformly dividing the branch lengths by two (0.5X) and five (0.2X).
Parameters for the branch-site model were as follows H0 control files were generated by assigning the parameters model=2, NSsite=2, fix_omega=1, and omega=1.
Then 100,000 trees were generated by random permutation of apical branches.
Stimuli were generated by copy synthesis using the cascade branch of the Klatt (1980) synthesizer.
Phylogenetic trees were generated by the neighbor-joining method (NJ), and the branches were tested with 1,000 bootstrap replicates.
3D tree models were generated by digitizing twenty 0.8 3.3 m tall specimens at branch level.
Phylogenetic trees were generated by the minimum evolution method and the interior branch method; 1,000 resamplings of the data were used to calculate percentage of the branches obtained.
CMP were generated by random permutations of different numbers of taxa and branch lengths from a random additive distance matrix.
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