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Branched chitosan with a 1.6 kDa branch length exhibited higher degradation rates than either linear or higher branch length materials.
Branch length was found to be unimportant.
The branch length is not proportional to the genetic distance.
Branch length corresponds to expected amino acid substitutions per site.
Branch length, however, was found to be unimportant.
We screened all individual gene trees and excluded proteins with a terminal branch length >2.75 times longer than the average branch length of the gene tree.
Branch length in each phylogenetic tree is proportional to the synonymous substitution rate.
The unit of branch length is the number of substitutions per site.
Branch length and leaf dry weight showed the most positive plasticity in response to higher radiation.
Besides, the graft density and the branch length influence the tensile toughness of these materials.
We also find no evidence that missing data consistently bias branch length estimates.
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