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There is a correlation between the average molecular weight (MW) and average MP of compounds.
a The histogram of ligand cluster size, b the target distribution of ligands and ligand clusters, c the ligand (cluster) distribution of targets, d the relationship between the average molecular weight of ligand clusters and the ligand cluster promiscuity, nodes are coloured by the number of the nearby nodes, i.e. node density Fig. 5 The ligand cluster number of HGNC gene family.
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From the incipient concentration of entanglements, the determined ce was ∼10 wt%, which was in fair agreement with what was predicted theoretically by a simple relation of 2Me/Mw, where Me and Mw were the molecular weight between melt entanglements and the average molecular weight of PDLLA, respectively.
The average molecular weights between junction points (Mc) were calculated by using the Flory-Rehner equation.
The average molecular weight between consecutive crosslinks (Mc) is another structural parameter characterizing the three-dimensional network structure.
The results obtained show that the average molecular weight between the crosslinks is affected by the concentration of EGDMA and scientifically decreased with increasing the crosslinking concentration.
The average molecular weights between crosslinks (Mc) of the polyethylenes were 125, 76.5, and 7 kg mol−1.
Gel fraction, swelling ratios (qv) and the average molecular weights between junction points (Mc) values of the networks were investigated.
From the equilibrium swelling studies the average molecular weight between crosslinks (Mc), the crosslink density (ρc), and the mesh size were determined.
The α-relaxation shifts to lower temperature and the average molecular weight between cross-links decreases with increasing cross-linking density.
The average molecular weight between crosslinks (M̄c), the mesh size and the crosslinking density (ρx) were calculated from swelling studies and related to OH/anhydride ratios.
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