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Polyethylene chain length versus

Figure 11.3 (a) Chain length versus the radius of gyration for (1) a macromolecular coil of polysterene (2) PMMA and (3) polyethylene and (b) a variant of the elements of the Koch curves having df = 1.61. [Pg.308]

FIGURES.10 Persistence length of polyethylene from SANS versus the number of ethyl (circles) (Ramachandran et ah, 2011) or butyl (triangles) (Ramachandran et ah, 2008) short-chain branches per 1000 carbon atoms. The solid lines are fits to Eq. (3.17) with = 9.1 A, a cB — 2.7, and bscB =3.4 and 24.6, respectively, for ethyl and butyl SCB. [Pg.139]

Figure 1.6 Friction coefficient versus chain length N of polyethylene, as obtained from the Rouse relation between and diffusion coefficient D ( d, full symbols) and from the Rouse relation between and the longest relaxation time ti (I, open symbols). After Reference [194]. Figure 1.6 Friction coefficient versus chain length N of polyethylene, as obtained from the Rouse relation between and diffusion coefficient D ( d, full symbols) and from the Rouse relation between and the longest relaxation time ti (I, open symbols). After Reference [194].

See other pages where Polyethylene chain length versus is mentioned: [Pg.141]    [Pg.262]    [Pg.80]    [Pg.53]    [Pg.53]    [Pg.444]    [Pg.430]   
See also in sourсe #XX -- [ Pg.82 ]




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Polyethylene chain length

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