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Graft copolymerization of methyl methacrylate onto cotton cellulose induced by mechanical milling with a Norton ball mill from 1 to 4 h.

Graft copolymerization of styrene with olefins.

Graft copolymers can be formed by using doped polymers as the

Graft copolymers constituted of a PALST backbone and PCL grafts. AIBN, a,a -azobisisobutyronitrile. Reproduced from Ni, X. Zhu, W. Shen, Z. Polymer 2m, 51, 2548.

Graft Copolymers graft copolymer with two trifunctional branch points. Exact graft copolymers.

Graft copolymers, poly is synthesized second. Black dots represent graft points. A represents a T-junction graft, and B represents an X-junction graft.

Graft harvest and preparation, Prepared graft of lO-mm in width of the right knee. The parallelepiped bone plug from the tibia of 5 mm thick x 10 mm wide x 15 mm long is for the rectangular femoral tunnel, while patellar bone block of a triangular pillar is for the distal round portion of the tibial tunnel

Graft level as a function of length along the shunt for polyacrylamide-Silastic shunts prepared using the flow-grafting apparatus described in Ref 14.

Graft poljrmerization in organic solvent systems, in ionic liquid.

Graft polymer containing a photoresponsive polypeptide.

Graft polymer devices manufactured and sold by Mimotopes Pty Ltd for solid-phase synthesis.

Graft polymerization initiated by surface azo groups on silica nanoparticle.

Graft polymerization of methyl methacrylate. Onto bagasse

Graft polymerization onto PTFE film.

Graft polymerization versus reac tion time. Backbone polymer dextran Dl, M 9,000 D2, M 61,000 D3, M 196,000

Graft polymers.

Graft preparation for double-bundle ACL reconstruction. The doubled semitendinosus tendons were prepared with suspensory buttons

Graft type polyblend, HiPS, . Note similarity of cellular structures.

Graft-from approach to micellar nanoparticles via ROMP, M Ru or Mo catalyst, X reactive group, Y moiety for conjugation, and I initiator for polymerization.

Graft-through approach to micellar nanoparticles via ROMP and chemical structures of the most popular catalysts employed for ROMP.

Graft-to approach to micellar nanoparticles via ROMP, M Ru or Mo catalyst,

Graftable polysiloxane structures. After Gray and

Grafted chiral and nonchiral catalytic sites for alkylation reaction.

Grafted copolymer formed as a function of polymerization time. Proceaure A as described in

Grafted EPDM elastomer and composition of the grafted copolymer vs.



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