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03766nam a2200529 4500 |
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|a 9783540683100
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|a 10.1007/3-540-68310-0
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|a 541.2254
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|a Branched Polymers I
|h [electronic resource] /
|c edited by Jaques Roovers.
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|a With contributions by numerous experts
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|a 1st ed. 1999.
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|a Berlin, Heidelberg :
|b Springer Berlin Heidelberg :
|b Imprint: Springer,
|c 1999.
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|a X, 243 p. 5 illus.
|b online resource.
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|a text
|b txt
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|a computer
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|a online resource
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|a text file
|b PDF
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|a Advances in Polymer Science,
|x 0065-3195 ;
|v 142
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|a Synthesis of Branched Polymers by Cationic Polymerization -- Asymmetric Star Polymers: Synthesis and Properties -- Poly(macromonomers): Homo- and Copolymerization -- Dendrimers and Dendrimer-Polymer Hybrids.
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|a While books have been written on many topics of Polymer Science, no compre hensive treatise on long chain branching has ever been composed. This series of reviews in Volume 142 and 143 of Advances in Polymer Science tries to fill this gap by highlighting active areas of research on branched polymers. Long chain branching is a phenomenon observed in synthetic polymers and in some natural polysaccharides. It has long been recognized as a major mole cular parameter of macromolecules. Its presence was first surmised by H. Stau dinger and G. V. Schuh (Ber. 68, 2320, 1935). Interestingly, their method of iden tification by means of the abnormal relation between intrinsic viscosity and molecular weight has survived to this day. Indeed, the most sophisticated method for analysis of long chain branching uses size exclusion fractionation with the simultaneous recording of mass, molecular weight and intrinsic visco sity of the fractions. In the 1940s and 1950s, random branching in polymers and its effect on their properties was studied by Stockmayer, Flory, Zimm and many others. Their work remains a milestone on the subject to this day. Flory dedicated several chapters of his "Principles of Polymer Chemistry" to non linear polymers. Especially important at that time was the view that randomly branched polymers are inter mediates to polymeric networks. Further developments in randomly branched polymers came from the introduction of percolation theory. The modern aspec ts of this topic are elaborated here in the chapter by W. Burchard.
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|a Polymers .
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|a Condensed matter.
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|a Biotechnology.
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|a Polymer Sciences.
|0 http://scigraph.springernature.com/things/product-market-codes/C22008
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|a Condensed Matter Physics.
|0 http://scigraph.springernature.com/things/product-market-codes/P25005
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|a Biotechnology.
|0 http://scigraph.springernature.com/things/product-market-codes/C12002
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|a Roovers, Jaques.
|e editor.
|4 edt
|4 http://id.loc.gov/vocabulary/relators/edt
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|a SpringerLink (Online service)
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|t Springer eBooks
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|i Printed edition:
|z 9783662147238
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|i Printed edition:
|z 9783662147221
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|i Printed edition:
|z 9783540649236
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|a Advances in Polymer Science,
|x 0065-3195 ;
|v 142
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|u https://doi.org/10.1007/3-540-68310-0
|z Full Text via HEAL-Link
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|a ZDB-2-CMS
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|a ZDB-2-BAE
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|a Chemistry and Materials Science (Springer-11644)
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