New linear polymers
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New linear polymers by Henry Lee

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Published by McGraw-Hill in New York, London .
Written in English


Book details:

Edition Notes

Statementby Henry Lee, Donald Stoffey, Kris Neville.
ContributionsStoffey, Donald., Neville, Kris.
The Physical Object
Pagination374p.,ill.,24cm
Number of Pages374
ID Numbers
Open LibraryOL19002352M

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A polymer (/ ˈ p ɒ l ɪ m ər /; Greek poly-, "many" + -mer, "part") is a large molecule, or macromolecule, composed of many repeated subunits. Due to their broad range of properties, both synthetic and natural polymers play essential and ubiquitous roles in everyday life. Polymers range from familiar synthetic plastics such as polystyrene to natural biopolymers such as DNA and proteins that. Structure and Rheology of Molten Polymers From Structure to Flow Behavior and Back Again. Book • Tube Models for Nonlinear Viscoelasticity of Linear and Branched Polymers. This book provides a detailed summary of state-of-art methods for measuring rheological properties and relating them to molecular structure. The current "Mechanical Properties of Solid Polymers - Second Edition" is about 8 years old, and has a second author. Why Wiley thought it was a good idea to publish the book with the exact title and restart the edition numbering is beyond me. Why Amazon felt it was OK to use the product info from the new version is also beyond by: Additional Physical Format: Online version: Frith, Elizabeth M. Linear polymers. London, New York, Longmans, Green [] (OCoLC) Document Type.

A variety of synthetic polymers as plastic (polythene), synthetic fibres (nylon 6,6) and synthetic rubbers (Buna - S) are examples of man-made polymers extensively used in daily life as well as in industry. There are three different types based on the structure of the polymers. 1. Linear polymers These polymers consist of long and straight Size: 1MB. How hyperbranched polymers compare with dendrimers as well as linear polymers. Future trends in the synthesis and application of hyperbranched polymers. Geared to novices and experts alike, Hyperbranched Polymers is a must-have resource for anyone working in polymer architectures, polymer engineering, and functional materials. It is also useful. The book begins by focusing on the structure of polymers, including their chemical composition and physical structure. It goes on to discuss the mechanical properties and behaviour of polymers, the statistical molecular theories of the rubber-like state and describes aspects of linear viscoelastic behaviour, its measurement, and experimental. Buy MMD of Polydisperse Linear Polymers from Rheological Data on FREE SHIPPING on qualified orders Advanced Search New Releases Amazon Charts Best Sellers & More The New York Times® Best Sellers Children's Books Textbooks Textbook Rentals Sell Us Your Books Best Books of Cited by: 1.

A completely new, major topic in this section is multicomponent polymer systems. The book also incorporates new material on macromolecular dynamics and reptation, liquid crystalline polymers and thermal analysis. Many of the diagrams and micrographs have been updated to more clearly highlight features of polymer morphology. Part IV. A polymer in which the molecules form long chains without branches or cross-linking. The molecular chains of a linear polymer may be intertwined, but the forces tending to hold the molecules together are physical rather than chemical and therefore can be weakened by . The simplest definition of a polymer is a useful chemical made of many repeating units. A polymer can be a three dimensional network (think of the repeating units linked together left and right, front and back, up and down) or two-dimensional network (think of the repeating units linked together left, right, up, and down in a sheet) or a one. The molecular chains of a linear polymer may be intertwined, but the forces tending to hold the molecules together are physical rather than chemical and therefore can be weakened by heating. Linear polymers are thermoplastic. (Odian GC () Principles of polymerization. Wiley, New York; Physical properties of polymers handbook.