By Linda C. Sawyer
Polymer Microscopy, 3rd version, is a complete and useful advisor to the research of the microstructure of polymers, and is the results of the authors' decades of educational and business adventure. to deal with the desires of scholars and execs from a number of backgrounds, introductory chapters take care of the fundamental suggestions of either polymer morphology and processing and microscopy and imaging conception. The center of the publication is extra utilized, with many examples of specimen coaching and photo interpretation resulting in fabrics characterization. Microscopy is utilized to the characterization of quite a lot of polymer platforms, together with fibers, movies, engineering resins and plastics, composites, nanocomposites, polymer blends, emulsions and liquid crystalline polymers. mild microscopy, atomic strength microscopy, and scanning and transmission electron microscopy strategies are all thought of, as are rising ideas comparable to compositional mapping during which microscopy is mixed with spectroscopy. This broadly up-to-date and revised new version closes with an issue fixing advisor, which supplies a scientific framework for determining appropriate methods to the characterization of polymer microstructure.
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Additional info for Polymer Microscopy
LM. W. Hadley, An Introduction to the Mechanical Properties of Solid Polymers, 2nd ed. (John Wiley & Sons, Hoboken, NJ, 2004). 18. D. J. Padden, J. Appl. Phys. 34 (1963) 2409. 19. LM. Ward, Ed. Structure and Properties of Oriented Polymers (Applied Science, London, 1975). 20. C. Bassett,J. Macromol. Sci. Phys. B42 (2003) 227. 21. C. Bassett, Macromol. Symp. 214 (2004) 5. 22. T. Grubb and A Keller, J. Polym. Sci. Polym. Phys. Edn. 18 (1980) 207. 23. A Peterlin, in Structure and Properties of Oriented Polymers, edited by LM.
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In computer terms, these would be described as parallel and serial transmission of information, respectively. A television image is an everyday example of an image formed by scanning; our own eyes use a lens to form an image on the retina that is processed in parallel. At this level, the conventional optical microscope and the TEM work like an eye, using lenses to form an image all at once on a sensitive surface. This may be film or an electronic detector such as a charge-coupled device (CCD). The atomic force microscope (AFM) and other scanning probe microscopes (SPM) move a solid sharp probe over the specimen surface.
Polymer Microscopy by Linda C. Sawyer